Skip to content

Patients › Shoulder

قریبی ہیمیرس فریکچر

Proximal humerus fractures — Neer classification, sling management, and surgical options.

Updated Sep 2026
کندھے کے نیچے ایک ٹوٹی ہوئی اوپری بازو کی ہڈی کی ہاتھ سے تیار کردہ تصویر۔
ایکس رے کے اوپر بازو کی ہڈی کے سب سے اوپر پر ایک فریکچر دکھا، صرف کندھے مشترکہ کے نیچے. Kieran Hirpara 4.0

اس صفحے کا ترجمہ مشین سے کیا گیا ہے اور ابھی تک کسی ڈاکٹر نے اس کی جانچ نہیں کی۔ انگریزی نسخہ ہی مستند ہے۔

آپ کیا محسوس کر رہے ہیں

قریبی ہیمیرس فریکچر بازو کی ہڈی کے اوپری حصے میں ٹوٹنا ہے، بالکل کندھے پر۔ یہ عام طور پر گرنے کے دوران ہوتا ہے، اکثر کندھے یا کھینچے ہوئے بازو پر ہوتا ہے۔ آپ کو چوٹ کے لمحے میں سنیپ سن یا محسوس ہوسکتی ہے.

درد فوری طور پر شروع ہوتا ہے. اگلے چند گھنٹوں اور دنوں میں آپ کے کندھے میں سوجن اور چوٹ لگ سکتی ہے۔ زخم اکثر آپ کے اوپری بازو کے نیچے جاتا ہے، اور کبھی کبھی آپ کے کوہنی کی طرف جاتا ہے۔ کندھے کی شکل معمول سے مختلف ہوسکتی ہے۔ [ صفحہ ۵ پر تصویر]

یہ فریکچر بڑی عمر کی خواتین میں عام ہیں، کیونکہ عمر کے ساتھ ہڈی کمزور ہوتی جاتی ہے۔ اگر آپ کی پہلے بھی ہڈیاں ٹوٹ چکی ہیں، تو یہ بھی اسی تصویر کا حصہ ہو سکتا ہے۔

پہلے دنوں میں، درد اکثر رات کے وقت اور حرکت کرنے کی کسی بھی کوشش کے ساتھ زیادہ ہوتا ہے۔ سادہ چیزیں مشکل ہو جاتی ہیں: کپڑے پہننا، الماری میں ہاتھ ڈالنا، بیگ اٹھانا، اس طرف سونا۔ پہلے ہفتوں کے دوران ، درد آہستہ آہستہ کم ہوتا ہے کیونکہ ہڈی شفا پانے لگتی ہے۔ تحریک عام طور پر ابتدائی طور پر غیر آرام دہ رہتا ہے، لیکن زیادہ تر لوگوں کو ہر ہفتے پچھلے ہفتے کے مقابلے میں تھوڑا آسان ہوتا ہے.

کچھ احساس تبدیلیاں اس چوٹ کے ساتھ ہو سکتا ہے. کندھے کے قریب مرکزی اعصاب کو توڑنے سے چوٹ لگ سکتی ہے ، جس سے کندھے کے ایک حصے میں بے حسی پیدا ہوسکتی ہے یا بازو اٹھانے میں کمزوری پیدا ہوسکتی ہے۔ زیادہ تر اعصابی زخم خود بخود ٹھیک ہو جاتے ہیں۔ خون کی نالیوں کے سنگین زخم نایاب ہیں، لیکن انہیں فوری طور پر دیکھ بھال کی ضرورت ہے.

علاج خود عام طور پر براہ راست ہے. ان میں سے زیادہ تر فریکچر آپریشن کے بغیر ٹھیک ہو جاتے ہیں، اور ان میں سے 90 فیصد سے زیادہ فریکچر اچھی طرح سے مل جاتے ہیں۔ اس کے باوجود، کچھ لوگوں کو ایک سال کے بعد جاری علامات کے ساتھ چھوڑ دیا جاتا ہے، اور ایک ٹوٹا ہوا کندھے آپ کے مجموعی صحت کے بارے میں کیسا محسوس کر سکتا ہے. آپ کا سرجن آپ سے بات کرے گا کہ آپ کے اپنے فریکچر سے کیا توقع کی جائے۔

اصل میں کیا ہو رہا ہے

آپ کے بازو کی ہڈی کا اوپری حصہ ایک گیند کی شکل کا ہے جو ایک کم گہرائی والی جگہ میں واقع ہے۔ ایک گولف کی گیند کے بارے میں سوچیں جو ٹی پر توازن رکھتی ہے۔ اس گیند کے ارد گرد کی ہڈی ٹوٹ گئی، اور اس ٹوٹنے میں ہڈی کے ایک یا ایک سے زیادہ ٹکڑے شامل ہو سکتے ہیں جو اس کی چوٹی بناتے ہیں: گیند خود، اس کے ساتھ دو ہڈیوں والے ٹکرے جہاں آپ کے کندھے کے ٹنڈون لگتے ہیں، اور نیچے کی ہڈی کا شافٹ۔

ان bumps کے معاملہ. آپ کا روٹیٹر مینجف، جو ٹینڈونز کا گروپ ہے جو کندھے کو حرکت دیتا ہے اور اسے مستحکم کرتا ہے، وہاں لنگر انداز ہے۔ جب ہڈی ٹوٹ جاتی ہے، تو ان پٹھوں سے منسلک عضلات کھینچتے رہتے ہیں، اور یہ کھینچنا ٹوٹے ہوئے ٹکڑوں کو اپنی جگہ سے ہٹا سکتا ہے۔ سینے کی پٹھوں آپ کے جسم کے وسط کی طرف ہڈی کے شافٹ ھیںچو کر سکتے ہیں. یہی وجہ ہے کہ کچھ فریکچر صاف دراڑوں کی طرح رہتے ہیں جبکہ دوسرے ٹکڑوں میں الگ ہوجاتے ہیں جو اب سیدھے نہیں ہوتے۔

ہڈیوں کو ایک ساتھ باندھ کر شفا ملتی ہے، اسی طرح جیسے جلد کاٹ کو بند کرتی ہے۔ ٹوٹنے پر نئی ہڈی بنتی ہے اور ہفتوں میں مضبوط ہوتی ہے۔ اگر ٹینڈون کا ایک ٹکڑا ہڈی کے ساتھ ٹوٹ جائے تو اس ٹینڈون کو ہڈی کی ضرورت ہوتی ہے کہ وہ صحیح جگہ پر شفا پائے تاکہ وہ دوبارہ مناسب طریقے سے کھینچ سکے۔ جہاں ٹکڑے بیٹھتے ہیں اس سے فرق پڑتا ہے: جسمانی گردن کے ذریعے ایک وقفہ، گیند کے بالکل نیچے کی لکیر، اس خون کی فراہمی کو کاٹ سکتی ہے جو گیند کو زندہ رکھتی ہے۔ اس لائن کے نیچے ٹوٹنے سے عام طور پر خون کی فراہمی برقرار رہتی ہے۔

کندھے کی تعمیر بڑی نقل و حرکت کے لیے کی گئی ہے، اور اسے اکٹھا رکھنے کے لیے ہڈیوں کے بجائے پٹھوں اور نرم ٹشوز پر انحصار کرتا ہے۔ اس وقت، یہ ٹشوز زخمی ہیں اور ٹوٹی ہڈی بوجھ نہیں اٹھا سکتی، اس لیے پورا نظام کام سے باہر ہے۔ ٹوٹنے کے ارد گرد سوجن اور گاڑھا ہوا ٹشو بھی چپک سکتا ہے اور نقل و حرکت کو محدود کرسکتا ہے، یہی وجہ ہے کہ آپ کے سرجن کا کہنا ہے کہ ہڈی تیار ہونے کے بعد ابتدائی ہلکی حرکتیں اہم ہیں۔

ہم اس کے بارے میں کیا کر سکتے ہیں

ڈاکٹر کیران ہیرپارا، میٹر پرائیویٹ ہسپتال راک ہیمپٹن میں اوپری ٹانگوں کے سرجن، آپ کی مخصوص چوٹ کے مطابق علاج کرتے ہیں۔ مریضوں کو عام طور پر ان کے جی پی کے ذریعہ ہمارے کلینک کا حوالہ دیا جاتا ہے۔ اگر کسی فزیوتھیراپسٹ نے آپ کو ہمارے پاس آنے کی تجویز دی ہے تو ، آپ کو میڈیکیئر چھوٹ کے اہل ہونے کے ل your اپنے جی پی سے ریفرل کی ضرورت ہوگی۔ اس دورے پر ہم ایک تاریخ لے، آپ کے کندھے کا معائنہ، اور اس کی ضرورت ہے جہاں امیجنگ کا بندوبست. زیادہ تر ٹوٹے ہوئے کندھے مستحکم یا صرف تھوڑا سا باہر ہیں، اور ان میں سے زیادہ تر آپریشن کے بغیر شفا. ان ٹوٹ پھوٹ کے لئے ہم عام طور پر ایک پھینکنے اور آرام کی سفارش کرتے ہیں جب تک درد کم ہو جائے، پھر فزیوتھراپی کے ساتھ تحریک کے لئے ایک مرحلہ وار واپسی. ہم فالو اپ چیک کے ساتھ فریکچر پر نظر رکھتے ہیں، کیونکہ اس طرح کی دیکھ بھال صرف اسے اکیلے نہیں چھوڑتی ہے: اس کی باقاعدگی سے جائزہ لینے کی ضرورت ہے اس بات کی تصدیق کرنے کے لئے کہ ٹکڑے ٹکڑے اس جگہ پر رہیں جہاں انہیں ہونا چاہئے۔ ہڈی عام طور پر تقریباً 14 ہفتوں میں ایک ساتھ بنتی ہے۔

شروع سے ہی سرجری کی سفارش کی جاتی ہے جب ٹوٹنا بری طرح سے ہٹایا جاتا ہے ، غیر مستحکم ہوتا ہے ، یا اس میں مشترکہ جگہ سے باہر آنا شامل ہوتا ہے ، یا جب آپ کے کام یا طرز زندگی میں ایک کندھے کی ضرورت ہوتی ہے جو سخت کام کرتا ہے۔ ان معاملات میں مقصد ٹکڑوں کو صحیح پوزیشن میں رکھنا ہے تاکہ ہڈی ٹھیک ہوسکے اور کندھے کو منتقل کیا جاسکے۔ انتخاب کبھی کبھی حقیقی طور پر اشتراک کیا جاتا ہے. کچھ ٹوٹنے کے لئے یا تو راستہ معقول ہے، اور فیصلہ اس بات پر آتا ہے کہ آپ کتنے خطرے کو قبول کرنے کے لئے تیار ہیں، اور آپ کو اپنے کندھے کو کیا کرنے کی ضرورت ہے. ہم آپ کے ساتھ دونوں کے ذریعے بات کریں گے.

آپ جو بھی راستہ اختیار کریں گے، پہلے ہفتوں میں بنیادی باتیں ایک جیسی ہوں گی۔ درد پر قابو پانا جلد سے جلد ضروری ہے، اور ہم آپ کی مدد کریں گے کہ کیا کام کرتا ہے۔ آپ کے بازو کی حفاظت کے لئے کی ضرورت ہو گی جبکہ ہڈی شفا، جس کا مطلب ہے کوئی اٹھانے یا ہم دوسری صورت میں کہتے ہیں جب تک اس پر سہارا. فزیوتھراپی آپ کے فریکچر کے لئے صحیح مرحلے پر شروع ہوتا ہے: بہت جلد شفا بخش ہڈی کو پریشان کر سکتا ہے، بہت دیر سے کندھے کو سخت چھوڑ سکتا ہے. ایک بار جب درد ختم ہوجائے تو آپ ہلکی ہلکی حرکتوں کا روزانہ کا پروگرام سیکھیں گے اور معمول کے مطابق استعمال کریں گے۔

کیا توقع کریں

زیادہ تر ٹوٹے ہوئے کندھے بغیر آپریشن کے ٹھیک ہو جاتے ہیں، اور یہ طریقہ زیادہ تر بالغوں کے لیے اچھا کام کرتا ہے۔ ہڈیوں کو تقریباً 14 ہفتوں میں ایک ساتھ جوڑا جاتا ہے۔ اس وقت کے دوران آپ ایک پھندے پہنیں گے اور بازو کو آرام دیں گے، پھر آہستہ آہستہ حرکت شروع کریں گے جیسے ہی درد ختم ہو جائے گا۔ ہر ہفتے پچھلے کے مقابلے میں تھوڑا سا آسان محسوس کرنا چاہئے. زیادہ تر لوگ اگلے ہفتوں میں روزمرہ کے کاموں، کام اور ڈرائیونگ پر واپس آجاتے ہیں، اگرچہ بھاری اٹھانے اور کھیلوں میں زیادہ وقت لگتا ہے۔

اگر آپ کے ٹوٹنے پر آپریشن کی ضرورت ہے، تو مقصد ایک ہی ہے: ٹکڑوں کو اپنی جگہ پر رکھیں تاکہ ہڈی ٹھیک ہو سکے اور کندھے دوبارہ حرکت کر سکے۔ بحالی اسی طرح کی رفتار پر چلتی ہے، پہلے بازو کی حفاظت کریں، پھر مرحلہ وار حرکت بحال کریں۔ پیچیدہ فریکچر کے لئے سرجری بہت سے لوگوں کے لئے اچھے طویل مدتی نتائج کی طرف جاتا ہے، لیکن یہ حقیقی خطرات لاتا ہے. پیچیدہ فریکچر کے لئے سرجری کے بعد پیچیدگی اور بار بار آپریشن کی شرح زیادہ ہے، لہذا ہم اس کی سفارش کرنے سے پہلے آپ کے ساتھ احتیاط سے وزن کریں گے.

علاج جو بھی ہو، کچھ چیزیں راستے میں غلط ہو سکتی ہیں۔ ٹوٹنا آہستہ آہستہ ٹھیک ہو سکتا ہے، جوڑنے میں ناکام ہو سکتا ہے، یا ہم چاہتے ہیں کے مقابلے میں ایک غریب پوزیشن میں آباد ہو سکتا ہے. کندھے بھی سخت ہو سکتے ہیں، یہی وجہ ہے کہ ہڈی تیار ہونے کے بعد نقل و حرکت اہم ہے۔ کچھ لوگ ایک سال کے بعد مسلسل علامات کے ساتھ رہ جاتے ہیں، اور ہم عام طور پر اس وقت تک اس کی پیش گوئی کر سکتے ہیں. اگر آپ کے ایک سالہ چیک اپ میں کوئی علامات نہیں ہیں تو، طویل مدتی فالو اپ کی ضرورت نہیں ہوسکتی ہے.

ایک اور چیز ایک ایماندار لفظ کا مستحق ہے. ایک ٹوٹا ہوا کندھا، خاص طور پر ایک بوڑھے بالغ میں، چوٹ کے بعد کے سالوں میں زیادہ موت کی شرح کے ساتھ منسلک ہے. یہ زیادہ تر عمر اور کمزوری کی وجہ سے ہوتا ہے نہ کہ کندھے کی وجہ سے۔ یہ ایک وجہ ہے کہ ہم آپ کی مجموعی صحت کو دیکھتے ہیں، نہ صرف آپ کے بازو کو، اور کیوں اس طرح کا ایک فریکچر آپ کی ہڈیوں کی طاقت کی جانچ پڑتال اور مستقبل میں گرنے سے بچنے کی ضرورت کا اشارہ کرسکتا ہے.

کسی سے کب ملنا ہے

اگر آپ کے بازو کی شکل واضح طور پر خراب نظر آتی ہے، اگر کندھے کے اوپر کوئی کھلا زخم ہے، اگر آپ کے ہاتھ یا بازو میں بے حسی یا چنگاری محسوس ہوتی ہے، یا اگر آپ کسی عضو کو استعمال نہیں کرسکتے ہیں تو فوری طور پر طبی امداد حاصل کریں۔ یہ اعصاب یا خون کی وریدوں کے مسئلے کی نشاندہی کر سکتے ہیں، اور خون کی وریدوں کے زخموں پر فوراً توجہ دینے کی ضرورت ہے۔ اگر آپ پہلے ہی دیکھے جاچکے ہیں لیکن درد کم نہیں ہورہا ہے، یا آپ کے بازو کی سوجن، حرکت یا استعمال میں ہفتہ بہ ہفتہ بہتری نہیں آرہی ہے کیونکہ ہڈی ٹھیک ہو رہی ہے، اپنے ڈاکٹر سے ملیں یا کسی ماہر کا جائزہ لیں۔ اس طرح کا ٹوٹنا بھی آپ کی مجموعی ہڈیوں کی طاقت کی جانچ پڑتال کرنے کا ایک اشارہ ہے، خاص طور پر اگر آپ کی ہڈیاں پہلے ٹوٹ چکی ہوں۔

مزید گہرائی میں

یہ سیکشن آپ کے اپنے علاج کے فیصلوں کے لئے ضرورت سے زیادہ جاتا ہے. ایک ٹوٹا ہوا کندھا بعد کی زندگی میں اضافی پڑھنے کے قابل ہے کیونکہ یہ آرتھوپیڈکس میں سب سے واضح مقدمات میں سے ایک ہے جہاں ثبوت اور روزمرہ کی مشق متفق نہیں ہے، اور جہاں علاج جو زیادہ سنگین لگتا ہے وہ نہیں ہے جو بہتر بازو پیدا کرتا ہے.

زیادہ تر بزرگ مریضوں کے لیے آپریشن سے نتائج میں بہتری نہیں آتی

یہ موازنہ بار بار کیا گیا ہے. پولنگ 1,743 مریضوں میں، ایک منظم جائزہ لینے کی سفارش کی جاتی ہے 65 سال سے زیادہ عمر کے اوسط مریض کے لئے غیر آپریشنل علاج جس میں ایک displaced proximal humeral fracture ہے، مشاہداتی مطالعات کے مجموعی اثرات بے ترتیب مقدمات کے ان لوگوں سے ملتے جلتے نوٹ [1]- جی ہاں . ایک سابقہ جائزہ 486 مریضوں نے پہلے سے ہی جراحی اور قدامت پسند طریقے سے منظم فریکچر کے درمیان نتائج میں کوئی واضح فرق نہیں پایا تھا [2].

یہ متضاد ہے، کیونکہ ایک منتقل شدہ قریبی humerus فریکچر کی ایکس رے خطرناک لگ رہا ہے. ہڈی کئی ٹکڑوں میں ہے اور واضح طور پر پوزیشن سے باہر ہے. مریض کا اور اکثر کلینیکل ڈاکٹر کا یہ احساس ہے کہ کسی واضح طور پر غلط چیز کو درست کیا جانا چاہیے۔

تجربات سے پتہ چلتا ہے کہ کندھے غیرمعمولی طور پر ناقص ہڈی کی پوزیشن کو معاف کرتے ہیں۔ یہ وزن برداشت کرنے والا جوڑ نہیں ہے، اس کے ارد گرد کا مینچف اور ڈیلٹائڈ زیادہ تر کام کرتے ہیں، اور ٹکڑے نرم ٹشو کے ذریعہ رکھے جاتے ہیں جو ان کو خون کی فراہمی برقرار رکھتا ہے۔ ایک کندھا جو ہلکا سا ٹیڑھا ہو کر ٹھیک ہو جاتا ہے اکثر حرکت کرتا ہے اور محسوس ہوتا ہے جیسے کسی کو جو ٹھیک کیا گیا تھا، اور یہ زخم، ایمپلانٹ، یا نیچے کے خطرات کے بغیر وہاں پہنچ جاتا ہے۔

مقدمے کی سماعت نے شواہد کو بدل دیا نہ کہ طریقہ کار کو

یہ وہ حصہ ہے جس کے ساتھ بیٹھنے کے قابل ہے۔ PROFHER ایک بڑی بے ترتیب آزمائش تھی جس نے آپریشن کے خلاف غیر آپریشن کے علاج کے خلاف آپریشن کے خلاف غیر آپریشن کے علاج کے خلاف ٹیسٹ کیا تھا اور اس سے کوئی فائدہ نہیں ملا. [6].

ایک مطالعہ 116,868 اس کے بعد مریضوں سے پوچھا گیا کہ کیا اس کی اشاعت کے بعد عملی طور پر تبدیلی آئی ہے۔ اس نے نہیں کیا: PROFHER نے آپریشنل علاج کی شرح پر نمایاں اثر نہیں ڈالا، آپریشن کے علاج کی شرح میں کوئی اہم تبدیلی کے ساتھ ہر سال [3].

یہ آپ کے کندھے کے بارے میں نہیں بلکہ ادویات کے بارے میں ایک دریافت ہے، اور یہ ایک مریض کے لئے جاننا ایک معقول چیز ہے۔ اگر آپ کو اس فریکچر کے لئے آپریشن کی پیشکش کی جاتی ہے، تو صحیح سوال یہ نہیں ہے کہ کیا سرجری کبھی بھی مناسب ہے، بعض اوقات یہ واضح طور پر ہے، لیکن خاص طور پر اس کے بارے میں کیا ہے آپ کا ٹوٹنا اور آپ کا ARM آپ کو اس گروپ سے باہر رکھتا ہے جس میں اس کی مدد نہیں کی گئی ہے۔

جب سرجری کا انتخاب کیا جاتا ہے، تو آپریشن منتقل ہو گیا ہے

مذکورہ بالا میں سے کسی کا مطلب یہ نہیں ہے کہ سرجری کبھی صحیح نہیں ہے۔ سر کے ٹوٹنے، ٹوٹنے کی خرابی، کھلی چوٹوں اور اعلی مطالبات کے ساتھ نوجوان مریضوں تمام مختلف تجاویز ہیں.

جہاں پرانے مریضوں کا آپریشن کیا جاتا ہے، اس شعبے میں فیصلہ کن طور پر ریورس ٹوٹل کندھے کی تبدیلی کی طرف قدم بڑھا دیا گیا ہے۔ پولنگ 228,523 مریضوں میں ، ریورس کل کندھے کے آرتھروپلاسٹی نے ہیمیارٹروپلاسٹی کے مقابلے میں بہتر فنکشنل نتائج اور پیچیدگی کی شرح پیش کی ، اور پلیٹ فکسشن کے مقابلے میں زیادہ سازگار ریویژن پروفائل ، ان فریکچر کے ساتھ بزرگ مریضوں میں [4].

منطق یہ ہے کہ ایک ریورس متبادل اچھی پوزیشن میں tuberosities شفا پر منحصر نہیں ہے، اور tuberosities شفا بالکل وہی ہے جو ایک osteoporotic کندھے میں ناقابل اعتماد ہے. یہ متغیر کو ہٹا دیتا ہے جو پرانے آپریشنوں کو غیر متوقع بنا دیتا ہے.

آپ کی صحت یابی کی اصل پیش گوئی کیا ہے؟

نہیں، زیادہ تر، فریکچر پیٹرن. کا ایک منظم جائزہ 4,323 صحت یابی کے بائیو سائکوسوشل پیش گوئوں کا جائزہ لینے والے مریضوں نے پایا کہ آپریشن سے پہلے کی فعال حیثیت، کس طرح اچھی طرح سے بازو اور شخص چوٹ سے پہلے کام کر رہے تھے، فعال بحالی کی پیشن گوئی کرتا ہے [5].

یہ صحیح طریقے سے سمجھنے کے قابل ہے. اس کا مطلب یہ نہیں ہے کہ شفا یابی رویہ کا معاملہ ہے. اس کا مطلب یہ ہے کہ آپ کے انجام کی سب سے مضبوط واحد پیش گوئی یہ ہے کہ آپ نے کہاں سے آغاز کیا، جو حقیقت پسندانہ توقعات کے لئے ایک دلیل ہے، اور مہینوں میں بحالی کو سنجیدگی سے لینے کے لئے جب کندھے سخت محسوس ہوتا ہے اور ترقی پوشیدہ محسوس ہوتی ہے.

حوالہ جات

[1] Beks RB ، Ochen Y ، Frima H ، Smeeing DP ، van der Meijden O ، Timmers TK ، et al. قریبی humeral فریکچر کے آپریشن کے مقابلے میں غیر آپریشن کے علاج: ایک منظم جائزہ ، میٹا تجزیہ ، اور مشاہداتی مطالعات اور بے ترتیب کنٹرول ٹرائلز کا موازنہ۔ J کندھے کی کہنی کی سرجری۔ 2018؛27(8): 1526-34۔ https://doi.org/10.1016/j.jse.2018.03.009

[2] نانڈیس ٹی جی ، مجید اے ، لیڈل اے ڈی ، قسطنطنیہ وی اے ، سیوگاننام پی ، ٹیکیس پی پی ، اور دیگر۔ پیچیدہ قریبی humeral فریکچر کے کنزرویٹو بمقابلہ آپریشنل انتظام: ایک میٹا تجزیہ۔ کندھے کی کہنی. 2010;2(3):166-74. https://doi.org/10.1111/j.1758-5740.2010.00075.x

[3] چیس مین جے ایس ، اینگلٹ سی ایچ ، یانگ کیو ، یو یو ، نذیر او ایف ، میرارچی اے جے۔ Proximal humerus fracture کے علاج کے رجحانات پر PROFHER کا اثر کندھے کوہنی. 2025;18(3):476-84. https://doi.org/10.1177/17585732251359178

[4] میخائل جے ، مولن آر ، کراس جے ایل ، جہاگیر دار او ، لوو ایکس ، سلامہ ایم۔ پروکسیمل ہومیرس فریکچر کے لئے ریورس کل کندھے کے آرتھروپلاسٹی بمقابلہ دیگر جراحی فکسشن طریقوں کے نتائج: ایک منظم جائزہ اور میٹا تجزیہ۔ JSES Rev Rep Tech. 2026;6(2): 100644. https://doi.org/10.1016/j.xrrt.2025.100644

[5] Varahra A، MacDermid JC، Szekeres M. قریبی ہومیرس فریکچر کے بعد بحالی کے بایوپیکوسوشل پیش گوئی عوامل کا ایک منظم جائزہ۔ جے ہینڈ تھری۔ 2023;36(4): 825-44. https://doi.org/10.1016/j.jht.2023.06.005

[6] رینگن اے ، ہینڈول ایچ ، بریلی ایس ، جیفرسن ایل ، کیڈنگ اے ، مارٹن بی سی ، اور دیگر سرجیکل بمقابلہ غیر سرجیکل علاج بالغوں کے قریب قریب ہومیرس کے فریکچر کے ساتھ: پروفر رینڈم شدہ کلینیکل ٹرائل۔ JAMA. 2015;313(10):1037-47. https://doi.org/10.1001/jama.2015.1629


Evidence & references

This is the clinical evidence summary written for health professionals. It is technical, and it lists the research this page was built from. You do not need to read it to understand your treatment or to make a decision about it.

Overview

  • Non-operative management is associated with good outcomes in the majority of proximal humerus fractures in adults [1].
  • Most one-part proximal humerus fractures are amenable to non-operative treatment with positive outcomes reported in the vast majority of cases [6].
  • Over the past decade, most older adults who sustain proximal humerus fractures continue to receive nonoperative treatment [9].
  • The available literature does not demonstrate a clear clinical benefit of operative treatment over nonoperative management of proximal humeral fractures in adult patients younger than 65 years [32].
  • Both age and gender have an association with the definitive treatment patients received for proximal humerus fractures over the last decade [2].
  • Most pediatric patients with proximal humerus fractures have favorable results, and complications are infrequent [13].
  • There are conflicting opinions on what outcome measure is best to assess function following the treatment of proximal humerus fractures [11].
  • Prospective clinical trials with longer-term follow-up are required for definitive assessment of the ideal fixation construct for surgical management of two-part proximal humerus fractures [18].
  • The selection of reverse total shoulder arthroplasty (RTSA) is a current, reasonable, and safe option to treat proximal humerus fractures, particularly in those with higher Neer grades and/or in older patients [33].
  • Patients with a proximal humerus fracture undergoing reverse total shoulder arthroplasty have significantly worse perioperative outcomes compared to patients with other indications [99].
  • Patients with a proximal humerus fracture undergoing reverse total shoulder arthroplasty have higher rates of complications compared to patients with other indications [99].
  • Patients with a proximal humerus fracture undergoing reverse total shoulder arthroplasty have longer hospital stays compared to patients with other indications [99].
  • Patients with a proximal humerus fracture undergoing reverse total shoulder arthroplasty have higher costs compared to patients with other indications [99].
  • Most randomized controlled trials on surgical management of proximal humerus fractures do not include patient-specific variables within their inclusion and exclusion criteria, besides age [17].

Anatomy & Pathophysiology

Bony Anatomy

  • The proximal humerus comprises four main parts: the humeral head, greater tuberosity (GT), lesser tuberosity (LT), and humeral shaft [41].
  • The articular head of the proximal humerus is spherical with a diameter of 37 to 57 mm [41].
  • The most superior portion of the articular surface of the humeral head averages 8 mm above the greater tuberosity [41].
  • Humeral version averages 29.8 degrees, with a range of 10 to 55 degrees [41].
  • The humeral head is inclined approximately 130 degrees with respect to the humeral shaft [41].
  • The neck-shaft angle measures an average of 135 degrees [42].
  • The humeral head is retroverted an average of 30 degrees [42].
  • The humeral head averages 19° of retroversion and 41° of inclination (neck-shaft angle) [44].
  • The anatomic neck is located at the junction of the articular surface and the tuberosities [41].
  • The surgical neck represents an indistinct region, or metadiaphyseal junction, below the tuberosities but above the humeral shaft [41].
  • The bicipital groove lies between the greater and lesser tuberosities and serves as a pathway for the long head of the biceps [41].
  • The distal aspect of the bicipital groove is internally rotated with respect to the proximal portion [41].
  • The glenoid is a convex structure of shallow depth shaped like an inverted pear [41].
  • The glenoid cavity is a shallow socket, approximately one third the size of the humeral head [42].
  • The subchondral bone of the glenoid is relatively flat, with articular concavity augmented by cartilage and a circumferential labrum [44].
  • The glenoid averages 5° of retroversion in relation to the axis of the scapular body [44].
  • The proximal humerus has three centers of ossification: the humeral head (4 to 6 months), the greater tuberosity (1 to 3 years), and the lesser tuberosity (3 to 5 years) [44].
  • The ossification centers of the proximal humerus fuse to the shaft at age 17 to 20 years [44].

Soft Tissue Anatomy

  • The greater tuberosity serves as the attachment site for the supraspinatus, infraspinatus, and teres minor tendons [41].
  • The lesser tuberosity serves as the attachment site for the subscapularis tendon [41].
  • The rotator cuff consists of the subscapularis, supraspinatus, infraspinatus, and teres minor muscles [42].
  • The teres major is not a rotator cuff muscle [42].
  • The rotator cuff muscles serve as depressors of the humeral head to allow the deltoid to efficiently abduct the humerus [42].
  • The infraspinatus and teres minor are external rotators, while the subscapularis is an internal rotator of the humerus [42].
  • The acromion, coracoacromial ligament, and coracoid process form the coracoacromial arch [41].
  • The rotator cuff, subacromial bursa, and subdeltoid bursa pass underneath the coracoacromial arch [41].
  • The subscapular bursa lies between the subscapularis tendon and the neck of the scapula and communicates with the joint cavity between the superior and middle glenohumeral ligaments [45].
  • The rotator interval is defined medially by the base of the coracoid, superiorly by the supraspinatus tendon, and inferiorly by the subscapularis tendon [44].
  • The rotator interval contains the coracohumeral ligament, the superior glenohumeral ligament, and the intra-articular portion of the long head of the biceps tendon [44].

Vascular Supply

  • The proximal humerus receives its blood supply from the anterior and posterior humeral circumflex branches from the third division of the axillary artery [41].
  • The posterior humeral circumflex artery travels with the axillary nerve, enters the quadrilateral space posteriorly, and anastomoses with a branch of the anterior circumflex to supply the posterior cuff [41].
  • The anterior humeral circumflex artery arises from the axillary artery at the inferior border of the subscapularis [41].
  • The anterior humeral circumflex artery provides vascular inflow to the humeral head by way of its terminal anterolateral branch, known as the artery of Laing or arcuate artery [41].
  • The ascending branch of the anterior humeral circumflex artery courses parallel to the lateral aspect of the long head biceps tendon and enters the humeral head at the interface of the bicipital groove and greater tuberosity [41].
  • The anterolateral ascending branch of the anterior humeral circumflex artery provides the primary blood supply to the humeral head [44].
  • The terminal intraosseous portion of the anterior humeral circumflex artery enters at the proximal aspect of the intertubercular groove as the arcuate artery [44].
  • Injury to the arcuate artery may result in osteonecrosis of the humeral head [41].
  • Additional extraosseous collateral branches can permit humeral head perfusion despite complete ligation of the arcuate artery [41].
  • Fractures of the anatomic neck have a poor prognosis because of complete disruption of the blood supply to the head [42].
  • Surgical neck fractures are common, and with these, the blood supply to the head is preserved [42].

Pathophysiology & Mechanism

  • The majority of proximal humerus fractures arise secondary to low energy injuries [36].
  • Nearly ¾ of proximal humerus fractures occur after a low energy domestic fall [36].
  • Most proximal humerus injuries in patients over the age of 60 occur as a result of a fall onto an outstretched hand from a standing height [36].
  • Younger patients without osteoporosis generally sustain a proximal humerus fracture after motor vehicle accidents, falls from greater than a standing height, seizures, or electric shock [36].
  • Fractures occur as either a direct blow to the shoulder or from indirect force transfer from a fall onto an outstretched hand [36].
  • The impact drives the proximal humerus into the glenoid, which acts as an 'anvil' on which the proximal humerus is impacted [36].
  • The combination of the direction of the blow to the humerus, quality of bone in the proximal humerus, and the pull of soft tissues produces various types of fracture patterns [36].
  • Displacement of proximal humerus fracture fragments occurs in a predictable manner based on deforming forces created by tendinous insertions [41].
  • The subscapularis inserts on the lesser tuberosity and causes medial displacement [41].
  • The supraspinatus and infraspinatus insert on the greater tuberosity and cause superior and posterior displacement [41].
  • The pectoralis major inserts on the humeral shaft and displaces it medially [41].
  • Proximal humerus fractures alter complex interactions of the shoulder girdle, resulting in pain, decreased range of motion and stiffness, and disability [41].
  • Displaced proximal humerus fractures can impede normal movement of structures under the coracoacromial arch, causing impingement and disruption of normal glenohumeral motion [41].
  • In displaced and nondisplaced proximal humerus fractures, the subdeltoid and subacromial bursae can become thickened and fibrotic, forming adhesions that limit normal glenohumeral motion [41].
  • A fracture involving the anatomic neck is prognostically worse than fractures involving other regions of the proximal humerus with respect to the potential disruption of the vascular supply to the humeral head and subsequent development of avascular necrosis [41].
  • Neurovascular injuries associated with proximal humerus fractures represent a rare yet clinically significant complication with potential for devastating functional outcomes [22].
  • The close anatomical relationship between the proximal humerus, axillary artery, and brachial plexus predisposes these structures to combined injury patterns that can threaten limb viability [22].
  • Most nerve injuries associated with proximal humerus fractures, particularly involving the axillary nerve, demonstrate favorable outcomes with conservative management [22].
  • Vascular injuries associated with proximal humerus fractures demand urgent multidisciplinary intervention to restore perfusion and prevent irreversible ischemia [22].
  • An axillary nerve injury from proximal humeral fracture or fracture-dislocation results in paralysis of the deltoid muscle and anesthesia over the “badge” region at the lateral proximal arm [42].
  • The brachial plexus and axillary artery lie anterior to the coracoid process of the scapula and humeral head [42].

Classification

  • Proximal humerus fractures are osteoporotic injuries with increasing incidence due to aging populations [3].
  • Accurate clinical evaluation, imaging, and classification are paramount for informed treatment decisions for proximal humerus fractures [3].
  • The Neer classification categorizes displaced proximal humerus fractures from two to four parts according to anatomic segments [109].
  • In the Neer classification, displacement is defined as separation of a fragment >1 cm or angulation of a fragment greater than 45° [109].
  • Fracture lines in nondisplaced segments are not included in the Neer classification [109].
  • The AO classification is based on the vascular supply of the articular segments [109].
  • The AO classification is divided into three categories (A, B, C) of increasing severity, with each category further split into numerical subgroupings [109].
  • Codman’s illustrative classification system proposed in 1934 serves as the basis for many classification models in clinical practice [86].
  • Codman’s classification distinguishes 12 fracture patterns based on the configuration of the humeral head, shaft, greater tuberosity, and lesser tuberosity [86].
  • Neer’s 1970 modification focused on the pathoanatomy regarding the presence or absence of displacement of the four bony segments rather than fracture lines [86].
  • Neer defined displacement limits as at least 1 cm of separation and 45° of angulation between fragments [86].
  • Neer clarified that displacement limits were intended to define the minimal displacement category and support standardization in outcome studies, not to dictate treatment [86].
  • The classification of proximal humerus fractures has suffered from poor intra- and interobserver reliability, especially in plain radiographs [86].
  • Evaluation of classification systems for proximal humerus fractures with plain radiographs has yielded low interobserver reliability [55].
  • The Mayo-FJD classification system allows high intraobserver and interobserver agreement using both radiographs and computed tomography [76].
  • The Mayo-FJD classification is a robust tool for predicting clinical success in proximal humerus fractures initially treated nonsurgically [87].
  • Morphologic classification of proximal humerus fractures as the sole basis for treatment algorithms and surgical success should be scrutinized [80].
  • Reported mean kappa values for interobserver agreement on the AO classification have varied between 0.26 and 0.53 [111].
  • Mean kappa values for interobserver agreement on the AO classification decreased from 0.53 for AO Types to 0.2 for AO Groups [111].
  • The use of artificial intelligence can accurately detect and classify proximal humerus fractures on plain shoulder AP radiographs [37].
  • Current diagnosis coding practices do not adequately capture the fracture complexity needed to conduct subgroup analysis for proximal humerus fractures [107].

Clinical Presentation

Epidemiology and Demographics

  • Proximal humerus fractures are typically osteoporotic fractures in women over 70, with prevalence increasing due to an aging population in poor general condition [25].
  • Treatment algorithms and outcomes following proximal humerus fractures in patients less than or equal to 60 years of age are distinctly different from that of a more elderly population [14].

Clinical Evaluation and Imaging

  • Accurate clinical evaluation, imaging, and classification are paramount for informed treatment decisions in proximal humerus fractures [3].
  • A thorough history and physical examination are essential in all patients being evaluated for surgical intervention of proximal humerus fractures [64].
  • Preoperative radiographs for proximal humerus fracture evaluation should include true anteroposterior shoulder, scapular lateral, and axillary views [64].
  • In tolerant patients, internal and external rotation views of the humerus may be helpful for evaluating proximal humerus fractures [64].
  • Computed tomography is not often necessary for proximal humerus fractures but can prove beneficial in more comminuted fractures when tuberosity size and position are difficult to ascertain on standard radiographs [64].
  • Magnetic resonance imaging has not proved very beneficial for proximal humerus fractures because most do not have an associated rotator cuff tear [64].
  • Computed tomography scan was more specific than radiographs in the assessment of proximal humerus fracture sequelae [23].

Complications and Associated Injuries

  • Complications associated with proximal humerus fractures are varied and can be categorized as occurring at the time of initial injury, during operative management, or as delayed sequelae [12].
  • The multifactorial etiology of neurovascular injuries in proximal humerus fractures encompasses direct trauma from displaced fracture fragments and indirect mechanisms [22].
  • Diagnosis of neurovascular injuries in proximal humerus fractures relies on early recognition through meticulous clinical examination and advanced imaging modalities [22].

Prognosis and Outcomes

  • There is substantial mortality in patients with a proximal humerus fracture [4].
  • Surviving patients with proximal humerus fractures frequently have persistent symptoms that can be predicted as early as after 1 year [4].
  • Mortality at 1 year for fragility proximal humerus fractures is universally high regardless of risk factors [15].

Investigations

Plain Radiography

  • At least two X-ray views should be obtained for proximal humerus fractures: an anteroposterior view in the plane of the glenoid and an axillary projection with the arm in abduction [49].
  • The axillary projection with the arm in abduction shows the relationship of the humeral head to the glenoid [49].
  • Standardized plain films are almost always sufficient to garner the information needed for shoulder care [20].
  • The anteroposterior view in the plane of the scapula shows the superoinferior position of the humeral head relative to the glenoid, presence of osteophytes, joint space narrowing, degree of medial displacement of the humerus, bone quality, loose bodies, and humeral head collapse or deformity [20].
  • The axillary view taken with the arm in the functional position of elevation shows the amount of glenoid bone, shape of the glenoid, its version in relation to the plane of the scapula, and the relationship of the humeral head to the glenoid fossa [20].
  • The axillary view is referred to as the "truth view" because it demonstrates glenohumeral relationships in the functional position of elevation [20].
  • CT scans have the disadvantage of being taken with the arm in the adducted position, unlike the axillary truth view [20].
  • The degree of posterior subluxation can be measured on the standardized axillary view as the position of the center of the humeral head in relation to the plane of the scapula, in relation to the glenoid face, or by the point of contact of the humeral articular surface on the glenoid articular surface [20].
  • The point of contact of the humeral articular surface on the glenoid articular surface reflects the degree of centering of the net humeral joint reaction force on the glenoid [20].
  • Malcentering of the joint reaction force leads to posterior instability, posterior glenoid wear, and "rocking horse" loosening of prosthetic glenoid components [20].
  • Artificial intelligence can accurately detect and classify proximal humerus fractures on plain shoulder AP radiographs [37].
  • Convolutional neural networks proficiently rule out proximal humerus fractures on plain radiographs [116].

Computed Tomography

  • Computed tomography is helpful for planning fracture surgery and shoulder joint replacement [49].
  • Computed tomography scans are more specific than radiographs in the assessment of proximal humerus fracture sequelae [23].
  • Three-dimensional reconstructions based on CT scans may reveal fine details of shoulder anatomy, but this additional information rarely changes the planning or conduct of arthroplasty [20].
  • The routine use of 3D-printed models may not be beneficial for classifying proximal humeral fracture patterns beyond the information gained from currently available imaging modalities [124].
  • The use of 3D-printed models as the sole determinant for recommending surgical intervention should be avoided at this time [124].

Magnetic Resonance Imaging

  • Magnetic resonance imaging is useful to identify osteonecrosis of the humeral head or a bone tumour [49].
  • Magnetic resonance imaging can identify labral tears and rotator cuff tears, although accuracy for these is enhanced by combining the scan with arthrography [49].
  • Zero-echo-time MRI presents a viable alternative to CT in the evaluation of proximal humerus fractures [110].

Ultrasound

  • Ultrasound is a simple and accurate test for identifying rotator cuff tears and calcific tendinitis [49].
  • Ultrasound can be useful in guiding injections or barbotage [49].

Clinical Evaluation and Classification

  • A simple fragility evaluation can help inform surgical decision-making and counseling in patients older than 50 years with proximal humerus fractures [126].

Treatment

Non-Operative Management

  • In the vast majority of cases, proximal humerus fractures may be treated nonoperatively [7].
  • Most proximal humeral fractures in elderly patients can be treated nonoperatively with good functional outcomes [34].
  • A majority of patients with proximal humeral fractures underwent non-operative treatment [71].
  • Non-operative management of proximal humerus fractures involves a period of immobilization and progressive physiotherapy [53].
  • In a systematic review of 12 studies involving 650 patients with a mean age of 65.0 years, the mean rate of radiographic union for non-operative management was 98% [53].
  • In a systematic review of 12 studies involving 650 patients, the weighted mean Constant score for non-operative management was 74, corresponding to a "fair" outcome [53].
  • In a systematic review of 12 studies involving 650 patients, the complication rate for non-operative management was 13%, with varus malunion being the most common at 7% [53].
  • In a systematic review of 12 studies involving 650 patients, proximal humerus avascular necrosis was found to be uncommon at 2% [53].
  • In a prospective evaluation of 160 patients managed non-operatively, the average Constant score was 74.3 with a mean difference between the injured and contralateral shoulder of 8.2 [53].
  • In a prospective evaluation of 160 patients managed non-operatively, the estimated median time to definitive union was 14 weeks [53].
  • In a prospective evaluation of 160 patients managed non-operatively, there was a 7% risk of delayed or nonunion [53].
  • In a prospective evaluation of 160 patients managed non-operatively, the eventual operation rate was 5.6% [53].
  • Nonsurgical treatment should have a more prominent role in the treatment of proximal humeral fractures [78].
  • Proximal humerus fractures in children have tremendous potential for remodeling, making non-operative management the treatment of choice for most fractures [85].
  • Nonsurgical management of proximal humerus fractures decreased during the study period [62].

Operative Management

  • No good evidence exists whether surgery is clearly superior to nonoperative treatment for proximal humerus fractures [98].
  • This trial found no significant difference in clinical outcomes at 2 years between surgery and non-operative treatment in patients 60 years of age or older with displaced 2-part fractures of the proximal humerus [67].
  • Reverse shoulder arthroplasty (RSA) had significantly the highest Constant score and lower total incidence of complications than open reduction internal fixation (ORIF), hemiarthroplasty (HA), and intramedullary nailing (IN) for displaced proximal humeral fractures [69].
  • RSA resulted in a lower incidence of additional surgery than ORIF and IN for displaced proximal humeral fractures [69].
  • The selection of RTSA over other surgical options is a current, reasonable, and safe option to treat proximal humerus fractures, particularly in those with higher Neer grades and/or in older patients [33].
  • Reverse total shoulder replacement is a promising treatment for geriatrics with three- and four-part proximal humerus fractures aiming for a better long-term functional outcome [30].
  • Hemiarthroplasty and reverse prosthesis are indicated for complex proximal humerus fractures in patients no younger than 70 years of age [29].
  • No single fixation method is a panacea for proximal humeral fractures; choice of implant and method should be selected according to individual patient and fracture pattern characteristics based on clearly defined indications and contraindications [66].
  • Percutaneous treatment of selected proximal humeral fractures results in predictable union and good clinical results with a low rate of complications [74].
  • Minimally invasive plate osteosynthesis (MIPO) is a safe and effective option for the treatment of proximal humerus fractures, with good functional recovery and fewer complications, which are typically technique dependent [79].
  • This meta-analysis demonstrates no significant differences in clinical outcomes or complication rates between standard components and fracture-specific components in RSA for the treatment of proximal humerus fractures [81].
  • Osteosynthesis of the proximal humerus in osteoporotic bone typically produces inferior results to that in younger subjects with better bone stock [61].
  • In a study of the PlantTan Fixator Plate, there were no cases of infection, impingement, avascular necrosis or malunion in the population under 70 years of age [61].
  • In a study of the PlantTan Fixator Plate, there was a significant proportion of patients with avascular necrosis and implant migration in the group over 70 years [61].

General Considerations

  • Consensus when managing proximal humerus fractures is limited to specific scenarios, whereas lack of consensus still exists in others [5].
  • Evidence-based recommendations to guide treatment of proximal humerus fractures are lacking [98].
  • Besides age, most RCTs on surgical management of proximal humerus fractures do not include patient-specific variables within their inclusion and exclusion criteria [17].

Complications

  • Complications associated with proximal humerus fractures are categorized as occurring at the time of initial injury, during operative management, or as delayed sequelae [12].
  • Predictive models using machine learning techniques demonstrated favorable discrimination and satisfactory-to-excellent performance in forecasting prolonged length of stay and serious adverse complications occurring within 30 days of surgical intervention for proximal humerus fracture [90].
  • After surgical treatment, patients with pathologic humerus fractures had significantly higher complication rates compared with native humerus fractures [114].
  • Guidelines and treatment algorithms for native humerus fractures may not be generalizable for those of pathologic origin [114].

Recovery

  • Persistent symptoms in surviving patients with proximal humerus fractures can be predicted as early as after 1 year [4].
  • After one-year follow-up, long-term follow-up of fixed proximal humerus fractures may be unnecessary for those without symptoms [27].
  • Long-term treatment with reverse shoulder arthroplasty for displaced 3- or 4-part proximal humerus fractures provides better functional outcomes compared to nonoperative treatment [75].
  • The difference in long-term functional outcomes between reverse shoulder arthroplasty and nonoperative treatment for displaced 3- or 4-part proximal humerus fractures is attributed to the deterioration of functional outcomes of the nonoperative treatment over time [75].
  • ORIF of nonosteoporotic proximal humeral fractures with locking plates led to favorable functional and radiologic outcomes at a minimum of 10 years of follow-up [82].
  • Patients in the proximal humerus fracture cohort were less likely to report persistent shoulder pain at all evaluated time points compared to the osteoarthritis cohort [123].
  • Timing of surgery did not impact outcomes of patients who underwent ORIF for proximal humerus fractures [127].
  • Delays beyond 5 days to surgery does not affect outcome following plate and screw fixation of proximal humerus fractures [127].

Key Evidence

  • [L4] Non-operative management is associated with good outcomes in the majority of proximal humerus fractures in adults. [1] (10.5312/wjo.v5.i5.685)
  • [L3] Both age and gender have an association with the definitive treatment patients received for proximal humerus fractures over the last decade. [2] (10.1016/j.jseint.2021.11.007)
  • [L3] Our results suggest that there is a substantial mortality in patients with a proximal humerus fracture, as we have previously reported, and that surviving patients frequently have persistent symptoms that can be predicted as early as after 1 year. [4] (10.1080/17453670510041295)
  • [L5] Consensus when managing proximal humerus fractures is limited to specific scenarios, whereas lack of consensus still exists in others. [5] (10.1016/j.jse.2024.12.005)
  • [L4] In the vast majority of cases, proximal humerus fractures may be treated nonoperatively. [7] (10.1155/2012/861598)
  • [L4] Over the past decade, most older adults who sustain proximal humerus fractures continue to receive nonoperative treatment. [9] (10.1016/j.jseint.2021.08.006)
  • [L4] Additionally, there are conflicting opinions on what outcome measure is best to assess function following the treatment of proximal humerus fractures. [11] (10.1007/s00264-017-3569-0)
  • [L5] Most pediatric patients with proximal humerus fractures have favorable results, and complications are infrequent. [13] (10.5435/jaaos-d-14-00033)
  • [L4] Treatment algorithms and outcomes following proximal humerus fractures in patients less than or equal to 60 years of age are distinctly different from that of a more elderly population. [14] (10.1016/j.xrrt.2023.01.002)
  • [L3] Mortality at 1 year for fragility proximal humerus fractures is universally high regardless of risk factors. [15] (10.1016/j.jse.2022.03.006)
  • [L2] Besides age, most RCTs on surgical management of proximal humerus fractures do not include patient-specific variables within their inclusion and exclusion criteria. [17] (10.1016/j.xrrt.2025.07.023)
  • [L3] However, prospective clinical trials with longer-term follow-up are required for definitive assessment of the ideal fixation construct for surgical management of two-part proximal humerus fractures. [18] (10.1016/j.injury.2013.08.024)
  • [L5] [22] (10.1016/j.xrrt.2026.100825)
  • [L2] Computed tomography scan was more specific than radiographs in the assessment of proximal humerus fracture sequelae. [23] (10.1177/17585732221150785)
  • [L2] Proximal humerus fractures are now typically osteoporotic fractures in women over 70, with prevalence increasing due to an aging population in poor general condition. [25] (10.1016/j.otsr.2012.05.013)
  • [L3] After one-year, long-term follow-up of fixed proximal humerus fractures may be unnecessary for those without symptoms. [27] (10.1007/s00590-021-03099-6)
  • [L4] They are indicated for complex proximal humerus fractures in patients no younger than 70 years of age. [29] (10.1016/j.otsr.2008.09.002)
  • [L3] It is a promising treatment for geriatrics with three- and four-part proximal humerus fractures aiming for a better long-term functional outcome. [30] (10.1186/s12891-023-06669-3)
  • [L1] The available literature does not demonstrate a clear clinical benefit of operative treatment over nonoperative management of proximal humeral fractures in adult patients younger than 65 years. [32] (10.1016/j.xrrt.2021.04.014)
  • [L5] The selection of RTSA over other surgical options is a current, reasonable, and safe option to treat proximal humerus fractures, particularly in those with higher Neer grades and/or in older patients. [33] (10.1097/corr.0000000000002430)
  • [L5] Most proximal humeral fractures in elderly patients can be treated nonoperatively with good functional outcomes. [34] (10.2106/jbjs.l.01293)
  • [L5] [36] (10.1007/978-3-319-08951-5_2)
  • [L4] The use of artificial intelligence can accurately detect and classify proximal humerus fractures on plain shoulder AP radiographs. [37] (10.1080/17453674.2018.1453714)
  • [L1] [53] (10.1186/s12891-018-2223-3)
  • [L5] Evaluation of the classification systems for fractures of the proximal humerus with plain radiographs has yielded low interobserver reliability. [55] (10.1016/j.ocl.2008.05.002)
  • [L4] [61] (10.1016/j.injury.2005.05.030)
  • [L4] Nonsurgical management of proximal humerus fractures decreased during the study period. [62] (10.1016/j.jhsa.2020.03.022)
  • [L4] [64] (10.5435/00124635-200805000-00008)
  • [L4] No single fixation method is a panacea for proximal humeral fractures; choice of implant and method should be selected according to individual patient and fracture pattern characteristics based on clearly defined indications and contraindications. [66] (10.1016/j.injury.2010.10.016)
  • [L1] This trial found no significant difference in clinical outcomes at 2 years between surgery and non-operative treatment in patients 60 years of age or older with displaced 2-part fractures of the proximal humerus. [67] (10.1371/journal.pmed.1002855)
  • [L1] [69] (10.1371/journal.pone.0166801)
  • [L3] A majority of patients with proximal humeral fractures underwent non-operative treatment. [71] (10.1186/s12891-019-2812-9)
  • [L4] Percutaneous treatment of selected proximal humeral fractures results in predictable union and good clinical results with a low rate of complications. [74] (10.1016/j.jse.2006.09.006)
  • [L1] Long-term treatment with RSA for displaced 3- or 4-part proximal humerus fractures provides better functional outcomes compared to nonoperative treatment, a difference attributed to the deterioration of functional outcomes of the nonoperative treatment over time. [75] (10.1016/j.jse.2024.09.032)
  • [L4] The Mayo-FJD classification system for proximal humerus fractures seems to allow high intraobserver and interobserver agreement using both radiographs and computed tomography. [76] (10.1016/j.jse.2023.02.035)
  • [L3] Nonsurgical treatment should have a more prominent role in the treatment of proximal humeral fractures. [78] (10.1016/j.jse.2011.01.025)
  • [L4] MIPO is a safe and effective option for the treatment of proximal humerus fractures, with good functional recovery and fewer complications, which are typically technique dependent. [79] (10.1016/j.aott.2016.10.003)
  • [L2] Morphologic classification of proximal humerus fractures as the sole basis for treatment algorithms and surgical success should be scrutinized. [80] (10.1016/j.jseint.2022.02.006)
  • [L1] This meta-analysis demonstrates no significant differences in clinical outcomes or complication rates between standard components and fracture-specific components in RSA, suggesting comparable performance in the treatment of proximal humerus fractures. [81] (10.1302/0301-620x.107b9.bjj-2024-1508.r2)
  • [L3] ORIF of nonosteoporotic proximal humeral fractures with locking plates led to favorable functional and radiologic outcomes at a minimum of 10 years of follow-up. [82] (10.1097/corr.0000000000002895)
  • [L5] [86] (10.1186/s13018-017-0639-3)
  • [L4] The Mayo-FJD classification is a robust tool for predicting clinical success in proximal humerus fractures initially treated nonsurgically. [87] (10.1016/j.jseint.2026.101743)
  • [L3] Predictive models constructed using ML techniques demonstrated favorable discrimination and satisfactory-to-excellent performance in forecasting prolonged LOS and serious adverse complications occurring within 30 days of surgical intervention for proximal humerus fracture. [90] (10.1016/j.jseint.2024.02.005)
  • [L4] Evidence-based recommendations to guide treatment of proximal humerus fractures are lacking, and no good evidence exists whether surgery is clearly superior to nonoperative treatment. [98] (10.1016/j.ocl.2008.06.003)
  • [Abstract] Patients with a proximal humerus fracture undergoing reverse total shoulder arthroplasty have significantly worse perioperative outcomes, including higher rates of complications, longer hospital stays, and higher costs, compared to patients with other indications. [99] (10.1016/j.jse.2015.05.005)
  • [L3] Current diagnosis coding practices do not adequately capture the fracture complexity needed to conduct subgroup analysis for proximal humerus fractures. [107] (10.1016/j.jse.2023.08.022)
  • [L5] [109] (10.21037/aoj-20-42)
  • [L4] ZTE MRI presents a viable alternative to CT in the evaluation of proximal humerus fractures (PHF). [110] (10.1016/j.jseint.2024.08.111)
  • [L2] [111] (10.1016/j.injury.2011.08.025)
  • [L3] After surgical treatment, patients with pathologic humerus fractures had significantly higher complication rates compared with native humerus fractures, suggesting that guidelines and treatment algorithms for native humerus fractures may not be generalizable for those of pathologic origin. [114] (10.1016/j.jse.2020.10.024)
  • [L3] CNNs proficiently rule out proximal humerus fractures on plain radiographs. [116] (10.1302/0301-620x.106b11.bjj-2024-0264.r1)
  • [L3] Patients in the proximal humerus fracture (PHF) cohort were less likely to report persistent shoulder pain at all evaluated time points compared to the osteoarthritis (OA) cohort, suggesting that symptom relief following treatment of traumatic pathology may differ fundamentally from that of chronic degenerative disease. [123] (10.1016/j.jsea.2026.100012)
  • [L5] The routine use of 3D-printed models may not be beneficial for classifying proximal humeral fracture patterns beyond the information gained from currently available imaging modalities, and their use as the sole determinant for recommending surgical intervention should be avoided at this time. [124] (10.1097/corr.0000000000002017)
  • [L3] Our data suggest that a simple fragility evaluation can help inform surgical decision-making and counseling in patients older than 50 years with proximal humerus fractures. [126] (10.1016/j.jseint.2020.10.017)
  • [L3] Timing of surgery did not impact outcomes of patients who underwent ORIF for proximal humerus fractures. [127] (10.1016/j.jse.2025.02.019)

References

[1] Management of proximal humerus fractures in adults. World Journal of Orthopedics. 2014. DOI: 10.5312/wjo.v5.i5.685

[2] How age and gender influence proximal humerus fracture management in patients older than fifty years. JSES International. 2022. DOI: 10.1016/j.jseint.2021.11.007

[3] 1. Clinical Evaluation, Imaging, and Classification of Proximal Humerus Fractures. 2011.

[4] Long-term outcome of a proximal humerus fracture predicted after 1 year. Acta Orthopaedica. 2005. DOI: 10.1080/17453670510041295

[5] Consensus statement on the treatment of proximal humerus fractures: a Delphi approach by the Neer Circle of the American Shoulder and Elbow Surgeons. Journal of Shoulder and Elbow Surgery. 2025. DOI: 10.1016/j.jse.2024.12.005

[6] 2. Non-operative Management of Proximal Humerus Fractures: Indications, Protocols, and Outcomes. 2011.

[7] Evaluation and Management of Proximal Humerus Fractures. Advances in Orthopedics. 2012. DOI: 10.1155/2012/861598

[9] Trending a decade of proximal humerus fracture management in older adults. JSES International. 2022. DOI: 10.1016/j.jseint.2021.08.006

[11] Orthopaedic surgeons’ opinions surrounding the management of proximal humerus fractures: an international survey. International Orthopaedics. 2017. DOI: 10.1007/s00264-017-3569-0

[12] 6. Complications of Proximal Humerus Fractures: Evaluation and Management. 2011.

[13] Evaluation and Management of Pediatric Proximal Humerus Fractures. Journal of the American Academy of Orthopaedic Surgeons. 2015. DOI: 10.5435/jaaos-d-14-00033

[14] Proximal humerus fracture management and outcomes are distinctly different for individuals 60 years of age or younger: a systematic review. JSES Reviews, Reports, and Techniques. 2023. DOI: 10.1016/j.xrrt.2023.01.002

[15] Morbidity and mortality of fragility proximal humerus fractures: a retrospective cohort study of patients presenting to a level one trauma center. Journal of Shoulder and Elbow Surgery. 2022. DOI: 10.1016/j.jse.2022.03.006

[17] Randomized controlled trials investigating proximal humerus fractures lack consensus in inclusion criteria. JSES Reviews, Reports, and Techniques. 2025. DOI: 10.1016/j.xrrt.2025.07.023

[18] A comprehensive update on current fixation options for two-part proximal humerus fractures. Injury. 2014. DOI: 10.1016/j.injury.2013.08.024

[20] Rockwood And Matsen S The Shoulder. Arthroscopic Management of Prearthritic and Arthritic Conditions of the Shoulder and the Postarthroplasty Shoulder > Radiographic Evaluation.

[22] Neurovascular Injuries Associated with Proximal Humerus Fractures: A Review of the Current Literature. JSES Reviews, Reports, and Techniques. 2026. DOI: 10.1016/j.xrrt.2026.100825

[23] Computed tomography improves the diagnostic accuracy but not the interobserver reliability of the Boileau classification of proximal humerus fracture sequelae. Shoulder & Elbow. 2023. DOI: 10.1177/17585732221150785

[25] Epidemiology of proximal humerus fractures managed in a trauma center. Orthopaedics & Traumatology: Surgery & Research. 2012. DOI: 10.1016/j.otsr.2012.05.013

[27] No change in outcome ten years following locking plate repair of displaced proximal humerus fractures. European Journal of Orthopaedic Surgery & Traumatology. 2021. DOI: 10.1007/s00590-021-03099-6

[29] Three or four parts complex proximal humerus fractures: Hemiarthroplasty versus reverse prosthesis: A comparative study of 40 cases. Orthopaedics & Traumatology: Surgery & Research. 2009. DOI: 10.1016/j.otsr.2008.09.002

[30] Rehabilitation progress following reverse total shoulder replacement and internal fixation for geriatric three and four-part proximal humerus fractures – a propensity score matched comparison. BMC Musculoskeletal Disorders. 2023. DOI: 10.1186/s12891-023-06669-3

[32] Analyzing outcomes after proximal humerus fractures in patients <65 years: a systematic review and meta-analysis. JSES Reviews, Reports, and Techniques. 2021. DOI: 10.1016/j.xrrt.2021.04.014

[33] CORR Insights®: Short-term Complications for Proximal Humerus Fracture Surgery Have Decreased: An Analysis of the National Surgical Quality Improvement Program Database. Clinical Orthopaedics & Related Research. 2022. DOI: 10.1097/corr.0000000000002430

[34] Proximal Humeral Fracture Treatment in Adults. Journal of Bone and Joint Surgery. 2014. DOI: 10.2106/jbjs.l.01293

[36] Nonoperative Treatment of Proximal Humerus Fractures. Proximal Humerus Fractures. 2014. DOI: 10.1007/978-3-319-08951-5_2

[37] Automated detection and classification of the proximal humerus fracture by using deep learning algorithm. Acta Orthopaedica. 2018. DOI: 10.1080/17453674.2018.1453714

[41] Rockwood And Matsen S The Shoulder. Shoulder and Elbow Specialty Clinic Workers’ Survey > ANATOMY.

[42] A Lange Medical Book Current Diagnosis Treatment In Orthopedics Fifth Edition. 2Musculoskeletal Trauma Surgery > SHOULDER AND ARM INJURIES.

[44] Aaos Comprehensive Orthopaedic Review 3. Anatomy of the Shoulder, Arm, and Elbow > I. Shoulder.

[45] Rockwood And Matsen S The Shoulder. Developmental Anatomy of the Shoulder and Anatomy of the Glenohumeral Joint > Bursae.

[49] Apley And Solomon S Concise System Of Orthopaedics And Trauma. INVESTIGATION.

[53] Open reduction internal fixation vs non-operative management in proximal humerus fractures: a prospective, randomized controlled trial protocol. BMC Musculoskeletal Disorders. 2018. DOI: 10.1186/s12891-018-2223-3

[55] Classification and Imaging of Proximal Humerus Fractures. Orthopedic Clinics of North America. 2008. DOI: 10.1016/j.ocl.2008.05.002

[61] Early experience with the PlantTan Fixator Plate for 2 and 3 part fractures of the proximal humerus. Injury. 2005. DOI: 10.1016/j.injury.2005.05.030

[62] Cost-Minimization Analysis and Treatment Trends of Surgical and Nonsurgical Treatment of Proximal Humerus Fractures. The Journal of Hand Surgery. 2020. DOI: 10.1016/j.jhsa.2020.03.022

[64] Fixed-angle Locked Plating of Two-, Three-, and Four-part Proximal Humerus Fractures. Journal of the American Academy of Orthopaedic Surgeons. 2008. DOI: 10.5435/00124635-200805000-00008

[66] New trends in fixation of proximal humeral fractures: A review. Injury. 2011. DOI: 10.1016/j.injury.2010.10.016

[67] Operative versus non-operative treatment for 2-part proximal humerus fracture: A multicenter randomized controlled trial. PLOS Medicine. 2019. DOI: 10.1371/journal.pmed.1002855

[69] Effectiveness and Safety of Interventions for Treating Adults with Displaced Proximal Humeral Fracture: A Network Meta-Analysis and Systematic Review. PLOS ONE. 2016. DOI: 10.1371/journal.pone.0166801

[71] Readmissions, revisions, and mortality after treatment for proximal humeral fractures in three large states. BMC Musculoskeletal Disorders. 2019. DOI: 10.1186/s12891-019-2812-9

[74] Outcomes after percutaneous reduction and fixation of proximal humeral fractures. Journal of Shoulder and Elbow Surgery. 2007. DOI: 10.1016/j.jse.2006.09.006

[75] Long-term outcomes of reverse shoulder arthroplasty versus nonoperative treatment for 3- or 4-part proximal humerus fractures in elderly patients: results from a prior randomized clinical trial. Journal of Shoulder and Elbow Surgery. 2025. DOI: 10.1016/j.jse.2024.09.032

[76] The Mayo-FJD Classification System For Proximal Humerus Fractures: Intra And Interobserver Agreement. Journal of Shoulder and Elbow Surgery. 2023. DOI: 10.1016/j.jse.2023.02.035

[78] Locking plate versus nonsurgical treatment for proximal humeral fractures: better midterm outcome with nonsurgical treatment. Journal of Shoulder and Elbow Surgery. 2011. DOI: 10.1016/j.jse.2011.01.025

[79] Minimally invasive plate osteosynthesis with PHILOS plate for proximal humerus fractures. Acta Orthopaedica et Traumatologica Turcica. 2020. DOI: 10.1016/j.aott.2016.10.003

[80] The reliability of the Neer classification for proximal humerus fractures: a survey of orthopedic shoulder surgeons. JSES International. 2022. DOI: 10.1016/j.jseint.2022.02.006

[81] Standard compared with fracture-specific components in reverse shoulder arthroplasty for proximal humerus fractures. The Bone & Joint Journal. 2025. DOI: 10.1302/0301-620x.107b9.bjj-2024-1508.r2

[82] What Are the Long-term Outcomes of Locking Plates for Nonosteoporotic Three-part and Four-part Proximal Humeral Fractures With a Minimum 10-year Follow-up Period?. Clinical Orthopaedics & Related Research. 2023. DOI: 10.1097/corr.0000000000002895

[85] 24. Proximal Humerus Fractures in the Adolescent Patient: Diagnosis, Management, and Complications. 2009.

[86] Current concepts in locking plate fixation of proximal humerus fractures. Journal of Orthopaedic Surgery and Research. 2017. DOI: 10.1186/s13018-017-0639-3

[87] Prognostic value of the Mayo-Fundación Jiménez Díaz classification for nonsurgical proximal humerus fractures: a morphological approach to predicting functional outcomes. JSES International. 2026. DOI: 10.1016/j.jseint.2026.101743

[90] Preoperative factors predict prolonged length of stay, serious adverse complications, and readmission following operative intervention of proximal humerus fractures: a machine learning analysis of a national database. JSES International. 2024. DOI: 10.1016/j.jseint.2024.02.005

[98] Open Reduction and Internal Fixation of Proximal Humerus Fractures. Orthopedic Clinics of North America. 2008. DOI: 10.1016/j.ocl.2008.06.003

[99] Reverse Total Shoulder Arthroplasty Patients with a Proximal Humerus Fracture Have Significantly Worse Perioperative Outcomes than Other Indications: An Analysis of 5644 Cases. Journal of Shoulder and Elbow Surgery. 2015. DOI: 10.1016/j.jse.2015.05.005

[107] ICD-10 diagnosis codes in electronic health records do not adequately capture fracture complexity for proximal humerus fractures. Journal of Shoulder and Elbow Surgery. 2024. DOI: 10.1016/j.jse.2023.08.022

[109] Locking plate fixation for proximal humerus fractures—when do I use a fibular strut?. Annals of Joint. 2020. DOI: 10.21037/aoj-20-42

[110] "Preliminary Study Of Integrating ZTE MRI In Proximal Humerus Fractures: Bridging The Gap Between CT And MRI". JSES International. 2024. DOI: 10.1016/j.jseint.2024.08.111

[111] Benefits and harms of locking plate osteosynthesis in intraarticular (OTA Type C) fractures of the proximal humerus: A systematic review. Injury. 2012. DOI: 10.1016/j.injury.2011.08.025

[114] Morbidity and mortality of surgically treated pathologic humerus fractures compared to native humerus fractures. Journal of Shoulder and Elbow Surgery. 2021. DOI: 10.1016/j.jse.2020.10.024

[116] Detection, classification, and characterization of proximal humerus fractures on plain radiographs. The Bone & Joint Journal. 2024. DOI: 10.1302/0301-620x.106b11.bjj-2024-0264.r1

[123] Complication rates following total shoulder arthroplasty for osteoarthritis versus proximal humerus fracture: a propensity-matched cohort comparison of 9,190 patients. Journal of Shoulder and Elbow Arthroplasty. 2026. DOI: 10.1016/j.jsea.2026.100012

[124] CORR Insights®: 3D-printed Handheld Models Do Not Improve Recognition of Specific Characteristics and Patterns of Three-part and Four-part Proximal Humerus Fractures. Clinical Orthopaedics & Related Research. 2021. DOI: 10.1097/corr.0000000000002017

[126] Use of a 5-item modified Fragility Index for risk stratification in patients undergoing surgical management of proximal humerus fractures. JSES International. 2021. DOI: 10.1016/j.jseint.2020.10.017

[127] Delays beyond 5 days to surgery does not affect outcome following plate and screw fixation of proximal humerus fractures. Journal of Shoulder and Elbow Surgery. 2025. DOI: 10.1016/j.jse.2025.02.019

Creative Commons BY-NC 4.0

CC Creative Commons licence
BY Attribution — you must credit the source
NC NonCommercial — not for commercial use

Attribution-NonCommercial 4.0 International


Creative Commons Corporation ("Creative Commons") is not a law firm and does not provide legal services or legal advice. Distribution of Creative Commons public licenses does not create a lawyer-client or other relationship. Creative Commons makes its licenses and related information available on an "as-is" basis. Creative Commons gives no warranties regarding its licenses, any material licensed under their terms and conditions, or any related information. Creative Commons disclaims all liability for damages resulting from their use to the fullest extent possible.

Using Creative Commons Public Licenses

Creative Commons public licenses provide a standard set of terms and conditions that creators and other rights holders may use to share original works of authorship and other material subject to copyright and certain other rights specified in the public license below. The following considerations are for informational purposes only, are not exhaustive, and do not form part of our licenses.

Considerations for licensors: Our public licenses are intended for use by those authorized to give the public permission to use material in ways otherwise restricted by copyright and certain other rights. Our licenses are irrevocable. Licensors should read and understand the terms and conditions of the license they choose before applying it. Licensors should also secure all rights necessary before applying our licenses so that the public can reuse the material as expected. Licensors should clearly mark any material not subject to the license. This includes other CC- licensed material, or material used under an exception or limitation to copyright. More considerations for licensors: wiki.creativecommons.org/Considerations_for_licensors

Considerations for the public: By using one of our public licenses, a licensor grants the public permission to use the licensed material under specified terms and conditions. If the licensor's permission is not necessary for any reason--for example, because of any applicable exception or limitation to copyright--then that use is not regulated by the license. Our licenses grant only permissions under copyright and certain other rights that a licensor has authority to grant. Use of the licensed material may still be restricted for other reasons, including because others have copyright or other rights in the material. A licensor may make special requests, such as asking that all changes be marked or described. Although not required by our licenses, you are encouraged to respect those requests where reasonable. More considerations for the public: wiki.creativecommons.org/Considerations_for_licensees


Creative Commons Attribution-NonCommercial 4.0 International Public License

By exercising the Licensed Rights (defined below), You accept and agree to be bound by the terms and conditions of this Creative Commons Attribution-NonCommercial 4.0 International Public License ("Public License"). To the extent this Public License may be interpreted as a contract, You are granted the Licensed Rights in consideration of Your acceptance of these terms and conditions, and the Licensor grants You such rights in consideration of benefits the Licensor receives from making the Licensed Material available under these terms and conditions.

Section 1 -- Definitions.

a. Adapted Material means material subject to Copyright and Similar Rights that is derived from or based upon the Licensed Material and in which the Licensed Material is translated, altered, arranged, transformed, or otherwise modified in a manner requiring permission under the Copyright and Similar Rights held by the Licensor. For purposes of this Public License, where the Licensed Material is a musical work, performance, or sound recording, Adapted Material is always produced where the Licensed Material is synched in timed relation with a moving image.

b. Adapter's License means the license You apply to Your Copyright and Similar Rights in Your contributions to Adapted Material in accordance with the terms and conditions of this Public License.

c. Copyright and Similar Rights means copyright and/or similar rights closely related to copyright including, without limitation, performance, broadcast, sound recording, and Sui Generis Database Rights, without regard to how the rights are labeled or categorized. For purposes of this Public License, the rights specified in Section 2(b)(1)-(2) are not Copyright and Similar Rights.

d. Effective Technological Measures means those measures that, in the absence of proper authority, may not be circumvented under laws fulfilling obligations under Article 11 of the WIPO Copyright Treaty adopted on December 20, 1996, and/or similar international agreements.

e. Exceptions and Limitations means fair use, fair dealing, and/or any other exception or limitation to Copyright and Similar Rights that applies to Your use of the Licensed Material.

f. Licensed Material means the artistic or literary work, database, or other material to which the Licensor applied this Public License.

g. Licensed Rights means the rights granted to You subject to the terms and conditions of this Public License, which are limited to all Copyright and Similar Rights that apply to Your use of the Licensed Material and that the Licensor has authority to license.

h. Licensor means the individual(s) or entity(ies) granting rights under this Public License.

i. NonCommercial means not primarily intended for or directed towards commercial advantage or monetary compensation. For purposes of this Public License, the exchange of the Licensed Material for other material subject to Copyright and Similar Rights by digital file-sharing or similar means is NonCommercial provided there is no payment of monetary compensation in connection with the exchange.

j. Share means to provide material to the public by any means or process that requires permission under the Licensed Rights, such as reproduction, public display, public performance, distribution, dissemination, communication, or importation, and to make material available to the public including in ways that members of the public may access the material from a place and at a time individually chosen by them.

k. Sui Generis Database Rights means rights other than copyright resulting from Directive 96/9/EC of the European Parliament and of the Council of 11 March 1996 on the legal protection of databases, as amended and/or succeeded, as well as other essentially equivalent rights anywhere in the world.

l. You means the individual or entity exercising the Licensed Rights under this Public License. Your has a corresponding meaning.

Section 2 -- Scope.

a. License grant.

1. Subject to the terms and conditions of this Public License, the Licensor hereby grants You a worldwide, royalty-free, non-sublicensable, non-exclusive, irrevocable license to exercise the Licensed Rights in the Licensed Material to:

a. reproduce and Share the Licensed Material, in whole or in part, for NonCommercial purposes only; and

b. produce, reproduce, and Share Adapted Material for NonCommercial purposes only.

2. Exceptions and Limitations. For the avoidance of doubt, where Exceptions and Limitations apply to Your use, this Public License does not apply, and You do not need to comply with its terms and conditions.

3. Term. The term of this Public License is specified in Section 6(a).

4. Media and formats; technical modifications allowed. The Licensor authorizes You to exercise the Licensed Rights in all media and formats whether now known or hereafter created, and to make technical modifications necessary to do so. The Licensor waives and/or agrees not to assert any right or authority to forbid You from making technical modifications necessary to exercise the Licensed Rights, including technical modifications necessary to circumvent Effective Technological Measures. For purposes of this Public License, simply making modifications authorized by this Section 2(a) (4) never produces Adapted Material.

5. Downstream recipients.

a. Offer from the Licensor -- Licensed Material. Every recipient of the Licensed Material automatically receives an offer from the Licensor to exercise the Licensed Rights under the terms and conditions of this Public License.

b. No downstream restrictions. You may not offer or impose any additional or different terms or conditions on, or apply any Effective Technological Measures to, the Licensed Material if doing so restricts exercise of the Licensed Rights by any recipient of the Licensed Material.

6. No endorsement. Nothing in this Public License constitutes or may be construed as permission to assert or imply that You are, or that Your use of the Licensed Material is, connected with, or sponsored, endorsed, or granted official status by, the Licensor or others designated to receive attribution as provided in Section 3(a)(1)(A)(i).

b. Other rights.

1. Moral rights, such as the right of integrity, are not licensed under this Public License, nor are publicity, privacy, and/or other similar personality rights; however, to the extent possible, the Licensor waives and/or agrees not to assert any such rights held by the Licensor to the limited extent necessary to allow You to exercise the Licensed Rights, but not otherwise.

2. Patent and trademark rights are not licensed under this Public License.

3. To the extent possible, the Licensor waives any right to collect royalties from You for the exercise of the Licensed Rights, whether directly or through a collecting society under any voluntary or waivable statutory or compulsory licensing scheme. In all other cases the Licensor expressly reserves any right to collect such royalties, including when the Licensed Material is used other than for NonCommercial purposes.

Section 3 -- License Conditions.

Your exercise of the Licensed Rights is expressly made subject to the following conditions.

a. Attribution.

1. If You Share the Licensed Material (including in modified form), You must:

a. retain the following if it is supplied by the Licensor with the Licensed Material:

i. identification of the creator(s) of the Licensed Material and any others designated to receive attribution, in any reasonable manner requested by the Licensor (including by pseudonym if designated);

ii. a copyright notice;

iii. a notice that refers to this Public License;

iv. a notice that refers to the disclaimer of warranties;

v. a URI or hyperlink to the Licensed Material to the extent reasonably practicable;

b. indicate if You modified the Licensed Material and retain an indication of any previous modifications; and

c. indicate the Licensed Material is licensed under this Public License, and include the text of, or the URI or hyperlink to, this Public License.

2. You may satisfy the conditions in Section 3(a)(1) in any reasonable manner based on the medium, means, and context in which You Share the Licensed Material. For example, it may be reasonable to satisfy the conditions by providing a URI or hyperlink to a resource that includes the required information.

3. If requested by the Licensor, You must remove any of the information required by Section 3(a)(1)(A) to the extent reasonably practicable.

4. If You Share Adapted Material You produce, the Adapter's License You apply must not prevent recipients of the Adapted Material from complying with this Public License.

Section 4 -- Sui Generis Database Rights.

Where the Licensed Rights include Sui Generis Database Rights that apply to Your use of the Licensed Material:

a. for the avoidance of doubt, Section 2(a)(1) grants You the right to extract, reuse, reproduce, and Share all or a substantial portion of the contents of the database for NonCommercial purposes only;

b. if You include all or a substantial portion of the database contents in a database in which You have Sui Generis Database Rights, then the database in which You have Sui Generis Database Rights (but not its individual contents) is Adapted Material; and

c. You must comply with the conditions in Section 3(a) if You Share all or a substantial portion of the contents of the database.

For the avoidance of doubt, this Section 4 supplements and does not replace Your obligations under this Public License where the Licensed Rights include other Copyright and Similar Rights.

Section 5 -- Disclaimer of Warranties and Limitation of Liability.

a. UNLESS OTHERWISE SEPARATELY UNDERTAKEN BY THE LICENSOR, TO THE EXTENT POSSIBLE, THE LICENSOR OFFERS THE LICENSED MATERIAL AS-IS AND AS-AVAILABLE, AND MAKES NO REPRESENTATIONS OR WARRANTIES OF ANY KIND CONCERNING THE LICENSED MATERIAL, WHETHER EXPRESS, IMPLIED, STATUTORY, OR OTHER. THIS INCLUDES, WITHOUT LIMITATION, WARRANTIES OF TITLE, MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE, NON-INFRINGEMENT, ABSENCE OF LATENT OR OTHER DEFECTS, ACCURACY, OR THE PRESENCE OR ABSENCE OF ERRORS, WHETHER OR NOT KNOWN OR DISCOVERABLE. WHERE DISCLAIMERS OF WARRANTIES ARE NOT ALLOWED IN FULL OR IN PART, THIS DISCLAIMER MAY NOT APPLY TO YOU.

b. TO THE EXTENT POSSIBLE, IN NO EVENT WILL THE LICENSOR BE LIABLE TO YOU ON ANY LEGAL THEORY (INCLUDING, WITHOUT LIMITATION, NEGLIGENCE) OR OTHERWISE FOR ANY DIRECT, SPECIAL, INDIRECT, INCIDENTAL, CONSEQUENTIAL, PUNITIVE, EXEMPLARY, OR OTHER LOSSES, COSTS, EXPENSES, OR DAMAGES ARISING OUT OF THIS PUBLIC LICENSE OR USE OF THE LICENSED MATERIAL, EVEN IF THE LICENSOR HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH LOSSES, COSTS, EXPENSES, OR DAMAGES. WHERE A LIMITATION OF LIABILITY IS NOT ALLOWED IN FULL OR IN PART, THIS LIMITATION MAY NOT APPLY TO YOU.

c. The disclaimer of warranties and limitation of liability provided above shall be interpreted in a manner that, to the extent possible, most closely approximates an absolute disclaimer and waiver of all liability.

Section 6 -- Term and Termination.

a. This Public License applies for the term of the Copyright and Similar Rights licensed here. However, if You fail to comply with this Public License, then Your rights under this Public License terminate automatically.

b. Where Your right to use the Licensed Material has terminated under Section 6(a), it reinstates:

1. automatically as of the date the violation is cured, provided it is cured within 30 days of Your discovery of the violation; or

2. upon express reinstatement by the Licensor.

For the avoidance of doubt, this Section 6(b) does not affect any right the Licensor may have to seek remedies for Your violations of this Public License.

c. For the avoidance of doubt, the Licensor may also offer the Licensed Material under separate terms or conditions or stop distributing the Licensed Material at any time; however, doing so will not terminate this Public License.

d. Sections 1, 5, 6, 7, and 8 survive termination of this Public License.

Section 7 -- Other Terms and Conditions.

a. The Licensor shall not be bound by any additional or different terms or conditions communicated by You unless expressly agreed.

b. Any arrangements, understandings, or agreements regarding the Licensed Material not stated herein are separate from and independent of the terms and conditions of this Public License.

Section 8 -- Interpretation.

a. For the avoidance of doubt, this Public License does not, and shall not be interpreted to, reduce, limit, restrict, or impose conditions on any use of the Licensed Material that could lawfully be made without permission under this Public License.

b. To the extent possible, if any provision of this Public License is deemed unenforceable, it shall be automatically reformed to the minimum extent necessary to make it enforceable. If the provision cannot be reformed, it shall be severed from this Public License without affecting the enforceability of the remaining terms and conditions.

c. No term or condition of this Public License will be waived and no failure to comply consented to unless expressly agreed to by the Licensor.

d. Nothing in this Public License constitutes or may be interpreted as a limitation upon, or waiver of, any privileges and immunities that apply to the Licensor or You, including from the legal processes of any jurisdiction or authority.


Creative Commons is not a party to its public licenses. Notwithstanding, Creative Commons may elect to apply one of its public licenses to material it publishes and in those instances will be considered the “Licensor.” The text of the Creative Commons public licenses is dedicated to the public domain under the CC0 Public Domain Dedication. Except for the limited purpose of indicating that material is shared under a Creative Commons public license or as otherwise permitted by the Creative Commons policies published at creativecommons.org/policies, Creative Commons does not authorize the use of the trademark "Creative Commons" or any other trademark or logo of Creative Commons without its prior written consent including, without limitation, in connection with any unauthorized modifications to any of its public licenses or any other arrangements, understandings, or agreements concerning use of licensed material. For the avoidance of doubt, this paragraph does not form part of the public licenses.

Creative Commons may be contacted at creativecommons.org.