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डिस्टल ह्यूमरस फ्रैक्चर

Updated Sep 2026

यह पृष्ठ मशीन द्वारा अनूदित है और अभी तक किसी चिकित्सक द्वारा जाँचा नहीं गया है। अंग्रेज़ी संस्करण ही आधिकारिक है।

आप क्या महसूस कर रहे हैं

डिस्टल ह्यूमरस फ्रैक्चर हाथ की हड्डी के निचले छोर में, कोहनी के ठीक ऊपर टूटना होता है। यह आमतौर पर हाथ पर गिरने, सीधे झटके, या एक सीधे कोहनी के माध्यम से अचानक भारी भार से होता है। कई लोग चोट लगने के समय एक झटका महसूस करने या सुनने का वर्णन करते हैं।

दर्द आमतौर पर तत्काल और मजबूत होता है। आपकी कोहनी जल्दी सूज सकती है, और अक्सर अगले एक या दो दिन में चोट लगती है। यदि टूटे हुए टुकड़े स्थानांतरित हो गए हैं तो संयुक्त आकार से बाहर दिख सकता है। आप शायद हाथ को हिलाना नहीं चाहेंगे, और दरवाज़े के हैंडल को मोड़ना, केतली उठाना, या कपड़े पहनना जैसे साधारण कार्य कठिन हो जाते हैं। कोहनी अस्थिर महसूस होती है, और इसका उपयोग करने की कोशिश करने से दर्द बढ़ जाता है।

पहले दिनों और हफ्तों में, दर्द अक्सर आराम और रात में होता है, और यह कोहनी को स्थानांतरित करने के किसी भी प्रयास के साथ तेज हो जाता है। जैसे-जैसे उपचार शुरू होता है, यह धीरे-धीरे कम हो जाता है, हालांकि कोहनी कुछ समय के लिए कठोर और कोमल रह सकती है। कोहनी एक जटिल जोड़ है, और यहां टूटने को ठीक करना मुश्किल हो सकता है, खासकर जब हड्डी पतली हो या कई टुकड़ों में टूट जाए। कुछ लोगों, विशेष रूप से 65 वर्ष से अधिक आयु के लोगों को ठीक होने के दौरान समस्याएं होती हैं, इसलिए आपकी टीम इस पर कड़ी नजर रखेगी कि हाथ कैसे आगे बढ़ रहा है।

आपका सर्जन आपके साथ आपके फ्रैक्चर और आपके स्वास्थ्य के अनुकूल उपचार के बारे में बात करेगा। सामान्य तौर पर टूटे हुए टुकड़ों को ठीक करने और पकड़ने के लिए सर्जरी की जाती है, जिसे ओपन रिडक्शन और इंटरनल फिक्सेशन कहा जाता है, जिसका अर्थ है कि टुकड़ों को वापस अपनी जगह पर रखना और उन्हें प्लेटों और शिकंजे के साथ ठीक करना। कुछ बुजुर्गों के लिए, विशेष रूप से जहां टूटने का पुनर्निर्माण नहीं किया जा सकता है, इसके बजाय एक पूर्ण कोहनी संयुक्त प्रतिस्थापन पर विचार किया जा सकता है। दूसरों के लिए, विशेष रूप से उन लोगों के लिए जो चिकित्सकीय रूप से अस्वस्थ हैं या हाथ पर कम मांग करते हैं, सर्जरी के बिना उपचार भी अच्छी तरह से काम कर सकता है।

वास्तव में क्या हो रहा है

आपके हाथ की हड्डी का निचला छोर, ह्यूमरस, कोहनी के ठीक ऊपर हड्डी के दो सहायक स्तंभों में फैलता है। उनके बीच दो चिकनी, गोल सतहें होती हैं जो कोहनी के जोड़ का चलती भाग बनती हैं। एक आपकी कोहनी को झुकने और सीधा करने देता है। दूसरा आपके हाथ को घुमाने देता है ताकि आप अपनी हथेली को ऊपर और नीचे घुमा सकें।

यहां टूटना एक लकड़ी की शाखा के कांटेदार छोर को तोड़ने के समान है जहां यह ट्रंक से जुड़ता है। जोड़ों की सतहों को हड्डी की एक चिकनी, फिसलन परत से ढंका जाता है, और हड्डी के टुकड़े मजबूत पट्टियों द्वारा एक साथ रखे जाते हैं जिन्हें लिगामेंट्स कहा जाता है। जब हड्डी टूट जाती है, तो ये सतहें अलग हो सकती हैं और स्थानांतरित हो सकती हैं, इसलिए जोड़ अब आसानी से नहीं फिसलता है। यही कारण है कि हाथ अस्थिर महसूस करता है और भार नहीं उठाएगा।

कोहनी में संकीर्ण नाले और रिक्त स्थान भी होते हैं जिनसे चलती अंग गुजरती हैं। यदि कोई टूटा हुआ टुकड़ा इन स्थानों में से किसी एक में स्थानांतरित हो जाता है, या यदि चंगा होने वाली हड्डी या निशान ऊतक उन्हें भर देता है, तो कोहनी गति खो सकती है। कभी-कभी चोट लगी कोहनी के आसपास अतिरिक्त हड्डी बनती है क्योंकि यह ठीक हो जाती है, और यह झुकने और सीधा करने को और सीमित कर सकती है।

हड्डी एक साथ बुनकर ठीक हो जाती है, और नए हड्डी सप्ताहों या महीनों में टूटने के पार बनती है। यह अच्छी तरह से काम करने के लिए, टुकड़ों को एक साथ रखा जाना चाहिए और अभी भी रखा जाना चाहिए। यदि टुकड़े अलग-अलग हो गए हैं, या संयुक्त सतह कई टुकड़ों में टूट गई है, तो उनके अपने आप पंक्तिबद्ध होने की संभावना नहीं है। सर्जरी में टुकड़ों को वापस जगह पर रखा जाता है और उन्हें प्लेटों और शिकंजे के साथ पकड़ा जाता है जबकि वे बुनाई करते हैं। जब संयुक्त सतह पुनर्निर्माण के लिए बहुत छोटे टुकड़ों में टूट जाती है, तो कोहनी के संयुक्त को बदलना बेहतर विकल्प हो सकता है।

आपका सर्जन हाथ की जांच करेगा और यह देखने के लिए स्कैन करेगा कि कितने टुकड़े हैं, क्या वे स्थानांतरित हो गए हैं, और क्या संयुक्त सतह प्रभावित है। यह चित्र तय करता है कि आपके लिए कौन सा उपचार समझ में आता है।

हम इसके बारे में क्या कर सकते हैं

मटर प्राइवेट हॉस्पिटल रॉकहैम्पटन में ऊपरी अंगों के सर्जन डॉ. किरण हिरपारा, आपके विशिष्ट घाव के अनुसार उपचार करते हैं। मरीजों को आम तौर पर उनके जीपी द्वारा हमारे क्लिनिक में भेजा जाता है; यदि एक फिजियोथेरेपिस्ट ने सुझाव दिया है कि आप हमें देखें, तो आपको मेडिकेयर छूट के लिए पात्र होने के लिए अपने जीपी से एक रेफरल की आवश्यकता होगी। क्लिनिक में हम आपके हाथ की जांच करते हैं, एक्स-रे की समीक्षा करते हैं और जहां टूटना जटिल है, पैटर्न को स्पष्ट रूप से देखने के लिए सीटी स्कैन की व्यवस्था करते हैं। फिर हम आप के साथ विकल्पों के माध्यम से बात करते हैं.

कुछ फ्रैक्चर के लिए, बिना सर्जरी के उपचार अच्छी तरह से काम करता है। यह सूट उन जगहों पर टूटता है जहां टुकड़े मुश्किल से चले गए हैं और कोहनी अभी भी स्थिर है, और यह बुजुर्ग लोगों के लिए उपयुक्त हो सकता है जिनके स्वास्थ्य या हड्डी की स्थिति एक ऑपरेशन को खराब फिट बनाती है। इसमें हड्डी के बुनाई के दौरान हाथ को स्थिर रखने के लिए एक स्लिंग, स्प्लिंट या कास्ट शामिल होता है, साथ ही यह सुनिश्चित करने के लिए एक्स-रे की जांच की जाती है कि कुछ भी स्थानांतरित नहीं हुआ है। जब उपचार की अनुमति हो जाती है तब फिजियोथेरेपी के साथ चरणबद्ध तरीके से आंदोलन को वापस लाया जाता है। 65 वर्ष से अधिक उम्र के लोगों के लिए, यह मार्ग गंभीर कठोरता या ढीली, अस्थिर कोहनी के बिना निरंतर स्वतंत्रता की अनुमति दे सकता है।

शुरू से ही सर्जरी की सिफारिश की जाती है जब टूटना जोड़ में चला जाता है, टुकड़े अलग हो गए हैं, या कोहनी अपने आप स्थिर नहीं रहेगी। यह सामान्य विकल्प भी है जब आपको फिर से वास्तविक भार उठाने के लिए हाथ की आवश्यकता होती है। उद्देश्य टुकड़ों को उनकी सामान्य स्थिति में वापस रखना और उन्हें प्लेटों और शिकंजा के साथ पकड़ना है ताकि हड्डी सही आकार में बुन सके और कोहनी जल्दी से आगे बढ़ सके। जब संयुक्त सतह पुनर्निर्माण के लिए बहुत छोटे टुकड़ों में टूट जाती है, तो कोहनी के संयुक्त के हिस्से या सभी को बदलना बेहतर विकल्प हो सकता है, विशेष रूप से पतली हड्डी वाले बुजुर्ग लोगों के लिए। मरम्मत और प्रतिस्थापन के बीच का चुनाव एक वास्तविक साझा निर्णय है, और हम बात करेंगे कि प्रत्येक पथ का आपके हाथ और आपके जीवन के लिए क्या अर्थ है।

आप जो भी रास्ता अपनाते हैं, पहले सप्ताह एक ही प्राथमिकताएं साझा करते हैं। दर्द को नियंत्रित किया जाता है ताकि आप आराम कर सकें और सो सकें। जब तक हड्डी ठीक हो जाती है, तब तक हाथ सुरक्षित रहता है, हम आपको जो योजना देते हैं उसके अनुसार जो यह सुरक्षित रूप से कर सकता है। फिजियोथेरेपी सही चरण में शुरू होती है, सर्जरी के बाद जल्दी और एक बार उपचार इसके बिना अनुमति देता है, झुकने, सीधा करने और अग्रभाग रोटेशन का पुनर्निर्माण करने के लिए। हम आपको रास्ते में देखेंगे कि हाथ कैसे आगे बढ़ रहा है।

क्या उम्मीद करें

उपचार में हफ्तों से लेकर महीनों तक का समय लगता है। टूटने के पार नई हड्डी बनती है और धीरे-धीरे टुकड़ों को एक साथ बुनती है, और कोहनी आसानी से कठोर हो जाती है जबकि यह होता है, इसलिए उपचार के बाद फिजियोथेरेपी के साथ चरणों में आंदोलन को फिर से बनाया जाता है। अधिकांश लोगों को लगता है कि पहले कुछ हफ्तों में तेज शुरुआती दर्द कम हो जाता है, हालांकि कोहनी कुछ समय के लिए कोमल और तंग रह सकती है।

यदि आपके फ्रैक्चर का उपचार बिना सर्जरी के किया जाता है, तो जब तक हड्डी बुनती है तब तक हाथ को स्थिर रखा जाता है। 65 वर्ष से अधिक उम्र के लोगों के लिए, यह मार्ग निरंतर स्वतंत्रता की अनुमति दे सकता है, बिना किसी गंभीर कठोरता या ढीली, अस्थिर कोहनी के। यदि आपको सर्जरी करनी है, तो प्लेटें और स्क्रू टुकड़ों को ठीक होने के दौरान जगह पर रखते हैं, और आंदोलन जल्दी शुरू होता है। लंबे समय में, कुछ लोगों को जो अपनी कोहनी की मरम्मत कर चुके हैं, संयुक्त में हल्के से मध्यम पहनने और आंसू गठिया विकसित करते हैं, जो कई वर्षों बाद एक्स-रे पर दिखाई दे सकते हैं।

प्रत्येक व्यक्ति के लिए रिकवरी अलग दिखती है। रोजमर्रा के काम जैसे कपड़े पहनना, खाना बनाना और उठाना आमतौर पर चरणों में वापस आ जाता है क्योंकि दर्द कम हो जाता है और आंदोलन वापस आ जाता है। जब आप काम या खेल में वापस जा सकते हैं, यह आपकी नौकरी, आपके फ्रैक्चर और आपके उपचार की प्रगति पर निर्भर करता है, और हम आपके समीक्षा नियुक्तियों पर आपके साथ इस बारे में बात करेंगे।

यह कहना ईमानदारी है कि समस्याएं हो सकती हैं। इस फ्रैक्चर के साथ 65 वर्ष से अधिक आयु के लगभग तीन लोगों में से एक को वसूली के दौरान जटिलताएं होती हैं। एक संभावना अलनेर तंत्रिका में जलन या परिवर्तन की भावना है, यह तंत्रिका कोहनी के पीछे से गुजरती है और छोटी और अंगूठी की उंगलियों में फिंगरिंग का कारण बन सकती है; यह सर्जरी के तुरंत बाद हो सकती है या बाद में दिखाई दे सकती है। कभी-कभी चंगा होने वाली कोहनी के चारों ओर अतिरिक्त हड्डी बनती है, जो इस बात को सीमित कर सकती है कि यह कितनी दूर झुक सकती है और सीधी हो सकती है। मरम्मत किए गए टुकड़े भी स्थानांतरित हो सकते हैं या पकड़ने में विफल हो सकते हैं, विशेष रूप से यदि हड्डी पतली है, और धूम्रपान इसे अधिक संभावना बनाता है। जब जोड़ को ठीक करने के बजाय बदल दिया जाता है, तो नया जोड़ आमतौर पर लंबे समय तक अच्छी तरह से काम करता है, हालांकि कुछ लोगों को आगे की सर्जरी की आवश्यकता होती है। आपकी टीम आपके चेक-अप के दौरान इन समस्याओं पर नजर रखेगी और आपके सामने आने वाली किसी भी चीज़ के बारे में आपसे बात करेगी।

किसी से कब मिलना है

यदि आपका हाथ आकार से बाहर दिखता है, अगर कोहनी पर खुला घाव है, यदि आप अपनी उंगलियों में सुन्नता या झुनझुनी महसूस करते हैं, या यदि आप हाथ का उपयोग नहीं कर सकते हैं, तो तत्काल चिकित्सा सहायता लें। इन संकेतों का तुरंत आकलन करने की आवश्यकता है।

यदि दर्द कम नहीं हो रहा है, या यदि सूजन, आंदोलन या दिन-प्रतिदिन की कार्यक्षमता में सप्ताह-दर-सप्ताह सुधार नहीं हो रहा है क्योंकि हड्डी ठीक हो जाती है, तो अपने जीपी को देखें या विशेषज्ञ की समीक्षा के लिए कहें। वसूली शायद ही कभी एक सीधी रेखा में चलती है, लेकिन प्रत्येक सप्ताह कुछ बदलाव लाना चाहिए। यदि कुछ भी स्थानांतरित नहीं हो रहा है, तो यह प्रतीक्षा करने के बजाय हाथ की जांच कराने के लायक है।

अधिक गहराई से

यह अनुभाग आपके स्वयं के उपचार निर्णयों के लिए आवश्यक से अधिक है। एक डिस्टल ह्यूमरस फ्रैक्चर अतिरिक्त पढ़ने के लायक है क्योंकि यह एक अजीब जंक्शन पर बैठता हैः यह ऊपरी अंग में अधिक जटिलता-प्रवण फ्रैक्चर में से एक है, मानक सर्जिकल एक्सपोजर में जानबूझकर एक दूसरी हड्डी तोड़ना शामिल है, और पुराने रोगियों में ऑपरेशन के लिए मामला कम से कम तय है जितना आप मान सकते हैं।

जटिलता दर प्रतिष्ठा से अधिक है

खुला कमी और आंतरिक निर्धारण द्वारा इलाज किए गए इंट्रा-आर्टिकुलर डिस्टल ह्यूमरल फ्रैक्चर का सबसे बड़ा पूल विश्लेषण एकत्र किया गया 2,362 और इसका निष्कर्ष स्पष्ट था: जटिलताओं और reoperations हैं पहले की अपेक्षा अधिक बार [1].

यह एक उपयोगी सुधार है। ये फ्रैक्चर आमतौर पर कठिन लेकिन सुलझाने योग्य के रूप में प्रस्तुत किए जाते हैं, और एक्स-रे पर तकनीकी परिणाम अक्सर उत्कृष्ट होता है। एक अच्छे रेडियोग्राफ और एक अच्छी कोहनी के बीच का अंतर यहाँ कहीं और से भी अधिक है, और साहित्य इसे कम रिपोर्ट कर रहा था।

जोखिम की अपनी लागत है

संयुक्त सतह को ठीक से देखने के लिए, सामान्य दृष्टिकोण इसे काटकर ओलेक्रानन को अलग करता है, एक ओलेक्रानन ऑस्टियोटोमी, और अंत में इसकी मरम्मत करता है। यह पहुंच की एक वास्तविक समस्या का एक सुरुचिपूर्ण समाधान है, और यह मुफ़्त नहीं है।

पूलिंग 1,700 ऑस्टियोटॉमी 447 जटिलताओं की सूचना दी गई। घाव में संक्रमण हुआ 4.2% और समस्याएं ऑस्टियोटॉमी में एकजुट होने के साथ 3.7% [2]. तो इस एक्सपोजर का उपयोग करने का निर्णय एक छोटी लेकिन निश्चित संभावना को स्वीकार करने का निर्णय है एक दूसरी समस्या की साइट पर जो सर्जरी से पहले बरकरार थी। लेखकों की रूपरेखा सही है: जोखिम को ऑस्टियोटॉमी करने के निर्णय का हिस्सा होना चाहिए, इसके लिए एक फुटनोट नहीं।

जो भी इसके लायक है, बाद के एक्सपोजर के बीच का चुनाव एक का उपयोग करने के निर्णय से कम मायने रखता है। का एक मेटा-विश्लेषण 1,258 पूर्ण इंट्रा-आर्टिकुलर (एओ / ओटीए प्रकार सी) फ्रैक्चर वाले रोगियों ने त्रिशूल प्रतिबिंबित, त्रिशूल-विभाजन और त्रिशूल-बचत दृष्टिकोणों के खिलाफ ओलेक्रानन ऑस्टियोटोमी की तुलना की और तुलनात्मक समग्र परिणाम पाए, जिसमें अधिकांश उपायों में कोई सांख्यिकीय रूप से महत्वपूर्ण अंतर नहीं दिखाया गया है [3].

वृद्ध रोगियों में प्रश्न वास्तव में खुला है

एक मजबूत वृत्ति है कि एक विस्थापित इंट्रा-आर्टिकुलर फ्रैक्चर को ठीक किया जाना चाहिए। वृद्ध वयस्कों में यह वृत्ति तुलनात्मक आंकड़ों द्वारा अच्छी तरह से समर्थित नहीं है।

की एक व्यवस्थित समीक्षा 1,838 पुराने रोगियों ने सर्जिकल और गैर-सर्जिकल प्रबंधन की तुलना की और पाया कि प्रत्येक अध्ययन किए गए उपचार विधियों में से एक ने कोहनी कार्य के उचित स्तर का उत्पादन किया [4]. लेखक इस बारे में सावधान हैं कि यह संचालन बंद करने की सिफारिश क्यों नहीं हैः शामिल अध्ययन काफी हद तक गैर-तुलनात्मक थे और पूर्वाग्रह का काफी जोखिम था। यह समकक्षता के साक्ष्य के बजाय श्रेष्ठता के साक्ष्य की अनुपस्थिति है।

फिर भी, व्यावहारिक निहितार्थ बरकरार है। कम कार्यात्मक मांग के साथ एक नाजुक रोगी के लिए, शारीरिक पुनर्निर्माण के बजाय आराम और प्रारंभिक आंदोलन के आसपास बनाई गई एक योजना एक रक्षात्मक विकल्प है जो परिणामों द्वारा समर्थित है जो स्पष्ट रूप से बदतर नहीं हैं, और यह ऊपर वर्णित हर जटिलता से बचता है।

आपके लिए इसका क्या मतलब है

इसके बाद तीन बातें होती हैं। वसूली के बारे में होने की उम्मीद प्रस्ताव, नहीं हड्डी हीलिंग, हड्डी आसान हिस्सा है. विशेष रूप से पूछें कि क्या जोखिम की योजना बनाई गई है और यह आपको क्या करने के लिए प्रतिबद्ध करता है। और अगर आप बड़े हैं, या हाथ पर सीमित मांगें हैं, सीधे पूछें कि क्या गैर-ऑपरेटिव उपचार आपके मामले में उचित है, क्योंकि ईमानदार जवाब हाँ हो सकता है।

संदर्भ

[1] येटर टीआर, वेदरबी पीजे, सोमरसन जेएस। आर्टिकुलर डिस्टल ह्यूमेरल फ्रैक्चर फिक्सेशन की जटिलताएंः एक व्यवस्थित समीक्षा और मेटा-विश्लेषण। जे कंधा कोहनी सर्जरी 2021;30(8): 1957-67। https://doi.org/10.1016/j.jse.2021.02.017

[2] स्पिरिंग्स केई, स्कूलमेस्टर्स बीजे, डोरनबर्ग जेएन, आइजेन्डाल डी, वैन डेन बेकरम एमपी। डिस्टल ह्यूमरस फ्रैक्चर के उपचार में ओलेक्रानन ऑस्टियोटोमी की जटिलताएं क्लीन कंधा कोहनी 2022;25(2): 163-9. https://doi.org/10.5397/cise.2021.00591

[3] याओ एच, चेन डब्ल्यू, लिन जेड, काओ एच. इंट्रा-आर्टिकुलर डिस्टल ह्यूमरस फ्रैक्चर के लिए विभिन्न पिछली सर्जिकल दृष्टिकोणों की तुलनात्मक प्रभावकारिता और सुरक्षा। जे ऑर्थोपेडिक सर्ज रिज़. 2026;21 ((1) https://doi.org/10.1186/s13018-026-06739-x

[4] स्टोडार्ट एमटी, पनागोपोलोस जीएन, क्रेग आरएस, फालवर्थ एम, बट डी, रुडगे डब्ल्यू, एट अल. वृद्ध वयस्कों में डिस्टल ह्यूमरस फ्रैक्चर के उपचार की एक व्यवस्थित समीक्षाः सर्जिकल और गैर-सर्जिकल विकल्पों की तुलना। कंधा कोहनी. 2022;16(2):175-85. https://doi.org/10.1177/17585732221099845


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

  • Reported outcomes for acute distal humerus fractures remain inconsistent across the orthopedic literature, making it difficult for surgeons to retrospectively compare surgical techniques and clinical outcomes across studies [3].
  • Internal fixation is generally accepted as the standard of care for the treatment of intra-articular distal humerus fractures [4].
  • Rigid anatomic fixation combined with early motion is associated with favorable results for intra-articular distal humerus fractures [4].
  • Decision regarding the treatment for intra-articular fractures of the distal humerus should be based on a combination of the best available evidence and preference of the surgeon [10].
  • Older patients who underwent ORIF of the distal humerus using a parallel construct demonstrated good functional outcomes [1].
  • Older patients who underwent ORIF of the distal humerus using a parallel construct demonstrated similar complications to those in previously reported studies [1].
  • For comminuted distal humerus fractures in young patients, ORIF appears to be the preferred surgical option [14].
  • For comminuted distal humerus fractures in young patients, ORIF offers superior functional outcomes compared to hemiarthroplasty [14].
  • For comminuted distal humerus fractures in young patients, ORIF offers a lower incidence of complications and heterotopic ossification compared to hemiarthroplasty [14].
  • Distal humerus hemiarthroplasty is a viable option in the treatment of unreconstructible distal humerus fractures [2].
  • Distal humerus hemiarthroplasty is expected to yield good to excellent outcomes for unreconstructible distal humerus fractures [2].
  • Distal humeral hemiarthroplasty is a suitable option for unreconstructable distal humeral fractures [11].
  • Distal humeral hemiarthroplasty offers good functional outcomes for unreconstructable distal humeral fractures [11].
  • Distal humeral hemiarthroplasty offers acceptable complication rates for unreconstructable distal humeral fractures [11].
  • Elbow hemiarthroplasty is a viable option for complex distal humeral fractures in select patients [16].
  • Elbow hemiarthroplasty offers functional outcomes comparable to total elbow arthroplasty for complex distal humeral fractures [16].
  • Elbow hemiarthroplasty potentially avoids complications related to the ulnar component compared to total elbow arthroplasty [16].
  • Total elbow arthroplasty provides a successful treatment alternative for selected distal humerus fractures [32].
  • Total elbow arthroplasty is particularly indicated for distal humerus fractures in elderly patients with low anticipated physical demands, severe osteopenia, or comminution [32].
  • Open reduction and internal fixation with bone grafting is the treatment of choice for nonunion of distal humerus fractures if no excessive damage of the articular surface is present [5].
  • A 2021 systematic review represents the largest report of complications and reoperations of intra-articular distal humeral fractures after ORIF in the current literature [8].

Anatomy & Pathophysiology

Bony Anatomy

  • The elbow is a trocho-ginglymoid joint consisting of medial and lateral articulations that provide bony stability [37].
  • The medial side features the trochlea articulating with the ulna within the greater sigmoid notch to form the ulnohumeral, hinged, or trochoid portion of the joint [37].
  • The ulnohumeral articulation exhibits highly congruent anatomy through almost 180° of articular contact, excluding the bare area of the greater sigmoid notch which lacks cartilage [37].
  • The coronoid process possesses medial and lateral facets that buttress the trochlea anteriorly [37].
  • The sublime tubercle is located just distal and medial to the coronoid and serves as the attachment site for the anterior bundle of the medial ulnar collateral ligament [37].
  • The medial epicondyle is larger and more posteriorly oriented than the lateral epicondyle and serves as the attachment site for the origins of the flexor pronator mass [37].
  • Laterally, the capitellum and radial head form the radiocapitellar joint [37].
  • The radial head is a concave elliptical structure covered with articular cartilage along the radiocapitellar joint and approximately 270° of the articular margin [37].
  • The radial head articulates with both the capitellum and the lesser sigmoid notch of the ulna [37].
  • The radius is held in close approximation to the ulna at the proximal radioulnar joint by the annular ligament [37].
  • The distal humeral articulation is angled 30° from the longitudinal axis of the humerus [37].
  • The anterior humeral line should pass through the center of the axis of rotation to avoid loss of flexion or extension during reconstructive efforts [37].
  • The axis of rotation is angulated 5° to 7° in the coronal plane relative to the epicondylar axis, with the medial side positioned more distal than the lateral side [37].
  • This coronal angulation accounts for the change from a valgus carrying angle to a more varus position as the elbow flexes [37].
  • The ulna medially bends approximately 8° at 8 cm from the tip of the olecranon [37].
  • The articulation to the tip of the coronoid is approximately 30° from the long axis of the ulna in the sagittal plane [37].
  • The central area of the distal humerus comprises a coronoid fossa and an olecranon fossa, which is thin to allow extensive range of motion but acts as a weak point for complex fractures [9].
  • The medial column holds the medial epicondyle and medial portion of the humeral trochlea and appears continuous with the humeral shaft axis when viewed from the side [9].
  • The lateral column is flexed relative to the humeral shaft, placing the capitellum ahead of the trochlea [9].
  • The epiphyseal section of the distal humerus containing the trochlear and capitellum articular surfaces is in 4–8° valgus relative to the shaft [9].
  • The epiphyseal section of the distal humerus is externally rotated by 3–8° relative to the metaphysis [9].
  • The epiphyseal section of the distal humerus is flexed 40° relative to the shaft [9].
  • The radial head should line up with the capitellum at all arm positions on all radiographic views [38, 39].
  • Tensile forces are present at the medial elbow, while compressive forces are present at the lateral elbow [38, 39].

Ligaments and Soft Tissue

  • Elbow stability is conferred by bony articular anatomy and ligamentous structures on the medial and lateral sides [25].
  • The primary stabilizers of the elbow are the ulnohumeral articulation, the medial ulnar collateral ligament (MUCL), and the lateral ulnar collateral ligament (LUCL) complex [25].
  • The secondary stabilizers of the elbow are the radiocapitellar articulation, the common flexor tendon, the common extensor tendon, and the joint capsule [25].
  • The medial ulnar collateral ligament is the primary valgus stabilizer of the elbow [38, 39].
  • The anterior bundle of the medial ulnar collateral ligament is the most important component for stability [38, 39].
  • The posterior bundle of the medial ulnar collateral ligament undergoes the greatest change in length and becomes taut at flexion beyond 120 degrees [38, 39].
  • The lateral ulnar collateral ligament acts as the posterolateral stabilizer of the elbow [38, 39].
  • Osborne’s ligament stabilizes the ulnar nerve in the cubital tunnel [38, 39].
  • The ligament of Struthers is a variant anatomy arising from the supracondylar process to attach to the medial epicondyle and is a potential site of median nerve compression [38, 39].
  • The joint capsule allows maximum distension at approximately 70 to 80 degrees of flexion [38, 39].
  • The anterior capsule attaches at a point approximately 6 mm distal to the tip of the coronoid [38, 39].
  • The coronoid tip is an intraarticular structure that is visualized during elbow arthroscopy [38, 39].

Muscles

  • The brachialis is the strongest elbow flexor and attaches to the coronoid 11 mm distal to the tip [38, 39].
  • The biceps brachii inserts at the ulnar margin of the radial tuberosity and acts as a powerful supinator of the forearm [38, 39].
  • The triceps is the primary elbow extensor and inserts on the olecranon process [38, 39].
  • The mobile wad consists of the brachioradialis, extensor carpi radialis longus, and extensor carpi radialis brevis [38, 39].
  • The flexor-pronator mass consists of the pronator teres, flexor carpi radialis, palmaris longus, flexor carpi ulnaris, and flexor digitorum superficialis [38, 39].

Pathophysiology and Biomechanics

  • The normal elbow has a range of motion from 0° to 140° from extension to flexion [25].
  • The normal elbow has a range of motion of 75° in pronation and 85° in supination [25].
  • A functional arc for the elbow is 100° for flexion and extension and forearm rotation [25].
  • Injury to primary or secondary stabilizers causes elbow instability [25].
  • Malunion is a common complication after distal humerus fractures influenced by biology, reduction, fixation methods, and mechanical failure [6].
  • Normal function of the distal humerus is difficult to restore if the joint is deformed by malunion or stiffened by heterotopic ossifications or capsular and ligament contractures [9].
  • Coronal shear fractures of the distal humerus can involve the capitellum, the trochlea, or both [56].
  • Capitellum fractures account for 1% of all elbow fractures and 6% of distal humeral fractures [56].
  • A potential mechanism for coronal shear fracture involves a direct axial load transmitted to the capitellum by the radial head following a fall onto an outstretched hand [56].
  • A second mechanism for coronal shear fracture involves lateral collateral ligament complex failure, posterolateral subluxation, and shearing of the capitellum and trochlea by the radial head and coronoid during forearm reduction [56].
  • Posterior shear fractures of the distal humerus mostly involve the posterior aspect of the capitellum and are often associated with elbow dislocation [50].
  • The inherent complexity of the distal humerus makes a single treatment method unrealistic [24].

Classification

  • The AO/OTA classification scheme for distal humerus fractures categorizes type A fractures as extraarticular metaphyseal, transcondylar, and apophyseal [19].
  • The AO/OTA classification scheme for distal humerus fractures categorizes type B fractures as partial articular [19].
  • The AO/OTA classification scheme for distal humerus fractures categorizes type C fractures as complete articular [19].
  • Distal humerus fractures are classified using the AO/OTA classification system [20].
  • The Dubberley classification is utilized for describing coronal shear fractures of the distal humerus and selecting the surgical approach [52].
  • Outcomes for capitellum fractures are unclear due to the use of multiple classification systems [55].

Clinical Presentation

  • Fractures of the distal humerus account for approximately 0.5% of all fractures in adults [20].
  • The incidence of distal humerus fractures is approximately 5.8/100,000 people reported over 1 year in a high volume trauma centre [20].
  • The distribution of distal humerus fractures by age is unimodal with a low risk in young adults that increases from the age of 50 years and rises markedly in those over 80 years [20].
  • There is a higher incidence of distal humerus fractures in the female population [20].
  • Distal humerus fractures are osteoporotic fractures [20].
  • The number of distal humerus fracture cases is thought to be increasing in developed nations due to the ageing population [20].
  • The age-adjusted incidence of distal humerus fractures may be consistent or falling slowly [20].
  • Approximately 3000 distal humerus fractures in adults and children are treated surgically every year in France [9].
  • An orthopaedic surgeon in France sees an average of five distal humerus fractures per year [9].
  • In older adults with isolated distal humerus fractures, mortality at 1 and 2 years is substantial [17].
  • In older adults with isolated distal humerus fractures, mortality is strongly predicted by comorbidity burden and preinjury ambulation [17].

Investigations

Imaging Modalities

  • Plain radiographs remain the hallmark and best screening test for elbow evaluation [25].
  • Standard radiographic views include AP, lateral, and oblique projections [43].
  • Computed tomography (CT) is helpful for assessing malunion architecture and the location and pattern of osteophytes or loose bodies [43].
  • Three-dimensional CT is used to check for heterotopic ossification [43].
  • CT is not necessary when elbow stiffness is entirely soft-tissue related [43].
  • CT is beneficial if any joint incongruity or abnormal bony anatomy is present [43].
  • Magnetic resonance imaging (MRI) can be used to evaluate ligaments and tendons but is rarely indicated for elbow stiffness [43].
  • CT Hounsfield Unit (HU) measurements in the coronal plane may identify patients with poorer bone quality at higher risk for postoperative mechanical complications following distal humerus fracture fixation [23].

Physical Examination

  • The physical examination of the elbow is directed by history and the location of the patient's pain in the anterior, posterior, medial, or lateral aspect [25].
  • Stability of the elbow is conferred by bony articular anatomy and ligamentous structures on the medial and lateral sides, which should be the focus of physical examination [25].
  • The normal elbow has a range of motion of 75° and 85° in pronation and supination, respectively [25].
  • Elbow stability is determined by primary stabilizers (ulnohumeral articulation, MUCL, LUCL complex) and secondary stabilizers (radiocapitellar articulation, common flexor tendon, common extensor tendon, joint capsule) [25].
  • Active and passive flexion, extension, supination, and pronation should be evaluated using a goniometer for accurate measurement [43].
  • If the elbow has less than 90° to 100° of flexion, the posterior bundle of the medial collateral ligament is contracted and must be released to restore flexion [43].
  • Pain during the mid-arc of range of motion is more common with intrinsic disease and may not improve with contracture release alone [43].
  • The ulnar nerve is of utmost importance in the physical examination due to its anatomic proximity to the elbow [43].
  • Electromyography and nerve conduction velocity studies should be performed if there is any question about neurologic dysfunction [43].
  • An assessment for ulnar nerve subluxation should be performed, as subluxation is a relative contraindication for an arthroscopic procedure [43].

Diagnostic Considerations

  • Reported outcomes for acute distal humerus fractures remain inconsistent across the orthopedic literature, making it difficult to retrospectively compare surgical techniques and clinical outcomes [3].
  • The treatment process for articular distal humerus fractures consists of determining the injury mechanism, defining diagnostic modalities, and developing a treatment algorithm [9].

Treatment

General Principles and Decision Making

  • The management of distal humeral fractures remains problematic, particularly in elderly patients with osteoporosis and comminution where ORIF may be impossible [21].
  • Non-operative treatment is generally reserved for completely undisplaced stable fractures or for patients in whom the risks of surgery outweigh the benefits [20].

Open Reduction and Internal Fixation (ORIF)

  • Older patients who underwent ORIF of the distal humerus using a parallel construct demonstrated good functional outcomes and similar complications to those in previously reported studies [1].
  • Both orthogonal and parallel plating techniques can be used to treat distal humerus fractures with excellent outcomes [15].
  • Dual plating provides the most rigid and reliable construct for reduction of the articular surface to allow for early range of motion and physical rehabilitation [24].
  • Current evidence indicates that OO, TRA, TS, and TT posterior approaches provide comparable overall clinical outcomes in the management of AO/OTA type C complete intra-articular distal humerus fractures [22].

Arthroplasty

  • Distal humerus hemiarthroplasty is a viable option in the treatment of unreconstructible distal humerus fractures, with good to excellent outcomes expected [2].
  • Distal humeral hemiarthroplasty is a suitable option for unreconstructable distal humeral fractures and offers good functional outcomes with acceptable complication rates [11].
  • DHH yields satisfactory functional outcomes and range of motion in complex distal humerus fractures not amenable to fixation, particularly in elderly patients [13].
  • Total elbow arthroplasty provides a successful treatment alternative for selected distal humerus fractures, particularly in elderly patients with low anticipated physical demands, severe osteopenia, or comminution [32].
  • Total elbow arthroplasty can be considered for the treatment of acute distal humeral fractures when osteosynthesis is not feasible, particularly in physiologically older patients with lower demands on the joint [33].
  • The indications for semiconstrained total joint replacement for acute fractures of the distal humerus are limited to a restricted group of patients older than 60-65 years with an extensively comminuted fracture that is not amenable to adequate and stable osteosynthesis [27].
  • Salvage TEA represents a viable option for the management of post-traumatic sequelae following the treatment of a distal humeral fracture [12].
  • Patients who underwent salvage TEA had a significantly increased rate of complications and significantly inferior functional outcomes compared with those who underwent TEA acutely [12].

Complications

Mechanical and Bony Complications

  • A thorough smoking history and CT HU measurements in the coronal plane may identify patients with poorer bone quality at higher risk for postoperative mechanical complications following distal humerus fracture fixation [23].
  • The high risk of complications in olecranon osteotomy must be considered in the decision to perform this procedure in the treatment of distal humerus fractures [59].
  • Elbow hemiarthroplasty potentially avoids complications related to the ulnar component [16].
  • Patients who underwent salvage total elbow arthroplasty had a significantly increased rate of complications compared with those who underwent total elbow arthroplasty acutely [12].
  • Distal humeral hemiarthroplasty offers acceptable complication rates [11].

Mortality

  • In older adults with isolated distal humerus fractures, mortality at 1 and 2 years is substantial and strongly predicted by comorbidity burden and preinjury ambulation [17].

Recovery

Functional Outcomes and Salvage Procedures

  • Older patients who underwent open reduction and internal fixation (ORIF) of the distal humerus using a parallel construct demonstrated good functional outcomes [1].
  • Good to excellent outcomes are expected for distal humerus hemiarthroplasty in the treatment of unreconstructible distal humerus fractures [2].
  • Distal humeral hemiarthroplasty offers good functional outcomes with acceptable complication rates for unreconstructable distal humeral fractures [11].
  • Distal humerus hemiarthroplasty yields satisfactory functional outcomes and range of motion in complex distal humerus fractures not amenable to fixation [13].
  • Distal humerus hemiarthroplasty yields satisfactory functional outcomes and range of motion in complex distal humerus fractures not amenable to fixation, particularly in elderly patients [13].
  • Elbow hemiarthroplasty offers functional outcomes comparable to total elbow arthroplasty for complex distal humeral fractures in select patients [16].
  • Salvage total elbow arthroplasty (TEA) represents a viable option for the management of post-traumatic sequelae following the treatment of a distal humeral fracture [12].
  • Patients who underwent salvage TEA had a significantly increased rate of complications compared with those who underwent TEA acutely [12].
  • Patients who underwent salvage TEA had significantly inferior functional outcomes compared with those who underwent TEA acutely [12].
  • In the older cohort, intra-articular fractures were consistently and temporally associated with a more than two-fold increased risk of TEA compared with extra-articular fractures at every time point studied [61].
  • Nearly 5.5% of patients with intra-articular fractures progressed to TEA by 10 years [61].

Complications and Mortality

  • Malunion is a common complication after distal humerus fractures [6].
  • Malunion after distal humerus fractures is influenced by biology, reduction, fixation methods, and mechanical failure [6].
  • In older adults with isolated distal humerus fractures, mortality at 1 and 2 years is strongly predicted by comorbidity burden and preinjury ambulation [17].
  • Transposition does not have a protective effect against the development of late ulnar neuropathy after distal humerus fracture repair surgery [62].

Measurement and Risk Factors

  • Reported outcomes for acute distal humerus fractures remain inconsistent across the orthopedic literature [3].
  • The inconsistency in reported outcomes for acute distal humerus fractures makes it difficult for surgeons to retrospectively compare surgical techniques and clinical outcomes across studies [3].

Key Evidence

  • [L4] Older patients who underwent ORIF of the distal humerus using a parallel construct demonstrated good functional outcomes and similar complications to those in previously reported studies. [1] (10.1016/j.jhsa.2022.01.030)
  • [L4] Distal humerus hemiarthroplasty is a viable option in the treatment of unreconstructible distal humerus fractures, with good to excellent outcomes expected. [2] (10.1016/j.jse.2022.02.015)
  • [L1] Reported outcomes for acute distal humerus fractures remain inconsistent across the orthopedic literature, making it difficult for surgeons to retrospectively compare surgical techniques and clinical outcomes across studies. [3] (10.1016/j.otsr.2018.08.017)
  • [L5] Internal fixation is generally accepted as the standard of care for the treatment of intra-articular distal humerus fractures, with rigid anatomic fixation combined with early motion associated with favorable results. [4] (10.1016/j.hcl.2007.09.001)
  • [L5] Open reduction and internal fixation with bone grafting is the treatment of choice for nonunion of distal humerus fractures if no excessive damage of the articular surface is present. [5] (10.1016/j.jisako.2024.07.002)
  • [L5] Malunion is a common complication after distal humerus fractures influenced by biology, reduction, fixation methods, and mechanical failure. [6] (10.1016/j.jisako.2024.05.009)
  • [L1] This systematic review is the largest report of complications and reoperations of intra-articular distal humeral fractures after ORIF in the current literature. [8] (10.1016/j.jse.2021.02.017)
  • [L4] [9] (10.1016/j.otsr.2013.11.002)
  • [L5] Decision regarding the treatment for intra-articular fractures of the distal humerus should be based on a combination of the best available evidence and preference of the surgeon. [10] (10.5397/cise.2019.22.2.113)
  • [L4] Distal humeral hemiarthroplasty is a suitable option for unreconstructable distal humeral fractures and offers good functional outcomes with acceptable complication rates. [11] (10.1177/17585732211023100)
  • [L1] Salvage TEA represents a viable option for the management of post-traumatic sequelae following the treatment of a distal humeral fracture, although patients who underwent salvage TEA had a significantly increased rate of complications and significantly inferior functional outcomes compared with those who underwent TEA acutely. [12] (10.1302/0301-620x.108b1.bjj-2025-0475.r1)
  • [L1] DHH yields satisfactory functional outcomes and range of motion in complex distal humerus fractures not amenable to fixation, particularly in elderly patients. [13] (10.1016/j.jseint.2026.101695)
  • [L4] For comminuted distal humerus fractures in young patients, ORIF appears to be the preferred surgical option, offering superior functional outcomes and a lower incidence of complications and heterotopic ossification. [14] (10.1016/j.xrrt.2025.07.014)
  • [L5] Distal humerus fractures are complex, and both orthogonal and parallel plating techniques can be used to treat these difficult fractures with excellent outcomes. [15] (10.1016/j.hcl.2010.05.008)
  • [L4] Elbow hemiarthroplasty is a viable option for complex distal humeral fractures in select patients, offering functional outcomes comparable to total elbow arthroplasty while potentially avoiding complications related to the ulnar component. [16] (10.1177/1758573216640210)
  • [L3] In older adults with isolated distal humerus fractures, mortality at 1 and 2 years is substantial and strongly predicted by comorbidity burden and preinjury ambulation. [17] (10.1016/j.jse.2026.02.013)
  • [L5] [19] (10.5435/00124635-201001000-00004)
  • [L1] [20] (10.1177/17585732251328594)
  • [L5] The management of distal humeral fractures remains problematic, particularly in elderly patients with osteoporosis and comminution where ORIF may be impossible. [21] (10.1016/j.jse.2010.11.012)
  • [L1] Current evidence indicates that OO, TRA, TS, and TT posterior approaches provide comparable overall clinical outcomes in the management of AO/OTA type C complete intra-articular distal humerus fractures, with most outcome measures showing no statistically significant differences. [22] (10.1186/s13018-026-06739-x)
  • [L3] A thorough smoking history and CT HU measurements in the coronal plane may identify patients with poorer bone quality at higher risk for postoperative mechanical complications following distal humerus fracture fixation. [23] (10.5435/jaaos-d-26-00191)
  • [L4] Although the inherent complexity of the distal humerus makes a single treatment method unrealistic, dual plating provides the most rigid and reliable construct for reduction of the articular surface to allow for early range of motion and physical rehabilitation. [24] (10.1016/j.jse.2025.12.020)
  • [L5] [27] (10.1097/01.blo.0000131485.47685.8c)
  • [L4] Total elbow arthroplasty provides a successful treatment alternative for selected distal humerus fractures, particularly in elderly patients with low anticipated physical demands, severe osteopenia, or comminution. [32] (10.1016/j.hcl.2015.06.008)
  • [L4] Total elbow arthroplasty can be considered for the treatment of acute distal humeral fractures when osteosynthesis is not feasible, particularly in physiologically older patients with lower demands on the joint. [33] (10.2106/jbjs.d.02871)
  • [L4] Posterior shear fractures of the distal humerus mostly involve the posterior of the capitellum and are often associated with elbow dislocation. [50] (10.1016/j.jse.2026.05.003)
  • [L4] The study confirms the utility of the Dubberley classification in describing the fracture and selecting the surgical approach. [52] (10.1016/j.jse.2025.05.033)
  • [L4] The article summarizes the existing body of evidence on capitellum fractures, noting that outcomes are unclear due to multiple classification systems and a literature consisting of small case series without comparative groups, and proposes areas for future study. [55] (10.1177/1558944719878817)
  • [L4] [56] (10.1016/j.hcl.2004.08.001)
  • [L2] The high risk of complications in olecranon osteotomy must be considered in the decision to perform this procedure in the treatment of distal humerus fractures. [59] (10.5397/cise.2021.00591)
  • [L4] In the older cohort, intra-articular fractures were consistently and temporally associated with a more than two-fold increased risk of TEA compared with extra-articular fractures at every time point studied, with nearly 5.5% of patients progressing to TEA by 10 years. [61] (10.1177/17585732261451863)
  • [L1] The authors conclude that transposition does not have a protective effect against the development of late ulnar neuropathy after distal humerus fracture repair surgery. [62] (10.1016/j.hcl.2017.09.010)

References

[1] The Outcomes of Intra-Articular Distal Humerus Open Reduction and Internal Fixation Using Parallel Precontoured Plates in the Elderly. The Journal of Hand Surgery. 2023. DOI: 10.1016/j.jhsa.2022.01.030

[2] Distal humerus hemiarthroplasty for trauma: a systematic review of the outcomes and complications. Journal of Shoulder and Elbow Surgery. 2022. DOI: 10.1016/j.jse.2022.02.015

[3] Outcomes of distal humerus fractures: What are we measuring?. Orthopaedics & Traumatology: Surgery & Research. 2018. DOI: 10.1016/j.otsr.2018.08.017

[4] Distal Humerus Fractures. Hand Clinics. 2007. DOI: 10.1016/j.hcl.2007.09.001

[5] Nonunion of distal humeral fractures: Current concepts. Journal of ISAKOS. 2024. DOI: 10.1016/j.jisako.2024.07.002

[6] Malunion of distal humeral fractures: Current concepts. Journal of ISAKOS. 2024. DOI: 10.1016/j.jisako.2024.05.009

[8] Complications of articular distal humeral fracture fixation: a systematic review and meta-analysis. Journal of Shoulder and Elbow Surgery. 2021. DOI: 10.1016/j.jse.2021.02.017

[9] Articular fractures of the distal humerus. Orthopaedics & Traumatology: Surgery & Research. 2014. DOI: 10.1016/j.otsr.2013.11.002

[10] Surgical Treatment Strategy for Distal Humerus Intra-articular Fractures. Clinics in Shoulder and Elbow. 2019. DOI: 10.5397/cise.2019.22.2.113

[11] Outcomes and complications of distal humeral hemiarthroplasty for distal humeral fractures – A systematic review. Shoulder & Elbow. 2021. DOI: 10.1177/17585732211023100

[12] Total elbow arthroplasty for the management of post-traumatic sequelae of distal humeral fractures. The Bone & Joint Journal. 2026. DOI: 10.1302/0301-620x.108b1.bjj-2025-0475.r1

[13] Distal humerus hemiarthroplasty for complex intra-articular fractures in elderly or nonfixable patients: a meta-analysis of clinical and functional outcomes. JSES International. 2026. DOI: 10.1016/j.jseint.2026.101695

[14] Hemiarthroplasty vs. open reduction and internal fixation for comminuted distal humerus fractures in patients under 65 years: a systematic review. JSES Reviews, Reports, and Techniques. 2025. DOI: 10.1016/j.xrrt.2025.07.014

[15] Use of Orthogonal or Parallel Plating Techniques to Treat Distal Humerus Fractures. Hand Clinics. 2010. DOI: 10.1016/j.hcl.2010.05.008

[16] Elbow hemiarthroplasty for the management of distal humeral fractures: current technique, indications and results. Shoulder & Elbow. 2016. DOI: 10.1177/1758573216640210

[17] Predictors of mortality after isolated distal humerus fractures in older adults. Journal of Shoulder and Elbow Surgery. 2026. DOI: 10.1016/j.jse.2026.02.013

[19] Current Treatment Strategies for Bicolumnar Distal Humerus Fractures. American Academy of Orthopaedic Surgeon. 2010. DOI: 10.5435/00124635-201001000-00004

[20] A systematic review, and meta-analysis of pain outcomes following total elbow replacement and hemi-replacement for unreconstructible acute distal humerus fractures in adults. Shoulder & Elbow. 2025. DOI: 10.1177/17585732251328594

[21] Distal humeral fractures: fixation versus arthroplasty. Journal of Shoulder and Elbow Surgery. 2011. DOI: 10.1016/j.jse.2010.11.012

[22] Comparative efficacy and safety of different posterior surgical approaches for Intra-articular distal humerus fractures. Journal of Orthopaedic Surgery and Research. 2026. DOI: 10.1186/s13018-026-06739-x

[23] Can Computed Tomography Hounsfield Units Predict Distal Humerus Fracture Mechanical Complications?. Journal of the American Academy of Orthopaedic Surgeons. 2026. DOI: 10.5435/jaaos-d-26-00191

[24] Outcomes of intra-articular distal humerus open reduction and internal fixation based on severity of articular comminution. Journal of Shoulder and Elbow Surgery. 2026. DOI: 10.1016/j.jse.2025.12.020

[25] Orthopaedic Knowledge Update 13 Ebook Without Multimedia. Anatomy, Biomechanics, Physical Examination, and Imaging of the Elbow > Summary and Conclusions.

[27] Treatment of Distal Humerus Fractures in the Elderly. Clinical Orthopaedics and Related Research. 2004. DOI: 10.1097/01.blo.0000131485.47685.8c

[32] Total Elbow Arthroplasty for Distal Humerus Fractures. Hand Clinics. 2015. DOI: 10.1016/j.hcl.2015.06.008

[33] Distal Humeral Fractures Treated with Noncustom Total Elbow Replacement. Journal of Bone and Joint Surgery. 2005. DOI: 10.2106/jbjs.d.02871

[37] Orthopaedic Knowledge Update 13 Ebook Without Multimedia. Anatomy, Biomechanics, Physical Examination, and Imaging of the Elbow > Anatomy > Bony Anatomy.

[38] Miller S Review Of Orthopaedics. SECTION 16 PATELLAR TRACKING IN TOTAL KNEE ARTHROPLASTY > TABLE 2.3 Shoulder Spaces.

[39] Miller S Review Of Orthopaedics. Genetics of musculoskeletal conditions and abnormalities are summarized in Table 1.27 > TABLE 2.3 Shoulder Spaces.

[43] Aaos Comprehensive Orthopaedic Review 3. Elbow Stiffness* > IV. Evaluation.

[50] Surgical treatment for posterior distal humeral shear fractures. Journal of Shoulder and Elbow Surgery. 2026. DOI: 10.1016/j.jse.2026.05.003

[52] Unsatisfactory radiographic findings do not correlate with functional impairment in patients with coronal shear fractures of the distal humerus treated with internal fixation: a long-term retrospective study according to Dubberley's classification. Journal of Shoulder and Elbow Surgery. 2026. DOI: 10.1016/j.jse.2025.05.033

[55] Coronal Shear Fractures of the Distal Humerus: A Review of Diagnosis, Treatment, and Outcomes. HAND. 2019. DOI: 10.1177/1558944719878817

[56] Coronal shear fractures of the distal humerus: the capitellum and trochlea. Hand Clinics. 2004. DOI: 10.1016/j.hcl.2004.08.001

[59] Complications of olecranon osteotomy in the treatment of distal humerus fracture. Clinics in Shoulder and Elbow. 2022. DOI: 10.5397/cise.2021.00591

[61] What is the incidence of total elbow arthroplasty after intra-articular versus extra-articular distal humerus open reduction and internal fixation?. Shoulder & Elbow. 2026. DOI: 10.1177/17585732261451863

[62] Ulnar Nerve Management with Distal Humerus Fracture Fixation. Hand Clinics. 2018. DOI: 10.1016/j.hcl.2017.09.010

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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.

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