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टीएफसीसी क्षति

TFCC injuries — pain on the ulnar side of the wrist, often with clicking, and treatment options.

Updated Sep 2026
छोटी उंगली की तरफ दर्द के साथ पुश-अप में भारित कलाई का हाथ से खींचा गया चित्रण।
त्रिकोणीय फाइब्रोकार्टिलेज कॉम्प्लेक्स (टीएफसीसी), कलाई की छोटी उंगली की ओर। Kieran Hirpara 4.0

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

दर्द आपकी कलाई की छोटी उंगली की तरफ होता है, जो आपके बाहरी अग्रभाग के सबसे करीब होता है। डॉक्टर इसे अलनेर साइड कहते हैं। जब आप अपनी कलाई को मोड़ते हैं, कुर्सी से उठने के लिए उस पर झुकते हैं, या दरवाजे के हैंडल को मोड़ते हैं तो यह अक्सर खराब हो जाता है। कलाई को आराम देने से आमतौर पर यह ठीक हो जाता है, हालांकि एक बार जब आप फिर से सक्रिय हो जाते हैं तो दर्द वापस आ सकता है।

यह दर्द गतिविधि के बाद तेज हो जाता है, और कई लोग इसे रात में या जागने पर नोटिस करते हैं। एक जार के ढक्कन को मोड़ना, एक भरा हुआ केतली उठाना, या खुद को एक कम सीट से बाहर धकेलना सभी अजीब हो सकते हैं। कुछ लोगों को पकड़ना और चुभाना दूसरी तरफ की तुलना में कमजोर लगता है, इसलिए शॉपिंग बैग ले जाना या जिद्दी नल खोलना पहले की तुलना में कठिन लगता है।

इस प्रकार का दर्द एक ही छोटे क्षेत्र में कई अलग-अलग समस्याओं से हो सकता है, यही कारण है कि इसे पिन करना अक्सर मुश्किल होता है। त्रिकोणीय फाइब्रोकार्टिलेज, कलाई के उस पक्ष पर एक कुशनिंग कार्टिलेज, एक सामान्य स्रोत है। निकटवर्ती जोड़ों में पहनने और आंसू गठिया, या कलाई की फ्रैक्चर जो अच्छी तरह से ठीक नहीं हुई है, इसी तरह के दर्द का कारण बन सकती है। चूंकि ये स्थितियां ओवरलैप होती हैं, इसलिए एक सावधानीपूर्वक इतिहास और शारीरिक परीक्षा पहले आती है। आपका सर्जन ठीक उस जगह को महसूस करेगा जहां आपको दर्द है और आपकी कलाई को इस तरह से हिलाएगा कि वह दर्द को बढ़ा सके या कम कर सके। एक्स-रे लगभग हमेशा लंबे समय से कलाई के दर्द की जांच का हिस्सा होते हैं, और उपास्थि और आस-पास के जोड़ों को देखने के लिए एक एमआरआई स्कैन जोड़ा जा सकता है।

स्कैन और गति परीक्षण हमेशा स्पष्ट उत्तर नहीं देते हैं। एक स्कैन परिवर्तन दिखा सकता है जो वास्तव में आपके दर्द का कारण नहीं है, और एक साफ स्कैन हमेशा एक आंसू को बाहर नहीं करता है। जब दर्द 3 महीने से अधिक समय तक रहता है और आराम, स्प्लिंटिंग या थेरेपी जैसे रूढ़िवादी उपचार के साथ बस नहीं गया है, तो कलाई आर्थ्रोस्कोपी की पेशकश की जा सकती है। यह कीहोल सर्जरी है, जहां एक पतला कैमरा कलाई के जोड़ के अंदर रखा जाता है। यह आपके सर्जन को सीधे उन संरचनाओं को देखने की अनुमति देता है जो आपके दर्द का कारण बनती हैं और अक्सर उन्हें एक ही ऑपरेशन में इलाज करती हैं।

वास्तव में क्या हो रहा है

त्रिकोणीय फाइब्रोकार्टिलेज कॉम्प्लेक्स आपकी कलाई की छोटी उंगली की तरफ एक कुशन संरचना है। इसे एक छोटे सदमे अवशोषक के रूप में सोचें जो आपके अग्रहस्त की हड्डी के अंत और आपकी कलाई की हड्डियों के बीच स्थित है। यह एक गैस्केट की तरह काम करता है, जो आपकी कलाई को आपके हाथ से जोड़ता है।

यह तकिया कई भागों से बना है जो एक साथ काम करते हैं: एक केंद्रीय डिस्क जो कठोर, रबड़ जैसी उपास्थि से बनी होती है, साथ ही सहायक जोड़ियां जो इसे आपके बाह्य अग्रहस्त के आधार पर छोटी हड्डी से जोड़ती हैं। ये लिगामेंट्स जोड़ के मुख्य स्टेबलाइजर्स हैं जो आपको अपने अग्रभाग को घुमाने की अनुमति देते हैं, एक स्क्रूड्राइवर या दरवाजे के हैंडल को घुमाने के लिए आप जिस गति का उपयोग करते हैं।

कुशन में एक कमजोर बिंदु है। केवल इसके बाहरी किनारे को रक्त की आपूर्ति प्राप्त होती है, लगभग इसका बाहरी 10% से 40%। मध्य भाग में कोई नहीं है। यह महत्वपूर्ण है क्योंकि बिना रक्त आपूर्ति के ऊतक अपने आप को ठीक करने के लिए संघर्ष करता है। तो जब तकिया के बीच में आंसू, आंसू अक्सर एक साथ बुनाई के बजाय खुला रहता है, और दर्द आप महसूस करते हैं जब आप मोड़ या कलाई भार वापस आते रहते हैं।

आंसू कितनी गहराई तक जाते हैं। कुछ कुशन के किनारे पर छोटे-छोटे फ्रिज होते हैं, जो एक फिसलन के करीब होते हैं। अन्य मध्य डिस्क के माध्यम से पूर्ण आंसू हैं, या आंसू जहां सहायक लिगामेंट्स अग्रहस्त की हड्डी पर अपने एंकर बिंदु से दूर खींचते हैं। गहरे आंसू, विशेष रूप से जो घूर्णन संयुक्त को अस्थिर करते हैं या उन समर्थन जोड़ों को शामिल करते हैं, वे हैं जिन्हें आराम और स्प्लिंटिंग के बजाय सर्जरी की आवश्यकता होती है।

जब कुशन या उसके लिगामेंट्स क्षतिग्रस्त हो जाते हैं, तो जो जोड़ उन्हें स्थिर करता है वह थोड़ा हट सकता है। यह अतिरिक्त गति आस-पास की सतहों को चिढ़ाती है और कलाई पर मुड़ने, पकड़ने या झुकने के साथ दर्द भड़कने का एक सामान्य कारण है।

हम इसके बारे में क्या कर सकते हैं

मैटर प्राइवेट हॉस्पिटल रॉकहैम्पटन में ऊपरी अंगों के सर्जन डॉ. किरण हिरपारा, आपकी स्थिति के अनुरूप कम से कम आक्रामक विकल्पों से शुरू 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। आपकी पहली यात्रा पर हम एक सावधानीपूर्वक इतिहास लेते हैं, आपकी कलाई की जांच करते हैं, और इमेजिंग की व्यवस्था करते हैं जहां यह पता लगाने के लिए आवश्यक है कि दर्द का कारण क्या है।

अधिकांश टीएफसीसी आंसू पहले गैर-सर्जिकल देखभाल पर आज़माए जाते हैं। दर्द को उत्तेजित करने वाली गतिविधियों से विश्राम प्रारंभ बिंदु है। एक स्प्लिंट कलाई को स्थिर रख सकती है और कुशन को ठहरने का मौका दे सकती है। फिजियोथेरेपी या हाथ चिकित्सा का उद्देश्य दर्द को कम करना, सुचारू आंदोलन को बहाल करना और पकड़ने और उठाने के लिए आवश्यक ताकत का पुनर्निर्माण करना है। हम आम तौर पर आपसे कुछ और सोचने से पहले कई महीनों तक इसका निष्पक्ष परीक्षण करने के लिए कहते हैं।

दर्द की गोलियां और विरोधी भड़काऊ आपको आरामदायक रहने में मदद कर सकते हैं जब तक कलाई बसती है। वे आंसू की मरम्मत नहीं करते हैं, लेकिन वे दैनिक कार्यों और चिकित्सा को प्रबंधित करना आसान बना सकते हैं।

जब दर्द 3 महीने से अधिक समय तक रहता है और रूढ़िवादी देखभाल के बावजूद कम नहीं होता है तो सर्जरी की आवश्यकता होती है। मुख्य ऑपरेशन कलाई की आर्थ्रोस्कोपी है, एक पतले कैमरे के साथ छोटी कटौती के माध्यम से कीहोल सर्जरी। यह हमें सीधे कलाई के अंदर देखने की अनुमति देता है और अक्सर उसी बैठने में आंसू का इलाज करता है। छोटे-छोटे फ्राय को पीछे की ओर काट दिया जा सकता है ताकि कुछ भी पकड़े न जाए। बाहरी किनारे पर आंसू, जहां रक्त की आपूर्ति होती है, नीचे वापस सिलाई की जा सकती है। उन आंसुओं को भी ठीक किया जा सकता है, जहां अग्रहस्त की हड्डी पर समर्थन करने वाले लिगामेंट्स ने अपना लंगर बिंदु खींच लिया है। यदि कुशन की मरम्मत नहीं की जा सकती है, तो कभी-कभी इसे आपके स्वयं के अग्रहस्त से स्नायु की पट्टी का उपयोग करके फिर से बनाया जा सकता है। कुछ लोगों के पास हड्डी का एक छोटा टुकड़ा भी होता है जो कलाई के उस तरफ से दबाव को दूर करने के लिए छोटा किया जाता है। हम बात करेंगे कि इनमें से कौन सा आपकी कलाई को फिट करता है, और साथ में तय करेंगे कि कौन सी योजना आपको सूट करती है।

क्या उम्मीद करें

इस प्रकार के कलाई के दर्द वाले अधिकांश लोगों में सुधार होता है, लेकिन सुधार आमतौर पर पूर्ण होने के बजाय आंशिक होता है। जब कलाई में लंबे समय से दर्द होता है और अंदर की ओर देखने और जो पाया जाता है उसका इलाज करने के लिए कीहोल सर्जरी का उपयोग किया जाता है, तो एक वर्ष के भीतर दर्द और विकलांगता में लगभग आधा सुधार होता है। कई लोगों को अभी भी उस समय कुछ दर्द या सीमा का एहसास होता है, हालांकि यह आमतौर पर पहले की तुलना में कम परेशान करता है।

उपचार के बिना, चित्र इस बात पर निर्भर करता है कि दर्द का कारण क्या है। कुशन के बाहरी किनारे पर एक छोटी सी झड़प, जहां रक्त की आपूर्ति होती है, आराम, स्प्लिंटिंग और थेरेपी के साथ बस सकती है। तकिया के बीच में आंसू अक्सर अपने आप ठीक नहीं होते, क्योंकि उस हिस्से में रक्त की आपूर्ति नहीं होती है, इसलिए जब भी आप कलाई को मोड़ते या लोड करते हैं तो दर्द वापस आता रहता है। यदि पहनने और आंसू गठिया या कलाई के उस तरफ दबाव समस्या का हिस्सा है, तो लक्षण आमतौर पर जारी रहते हैं या फिर से आते हैं, खासकर खेल या भारी उपयोग के साथ। जब पहले उपचार के बावजूद दर्द बनी रहती है, तो आगे के विकल्प मौजूद हैं, जैसे कि अग्रहस्त में एक छोटी हड्डी को छोटा करने और दर्द की तरफ से दबाव को दूर करने के लिए एक प्रक्रिया।

वसूली अचानक के बजाय धीरे-धीरे होती है। पहले हफ्तों में लक्ष्य दर्द को कम करना और कलाई की रक्षा करना है। कलाई और उंगलियों के बीच शक्ति और समन्वित आंदोलन सप्ताहों से लेकर महीनों तक पुनर्निर्माण करते हैं, जिसमें लगभग 8 से 12 सप्ताह तक सबसे अधिक ध्यान देने योग्य परिवर्तन होता है। कुछ लोग दूसरों की तुलना में जल्दी खेल में लौट आते हैं। जिन एथलीटों को कलाई के उसी हिस्से में चोट लगी है, उन्हें खेल में वापसी करने से पहले अधिक समय की आवश्यकता हो सकती है।

कीहोल कलाई सर्जरी के बाद गंभीर समस्याएं असामान्य हैं, हालांकि वे हो सकती हैं। संयुक्त में संक्रमण दुर्लभ होता है। कम गंभीर समस्याएं, जैसे कि अस्थायी त्वचा की जलन या सेटअप से उंगलियों में संक्षिप्त सुन्नता, हो सकती है लेकिन आमतौर पर बस जाती है। आपके सर्जन आपके विशेष कलाई और ऑपरेशन पर विचार करने के लिए लागू जोखिमों के माध्यम से बात करेंगे, ताकि आप उन्हें आपके वर्तमान दर्द के खिलाफ तौल सकें।

किसी से कब मिलना है

यदि आपकी कलाई की छोटी उंगली की तरफ दर्द 3 महीने से अधिक समय तक रहता है और आराम, स्प्लिंटिंग या थेरेपी से ठीक नहीं होता है, तो अपने चिकित्सक से परामर्श करें। यदि कलाई पर मुड़ने, पकड़ने या झुकने से दर्द वापस आता रहता है, या यदि पकड़ने और चुटकी लेने से आपकी दूसरी तरफ की तुलना में कमजोरी महसूस होती है, तो एक विशेषज्ञ की समीक्षा के लिए पूछें। आपातकालीन विभाग में जाएं यदि आपके पास कुंजी छेद कलाई सर्जरी के बाद बुखार के साथ एक गर्म, लाल, सूजन कलाई है, या यदि अग्रभाग या हाथ में सूजन तंग है और इसे स्थानांतरित करना दर्दनाक है। ये संयुक्त या द्रव के निर्माण में संक्रमण का संकेत दे सकते हैं जहां यह नहीं होना चाहिए, और दोनों को नियमित नियुक्ति की प्रतीक्षा करने के बजाय उसी दिन मूल्यांकन की आवश्यकता होती है।

अधिक गहराई से

यह अनुभाग आपके स्वयं के उपचार निर्णयों के लिए आवश्यक से अधिक है। त्रिकोणीय फाइब्रोकार्टिलेज जटिल चोट अतिरिक्त पढ़ने के लायक है क्योंकि तकनीक बहस जो चर्चा पर हावी है, अलग नहीं हुई है, जबकि पोस्ट-ऑपरेटिव शासन का एक विवरण, जो बहुत कम ध्यान आकर्षित करता है, मायने रखता है।

संरचना वास्तव में क्या करती है

टी.एफ.सी.सी. कर्पस की एक डिस्क है जिसमें लिगामेंट्स का एक घोंसला होता है, जो अलना के अंत और कार्पल हड्डियों के बीच स्थित होता है। यह एक साथ दो कार्य करता है: यह कलाई के अलनेर पक्ष में प्रेषित भार को कुशन करता है, और यह कलाई पर दो अग्रहस्त हड्डियों के बीच संयुक्त को स्थिर करता है डिस्टल रेडियोलनेर संयुक्त।

यह दोहरी भूमिका बताती है कि यहां चोटें दो अलग-अलग तरीकों से क्यों दिखाई देती हैं। मुख्य रूप से डिस्क को प्रभावित करने वाला एक आंसू बोझ पर दर्द पैदा करता है, एक कुर्सी से ऊपर धकेलना, पकड़ना और मुड़ना। एक आंसू गहरे तंतुओं को अलना पर उनके अनुलग्नक से अलग करता है, फव्वेल सम्मिलन, अस्थिरता पैदा करता है, इस भावना के साथ कि कलाई रास्ता देती है या जब अग्रभाग घूमता है तो क्लैंप करती है। दूसरा ज्यादा मायने रखता है, क्योंकि लिगामेंटोस अटैचमेंट है जो जोड़ को एक साथ रखता है।

एमआरआई सटीक है, एक योग्यता के साथ जानने लायक है

निदान काफी हद तक इमेजिंग पर निर्भर करता है। पार करना 1,298 रोगियों के लिए, एमआरआई की समग्र सटीकता स्वीकार्य थी, और परिधीय आंसू पूल सटीकता अपेक्षाकृत उच्च थीविभिन्न प्रकार के आंसू का निदान करने के लिए आदर्श विधि के रूप में वर्णित उपयुक्त मापदंडों का उपयोग करके एमआरआई के साथ [1].

योग्यता "परिधीय" शब्द में है। एमआरआई कॉम्प्लेक्स के बाहरी, बेहतर-संवहनी भाग पर सबसे अच्छा प्रदर्शन करता है, जहां मरम्मत योग्य आँसू बैठते हैं। केंद्रीय और अपक्षयी आंसू, और फोवियल अनुलग्नक की सटीक स्थिति, विशेषता के लिए कठिन हैं, यही कारण है कि परीक्षा के निष्कर्ष और कभी-कभी आर्थ्रोस्कोपी स्कैन के साथ वजन लेते हैं।

तकनीक की तुलना अलग नहीं करती है

दो परिचालन वाद-विवाद दोहराए जाते हैं, और न ही हल किया गया है।

सामान्य परिधीय, कण्ठ-पक्षीय आंसू के लिए, 240 रोगियों ने पाया कि उच्च गुणवत्ता वाले साक्ष्य का अभाव आर्थ्रोस्कोपिक बनाम खुली मरम्मत पर ठोस निष्कर्ष निकालने के लिए, और कोई वैज्ञानिक प्रमाण नहीं है जो एक तकनीक को दूसरे से श्रेष्ठता का सुझाव देता हो [2].

foveal मरम्मत के लिए, पार transosseous सिलाई के साथ सिलाई एंकर की तुलना 904 रोगियों, दोनों कार्यात्मक परिणामों में सुधार हासिल किया, दर्द और पकड़ की ताकत के साथ एक कम reoperation दर हालांकि गति की सीमा की तुलना बनी रही अनिश्चित [3].

लगातार संदेश यह है कि मरम्मत को संलग्नक को बहाल करने की आवश्यकता है; इसे प्राप्त करने के लिए उपयोग किए जाने वाले हार्डवेयर को परिणाम को बदलने के लिए नहीं दिखाया गया है।

पोस्ट-ऑपरेटिव विवरण जो मायने रखता है

यहां साक्ष्य अधिक भेदभावपूर्ण है, और यह व्यावहारिक रूप से उपयोगी है। Foveal TFCC की मरम्मत के बाद immobilisation regimes की तुलना 288 रोगियों, पोस्ट-ऑपरेटिव इमोबिलाइजेशन कोहनी की गति को सीमित करने की तुलना में अग्रहस्त रोटेशन को सीमित करने से अधिक लाभ हो सकता है, और कोहनी झुकाव और विस्तार के अतिरिक्त प्रतिबंध सुसंगत लाभ नहीं दिखाया है [4].

यह सीधे शरीर रचना से आता है। मरम्मत की गई संरचना को लोड करने के लिए कोहनी को झुकाना नहीं, बल्कि अग्रहस्त को घुमाकर लोड किया जाता है, इसलिए स्प्लिंट को हथेली को ऊपर और नीचे मोड़ने पर नियंत्रण करने की आवश्यकता होती है। कोहनी के ऊपर का कास्ट अक्सर कोहनी के घूर्णन को रोककर अप्रत्यक्ष रूप से इसे लागू करने के लिए उपयोग किया जाता है, और इस सबूत से पता चलता है कि कोहनी घटक काम करने वाला हिस्सा नहीं है। एक मरीज के लिए, कोहनी को मुक्त छोड़ने वाले ब्रेसलेट में छह सप्ताह का अनुभव इसके ऊपर गिप्स में छह सप्ताह के अनुभव से काफी अलग है।

संदर्भ

[1] वांग जेएक्स, चेन एसएल, वांग क्यूक्यू, लियू बी, झू जे, शेन जे. त्रिकोणीय फाइब्रोकार्टिलेज जटिल चोट का पता लगाने में चुंबकीय अनुनाद इमेजिंग का प्रदर्शनः एक मेटा-विश्लेषण। J Hand Surg Eur Vol. 2015;40(5):477-84. https://doi.org/10.1177/1753193414567425

[2] रोबा वी, फाउलर ए, कारान्टाना ए, ग्रिंडले डी, लिंडो टी। 1 बी अलनेर-पक्षीय त्रिकोणीय फाइब्रोकार्टिलेज कॉम्प्लेक्स आंसू की खुली बनाम आर्थ्रोस्कोपिक मरम्मतः एक व्यवस्थित समीक्षा। हाथ (एनवाई). 2019;15(4):456-64. https://doi.org/10.1177/1558944718815244

[3] मा एच, वांग जे, यांग सी. आर्थ्रोस्कोपिक त्रिकोणीय फाइब्रोकार्टिलेज कॉम्प्लेक्स फोवेल रिपेयर में सिचुएशन एंकर और ट्रांसोसियस सिचुएशन तकनीक की प्रभावशीलताः एक व्यवस्थित समीक्षा और मेटा-विश्लेषण। जे ऑर्थोपेडिक सर्ज रिज़. 2024;19(1). https://doi.org/10.1186/s13018-024-04530-4

[4] ली जे, ली टी, ली एस, लिम एच, चांग ई, पार्क एमओ, एट अल। फोवेल त्रिकोणीय फाइब्रोकार्टिलेज कॉम्प्लेक्स की मरम्मत के बाद पोस्टऑपरेटिव इमोबिलाइजेशनः एक व्यवस्थित समीक्षा और मेटा-विश्लेषण। J हाथ सर्ज अ. 2026;51(5):512.e1-512.e11. https://doi.org/10.1016/j.jhsa.2026.01.029


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

  • Acute TFCC injuries require differentiation between those causing distal radioulnar joint instability and those that do not [1].
  • Management of acute TFCC injuries ranges from nonsurgical immobilization to arthroscopic or open surgical repair depending on the specific injury pattern and stability [1].
  • Arthroscopic-assisted repair techniques provide detailed visualization and facilitate the repair of TFCC injuries and associated pathologies with minimally invasive techniques [6].
  • The diagnosis, classification, and treatment options for TFCC injuries include open and arthroscopic techniques [3].
  • Surgical treatment of TFCC tears and concomitant pathology in the pediatric and adolescent population results in decreased pain, improved motion and stability, and excellent functional outcomes in the majority of patients [4].
  • About 40% of patients sustaining a TFCC tear without distal radioulnar joint instability still had pain and disability at 1 year [5].
  • Arthroscopic treatment of TFCC lesions leads to satisfactory functional outcomes [7].
  • TFCC repair varies substantially from surgeon-to-surgeon, suggesting repairs are discretionary and preference sensitive [10].
  • TFCC repair achieves good clinical outcomes with low complication rates [14].
  • There was no statistical difference in clinical outcomes after open versus arthroscopic TFCC repair [17].
  • There is a current lack of high-quality evidence required to draw firm conclusions on the merits of arthroscopic versus open repair of 1B TFCC tears [28].
  • In high-demand athletes, arthroscopic repair of TFCC tears is becoming the treatment of choice to obtain optimum physiologic strength, complete range of motion, stability, and the shortest possible postoperative period [41].

Anatomy & Pathophysiology

Anatomical Structures

  • The triangular fibrocartilage complex (TFCC) consists of the triangular (articular) disc, lunotriquetral interosseus ligament, ulnocapitate ligament, ulnotriquetral ligament, volar distal radiolunar ligament, dorsal distal radioulnar ligament, ulnolunate ligament, and short radiolunate ligament [11].
  • The TFCC is a group of interrelated anatomic structures that are integral to the stability of the distal radioulnar joint (DRUJ) [33].
  • The TFCC acts as the primary stabilizer of the distal radioulnar joint during forearm rotation [40].
  • The TFCC provides a smooth articular surface and partially absorbs axial load from the radiocarpal joint [40].
  • The ulnar attachment of the TFCC is a three-dimensional complex consisting of proximal radioulnar ligaments, a distal hammock structure (centrally located fibrocartilage disk, meniscus homologue, and ulnocarpal ligaments), and a functional ulnar collateral ligament (UCL) [30].
  • The functional ulnar collateral ligament (UCL) consists of the extensor carpi ulnaris (ECU) tendon subsheath and the thickened ulnar capsule [30].
  • The distal hammock structure and the UCL are considered the distal component of the TFCC, while the radioulnar ligament represents the proximal component [30].
  • The dorsal and volar radioulnar ligaments span from the dorsal and volar corners of the distal radius to a broad area of the fovea at the base of the ulnar styloid [30].
  • A more superficial component of the radioulnar ligaments runs obliquely and distally to the ulnar styloid [30].
  • The deep foveal components of the radioulnar ligaments are considered the true stabilizers of the DRUJ [30].
  • Frank DRUJ instability can occur when the proximal foveal component is injured, even if the distal component remains intact [30].
  • The ulnar styloid provides attachments for portions of the ulnocarpal ligaments, the ECU tendon sheath, and superficial limbs of the radioulnar ligaments [39].
  • The deep limbs of the radioulnar ligaments insert into the fovea of the ulnar head [39].
  • The tip of the ulnar styloid is devoid of soft tissue attachments [39].
  • The outer 10% to 40% of the articular disk is well perfused and suggests a healing potential for injured areas upon repair [30].
  • The central area of the TFCC is devoid of vascularity and unable to heal [11].
  • The peripheral rim of the TFCC is well vascularized, akin to the meniscus within the knee [11].

Classification

  • Palmer classification categorizes TFCC tears into traumatic (Class 1) or degenerative (Class 2) based on mechanism [11].
  • Class 1A injuries are characterized by central perforation or tear of the TFCC [11].
  • Class 1B injuries are characterized by ulnar avulsion with or without ulnar styloid fracture [11].
  • Class 1C injuries are characterized by distal avulsion involving the origins of the ulnolunate and ulnotriquetral ligaments [11].
  • Class 1D injuries are characterized by radial avulsion involving the dorsal and/or volar radioulnar ligaments [11].
  • Class 2A degenerative tears are characterized by TFCC wear or thinning [11].
  • Class 2B degenerative tears are characterized by TFCC wear plus lunate and/or ulnar chondromalacia [11].
  • Class 2C degenerative tears are characterized by TFCC perforation plus lunate and/or ulnar chondromalacia [11].
  • Class 2D degenerative tears are characterized by TFCC perforation, lunate and/or ulnar chondromalacia, and lunotriquetral ligament disruption [11].
  • Class 2E degenerative tears are characterized by TFCC perforation, lunate and/or ulnar chondromalacia, lunotriquetral ligament disruption, and ulnocarpal and DRUJ arthritis [11].
  • Estrella and Ho described a dorsal type of TFCC tear located at the junction of the dorsal radioulnar ligament and the joint capsule just radial to the ECU tendon subsheath [30].

Pathophysiology & Mechanisms

  • Injuries to the TFCC typically occur with extension and pronation of the axially loaded wrist [30].
  • The most common mechanism of TFCC injury is a fall on an outstretched hand [30].
  • Traumatic radial-sided tears of the TFCC typically occur during acute rotational injuries of the forearm, most frequently during combined axial load with a distraction injury to the ulnar border [73].
  • Repetitive forceful movement of the wrist from supination to pronation can cause overload stress affecting components of the TFCC [33].
  • Degenerative TFCC tears occur as a result of chronic excessive loading through the ulnocarpal joint along with natural tissue degeneration associated with age [73].
  • Cadaveric examinations observed TFCC perforations and chondromalacia of the ulnar head, lunate, and triquetrum in 30% to 70% of specimens [73].
  • A fracture through the base of the ulnar styloid that disrupts both deep and superficial limbs of the TFCC is more predictive of DRUJ instability than fractures through the shaft or tip [39].
  • Most ulnar styloid fractures do not cause DRUJ instability, partly due to the dual ulnar attachments of the TFCC [39].
  • Complete avulsion of the radioulnar ligaments and gross instability can occur without an ulnar styloid fracture [39].
  • A small fleck of bone avulsed from the fovea indicates disruption of the deep limbs of the radioulnar ligaments [39].
  • Class 1D injuries are frequently associated with distal radius fractures and often respond to reduction of the radius [11].
  • Class 1A tears are relatively common and may cause pain and mechanical symptoms such as clicking, but do not cause DRUJ instability [29].
  • Class 1B injuries involve partial or complete avulsion of the TFCC from its ulnar attachments, with or without an ulnar styloid fracture [39].
  • Class 1C tears involve the distal attachment of the articular disk to the lunate, triquetrum, and lunotriquetral ligaments [37].
  • Complete tears of the ulnocarpal ligaments can result in ulnar carpal instability and/or volar translocation of the ulnar carpus in relation to the radius [37].
  • Deep TFCC fiber tears may contribute to decreased wrist rotational positioning sense and have biomechanical importance in DRUJ stability [31].
  • The TFCC is subjected to considerable axial loading and shear stresses and is frequently injured [30].

Classification

Palmer Classification System

  • The Palmer classification categorizes TFCC disorders into two basic categories: traumatic (Class 1) and degenerative (Class 2) [11, 12].
  • Class 1 traumatic lesions are subdivided into four types based on the specific location of the tear within the TFCC [11, 12].
  • Class 2 degenerative tears are associated with ulnocarpal impaction syndrome [11, 12].
  • The class and location of the tear have important implications for treatment [11, 12].

Class 1 (Traumatic) Subtypes

  • Class 1A injuries are characterized by central perforation or tear [11, 12].
  • Type 1-B injuries are defined as peripheral tears located at the ulnar end of the TFCC [56].

Class 2 (Degenerative) Subtypes

  • Class 2A is characterized by TFCC wear or thinning [11, 12].
  • Class 2B is characterized by TFCC wear plus lunate and/or ulnar chondromalacia [11, 12].
  • Class 2C is characterized by TFCC perforation plus lunate and/or ulnar chondromalacia [11, 12].
  • Class 2D is characterized by TFCC perforation, lunate and/or ulnar chondromalacia, and lunotriquetral ligament disruption [11, 12].
  • Class 2E is characterized by TFCC perforation, lunate and/or ulnar chondromalacia, lunotriquetral ligament disruption, and ulnocarpal and DRUJ arthritis [11, 12].

Atzei-EWAS Treatment-Oriented Classification

  • The Atzei-EWAS classification subdivides type 1-B TFCC tears into five classes based on treatment orientation [56, 66].
  • Class 1 in the Atzei-EWAS system is defined as a reparable distal tear [56, 66].
  • Class 2 in the Atzei-EWAS system is defined as a reparable complete tear [56, 66].
  • Class 3 in the Atzei-EWAS system is defined as a reparable proximal tear [56, 66].
  • Class 4 in the Atzei-EWAS system is defined as a non-repairable tear [56, 66].
  • Class 5 in the Atzei-EWAS system is defined as tears associated with DRUJ arthritis [56, 66].
  • The Atzei-EWAS classification allows differentiation between distal and proximal lesions involving the foveal insertions of the TFCC [66].
  • The Atzei-EWAS classification allows differentiation between reparable and irreparable lesions [66].
  • The European Wrist Arthroscopy Society (EWAS) endorsed the Atzei-EWAS classification [66].

Diagnostic and Imaging Considerations

  • Arthroscopy is the gold standard for detection of TFCC tears [11, 12].
  • The diagnostic accuracy of MRI remains lower compared to wrist arthroscopy for detailed classifications such as Atzei's classification of pc-TFCC tears [24].
  • Diagnostic accuracy for TFCC injuries was highest for central TFCC injuries [27].
  • Classification of central triangular fibrocartilage complex lesions as traumatic or degenerative depends on the information provided upon viewing the lesion at arthroscopy [18].
  • The Melone classification system does not predict the presence of TFCC lesions [51].
  • Frykman Type VI and VIII fractures show a significantly higher incidence of TFCC tears [51].
  • The presence of an ulnar styloid fracture associated with a distal radius fracture predicted the presence of traumatic triangular fibrocartilage complex injury and TFCC 1B injury [15].
  • 1B TFCC injury is the most common type in patients with distal radius fractures and concomitant TFCC injury [8].

Clinical Presentation

Symptoms and Physical Findings

  • A TFCC injury should be suspected when an athlete presents with vague ulnar-sided wrist pain or tenderness, possibly associated with an audible or palpable click on forearm rotation [52].
  • Careful history and physical examination are required to determine whether a TFCC tear is symptomatic [13].
  • It is important to quantify the severity of symptoms related to TFCC pathology to determine whether surgical treatment is necessary [13].
  • Clinical correlation with provocative signs on ulnar wrist is part of the preoperative evaluation for TFCC pathology [16].
  • About 40% of patients sustaining a TFCC tear without distal radioulnar joint (DRUJ) instability still had pain and disability at 1 year [5].
  • Deep TFCC fiber tear may contribute to decreased wrist rotational positioning sense [31].
  • Deep TFCC fiber tear may have biomechanical importance in distal radioulnar joint stability [31].

Mechanisms and Associations

  • Traumatic injuries of the TFCC may occur from fall or hyper-rotational injuries to the forearm [33].
  • Repetitive forceful movement of the athlete’s wrist from supination to pronation can cause overload stress affecting components of the TFCC [33].
  • Type 1B TFCC injury is most common in patients with distal radius fractures and concomitant TFCC injury [8].
  • A higher frequency of accompanying extensor carpi ulnaris (ECU) tendon and/or DRUJ disorders was found in patients with chronic TFCC tears compared to a control group [38].

Diagnostic Imaging and Assessment

  • There is a high rate of abnormal TFCC identified on MRI in patients without corresponding ulnar-sided wrist symptoms [22].
  • MR arthrography is a more sensitive and specific method for the diagnosis of TFCC tears compared to conventional wrist MRI [36].
  • In detailed classification of TFCC injuries, such as pc-TFCC tears classified by Atzei's classification, the diagnostic accuracy of MRI remains lower compared to wrist arthroscopy [24].
  • Diagnostic accuracy was highest for central TFCC injuries [27].
  • Load-bearing radioulnar (RaUl) measurement is a simple method to diagnose an unstable distal radioulnar joint in patients with TFCC injury [62].
  • MRI of the wrist is used to check for edema of the lunate in cases of ulnar positive variance or suspected impaction [16].
  • Checking ulnar variance is part of the preoperative evaluation for TFCC pathology [16].

Investigations

Clinical Examination

  • The arthroscopic trampoline test assesses TFCC resiliency by balloting the central portion with a small probe [11].
  • The arthroscopic hook test demonstrates peripheral detachment of the TFCC [11].
  • The arthroscopic suction test can show laxity of the TFCC when peripherally scarred in or foveal detachment when the DRUJ is clinically unstable [11].
  • A positive ulnar fovea sign is 90% sensitive and 88% specific in detecting a split tear of the ulnotriquetral ligament [42].
  • Clinical correlation with provocative signs on the ulnar wrist is part of the preoperative evaluation for TFCC debridement [16].
  • Checking ulnar variance is part of the preoperative evaluation for TFCC debridement [16].
  • Radiographs are used to check ulnar variance and forearm alignment in the preoperative evaluation for TFCC reconstruction with tendon graft [25].
  • X-ray of the wrist is used to rule out ulnar styloid fracture in the preoperative evaluation for Class 1B TFCC repair [42].

Imaging

  • MRI is controversial for TFCC diagnosis, but newer innovations suggest value in detection and localization of TFCC pathology [11].
  • The sensitivity, specificity, and accuracy of 3.0T wrist MRI for the TFCC are consistently higher compared with those of 1.5T wrist MRI [67].
  • The presence of an abnormal TFCC on MRI may be of questionable clinical meaning because there is a high incidence of TFCC abnormalities in asymptomatic subjects, particularly those over the age of 50 [74].
  • Ulnar-sided contrast leakage is more common in patients with peripheral TFCC injuries, making distinction between an atypical configuration of the prestyloid recess and actual leakage important in CT arthrography [72].
  • MRI of the wrist is used to check for edema of the lunate in cases of ulnar positive variance or suspected impaction during preoperative evaluation [16].
  • Diagnostic arthroscopy or high-resolution MRI is used to evaluate the potential for TFCC repair in the preoperative evaluation for reconstruction [25].
  • A postoperative MRI helps to analyze the integrity of TFCC postrepair and adds to understanding of its natural course of healing [70].

Classification

  • The Palmer classification categorizes TFCC injuries as traumatic (class 1) or degenerative (class 2) [11].
  • Subtypes of TFCC injuries are based on the specific location within the TFCC [11].
  • Class and location of the tear have important implications for treatment [11].
  • Class 1A TFCC injuries are characterized by central perforation or tear [11].
  • Class 1B TFCC injuries are characterized by ulnar avulsion with or without ulnar styloid fracture [11].
  • Class 1C TFCC injuries are characterized by distal avulsion involving the origins of the ulnolunate and ulnotriquetral ligaments [11].
  • Class 1D TFCC injuries are characterized by radial avulsion involving the dorsal and/or volar radioulnar ligaments [11].
  • Class 2A degenerative TFCC tears are characterized by TFCC wear or thinning [11].
  • Class 2B degenerative TFCC tears are characterized by Class 2A changes plus lunate and/or ulnar chondromalacia [11].
  • Class 2C degenerative TFCC tears are characterized by TFCC perforation plus lunate and/or ulnar chondromalacia [11].
  • Class 2D degenerative TFCC tears are characterized by Class 2C changes plus lunotriquetral ligament disruption [11].
  • Class 2E degenerative TFCC tears are characterized by Class 2D changes plus ulnocarpal and distal radioulnar joint arthritis [11].
  • Class 1B TFCC injury is the most common type in patients with distal radius fractures and concomitant TFCC injury [8].

Treatment

Non-Operative Management

  • Acute TFCC injuries are initially managed with immobilization and NSAIDs [11].
  • All Class 1 (acute traumatic) TFCC injuries are initially managed with immobilization and NSAIDs [12].
  • Conservative management for acute traumatic TFCC tears includes rest, immobilization, antiinflammatory medications, and occasionally corticosteroid injection [29].
  • TFCC injuries are managed initially using nonsurgical measures, including immobilization of the wrist and forearm, activity modification, and analgesics, for the first 2 or 3 months [30].
  • Initial treatment for Class 1B injuries involves protective above-elbow immobilization for 4 to 6 weeks toward the forearm in neutral rotation [39].
  • Nonoperative management of traumatic TFCC injuries with above-elbow immobilization is a viable treatment method, particularly in patients without DRUJ subluxation [69].
  • Nonsurgical treatment is moderately successful for treating patients with TFCC tears without DRUJ instability [32].
  • Approximately 40% of patients sustaining a TFCC tear without DRUJ instability still had pain and disability at 1 year [5].
  • 46% of patients with avulsion of the TFCC from the fovea were pain-free after conservative treatment [30].
  • Patients with ulnar-positive wrists may be less likely to respond to conservative management for Class 1A tears [29].

Indications for Surgery

  • Surgical treatment is indicated for Class 1 TFCC injuries upon failure of nonoperative treatment [11].
  • Indications for surgical intervention include specific ulnar-sided wrist pain not relieved by conservative management for 3 months, especially in the presence of symptomatic instability of the DRUJ [30].
  • Surgery is indicated for Class 1B injuries with persistent symptoms or evidence of DRUJ instability [39].
  • Arthroscopic TFCC debridement is indicated for acute traumatic Palmar type 1A TFCC tears that fail to respond to conservative treatment with splint and medication for more than 3 months [16].
  • Arthroscopic TFCC debridement is indicated for degenerative central tears of the TFCC with ulnar neutral or negative variance that fail to respond to conservative treatment for more than 3 months [16].
  • TFCC reconstruction with tendon graft is indicated for symptomatic DRUJ instability after neglected chronic TFCC injury, massive nonrepairable tear, or failed previous surgical repair [25].
  • TFCC reconstruction with tendon graft is indicated for irreparable TFCC injuries with symptomatic DRUJ instability, neglected chronic injuries, or after suboptimal healing following nonoperative or surgical repair [26].
  • Skeletal malalignment that may be responsible for DRUJ instability should be addressed concomitantly with TFCC reconstruction [26].
  • Osteoarthritis of the DRUJ and axial instability of the forearm due to interosseous membrane injury are contraindications to TFCC reconstruction [26].

Operative Techniques: Debridement

  • Class 1A (central) TFCC tears are treated with débridement if persistently symptomatic because this area of the TFCC is devoid of vascularity and unable to heal [11].
  • A 2-mm peripheral rim should be maintained during debridement of Class 1A tears [11].
  • The peripheral 2 to 3 mm of the TFCC must be preserved during debridement to protect the radioulnar ligaments [16].
  • The peripheral 1 to 2 mm of the articular disc must be preserved during debridement to avoid injury to the radioulnar ligaments [29].
  • Arthroscopic debridement alone appears to be an effective and safe initial treatment for patients with traumatic central TFCC tears [45].
  • Resection of unstable flaps is sufficient during TFCC debridement when the remaining margins are smooth and stable [16].
  • A thorough synovectomy of the ulnocarpal joint and DRUJ is essential for early pain control during TFCC debridement [16].
  • Excessive use of RF energy during TFCC debridement can lead to thermal chondral damage [16].
  • Overaggressive debridement can cause DRUJ instability [16].
  • Failure to diagnose ulnar impaction syndrome may lead to continued pain following TFCC debridement [16].

Operative Techniques: Repair

  • Class 1B (peripheral) TFCC tears are amenable to arthroscopic or open repair because the rim is well vascularized [11].
  • Concurrent fractures of the ulnar styloid with persistent instability in Class 1B injuries are either excised or fixed [11].
  • Class 1C (distal avulsion) TFCC tears are amenable to arthroscopic or open repair [11].
  • Class 1D (radial avulsion) TFCC tears are frequently associated with distal radius fractures and often respond to reduction of the radius [11].
  • Repair of a traumatic TFCC tear within 3 months of injury allows a patient to regain 80% of wrist ROM and grip strength [11].
  • Current evidence demonstrates that TFCC repair achieves good clinical outcomes, with low complication rates [14].
  • Arthroscopy is effective in obtaining both correct diagnosis and treatment of peripheral TFCC tear [21].
  • Coexisting type 2 TFCC tears significantly increased the risk of index surgery failure in patients undergoing arthroscopic repair of peripheral ulnar-side TFCC tears [19].
  • The combined HS and suture repair effectively restores stability to both the DRUJ and UCJ in patients with TFCC-related ulnocarpal instability, considerably reducing pain and preserving range of motion [64].
  • Pediatric patients commonly have Palmer 1B (ulnar peripheral) tears, which are amenable to repair rather than solely débridement due to improved vascularity at the periphery [68].

Operative Techniques: Reconstruction and Salvage

  • TFCC reconstruction with tendon graft aims to restore normal DRUJ kinematics by using a single tendon graft with uniform tension passed through the edges of the sigmoid notch and through the ulna at the foveal insertion site [26].
  • The radial tunnel for TFCC reconstruction should be kept under 2.5 mm to reduce the risk of fracture and promote ingrowth [25].
  • The ulnar tunnel for TFCC reconstruction should be kept under 3.5 mm to reduce the risk of fracture and promote ingrowth [25].
  • The radial tunnel for TFCC reconstruction should be kept 5 mm away from the lunate sigmoid fossae to avoid fracture [25].
  • Fracture of the sigmoid notch or lunate facet is a pitfall if the radial tunnel is too close to the joint line during TFCC reconstruction [25].
  • Fracture of the ulnar styloid is a pitfall if the ulnar tunnel is too wide or too distal during TFCC reconstruction [25].
  • Nonly placement of the ulnar tunnel leads to loss of rotation motion during TFCC reconstruction [25].
  • A narrow ulnar tunnel may cause binding of the tendon graft and failure of tensioning during TFCC reconstruction [25].
  • Postoperative care for TFCC reconstruction involves a reverse sugar tong cast with forearm in neutral rotation, changing to a splint after 3 weeks, allowing full active forearm rotation after 6 weeks, and passive motion after 8 weeks [25].
  • Hemiresection or interposition arthroplasty maintains the ulnar insertion of the TFCC and prevents radioulnar impingement by soft tissue interposition [11].
  • The Sauvé-Kapandji procedure involves DRUJ arthrodesis with creation of a proximal pseudarthrosis at the ulnar neck [11].
  • Ulnar head or total joint implant arthroplasty maintains the relationship between the radius and the ulna [11].
  • Results of ulnar head or total joint implant arthroplasty show good pain relief at the risk of ulnar head instability, aseptic loosening, and no appreciable change in pronosupination compared to preoperative values [11].
  • One-bone forearm fusion represents the ultimate salvage operation for persistent pain or complications by fusing the proximal ulna to the distal radius shaft [11].

Complications

  • Coexisting type 2 TFCC tears significantly increased the risk of index surgery failure in patients undergoing arthroscopic repair of peripheral ulnar-sided TFCC tears [19].
  • Patients with chronic TFCC tears have a higher frequency of accompanying extensor carpi ulnaris tendon and/or distal radioulnar joint disorders compared to a control group [38].

Recovery

  • In the first year after open TFCC reinsertion, 91% of the patients returned to work, including 50% within 12 weeks [76].
  • Disability outcomes were worse in patients with distal radial fracture where TFCC was injured [71, 75].

Key Evidence

  • [L5] Acute TFCC injuries require differentiation between those causing distal radioulnar joint instability and those that do not, with management ranging from nonsurgical immobilization to arthroscopic or open surgical repair depending on the specific injury pattern and stability. [1] (10.5435/00124635-200806000-00004)
  • [L5] The article reviews diagnosis, classification, and treatment options including open and arthroscopic techniques for TFCC injuries. [3] (10.1016/j.hcl.2010.07.003)
  • [L4] Surgical treatment of TFCC tears and concomitant pathology in the pediatric and adolescent population results in decreased pain, improved motion and stability, and excellent functional outcomes in the majority of patients. [4] (10.1016/j.jhsa.2019.06.019)
  • [L4] About 40% of patients sustaining TFCC tear without DRUJ instability still had pain and disability at 1 year. [5] (10.1016/j.jhsa.2018.06.064)
  • [L5] Arthroscopic-assisted repair techniques have revolutionized surgical management, providing detailed visualization and facilitating the repair of TFCC injuries and associated pathologies with minimally invasive techniques. [6] (10.1016/j.jhsg.2024.03.011)
  • [L4] Arthroscopic treatment of TFCC lesions leads to satisfactory functional outcomes. [7] (10.1055/s-0039-3400454)
  • [L3] 1B TFCC injury is most common in patients with DRF and concomitant TFCC injury. [8] (10.1186/s13018-023-04438-5)
  • [L4] TFCC repair varies substantially from surgeon-to-surgeon, suggesting repairs are discretionary and preference sensitive. [10] (10.1055/s-0038-1625953)
  • [L4] Careful history and physical examination are required to determine whether a TFCC tear is symptomatic, and it is important to quantify the severity of symptoms related to TFCC pathology to determine whether surgical treatment is necessary. [13] (10.5435/jaaos-d-20-00998)
  • [L4] Current evidence demonstrates that TFCC repair achieves good clinical outcomes, with low complication rates. [14] (10.1055/s-0040-1718913)
  • [L4] The presence of ulnar styloid fracture associated with distal radius fracture predicted the presence of frequently occurring traumatic triangular fibrocartilage complex injury and TFCC 1B injury. [15] (10.1016/j.arthro.2020.05.025)
  • [L3] There was no statistical difference in clinical outcomes after open versus arthroscopic TFCC repair. [17] (10.1016/j.jhsa.2008.01.020)
  • [L2] Classification of central triangular fibrocartilage complex lesions as traumatic or degenerative depends on the information provided upon viewing the lesion at arthroscopy. [18] (10.1177/1753193416684658)
  • [L4] However, coexisting type 2 TFCC tears significantly increased the risk of index surgery failure in these patients. [19] (10.1016/j.arthro.2020.05.012)
  • [L4] Arthroscopy is effective in obtaining both correct diagnosis and treatment of peripheral TFCC tear. [21] (10.2174/1874325001711010525)
  • [L4] There is a high rate of abnormal TFCC identified on MRI in patients without corresponding ulnar-sided wrist symptoms. [22] (10.1177/15589447241277846)
  • [L4] In more detailed classification of TFCC injuries, such as pc-TFCC tears classified by Atzei's classification, the diagnostic accuracy of MRI remains lower compared to wrist arthroscopy. [24] (10.1186/s12891-023-07140-z)
  • [L1] Diagnostic accuracy was highest for central TFCC injuries. [27] (10.1055/s-0038-1629911)
  • [L4] This SR demonstrates a current lack of high-quality evidence required to draw firm conclusions on the merits of arthroscopic versus open repair of 1B TFCC tears. [28] (10.1177/1558944718815244)
  • [L3] Deep TFCC fiber tear may contribute to decreased wrist rotational positioning sense and may have biomechanical importance in distal radioulnar joint stability. [31] (10.1016/j.jhsa.2018.01.022)
  • [L3] Nonsurgical treatment is moderately successful for treating patients with TFCC tears without DRUJ instability. [32] (10.1097/corr.0000000000000533)
  • [L5] [33] (10.1016/j.csm.2019.12.008)
  • [L3] MR arthrography is more sensitive and specific method in terms of the diagnosis of TFCC tears compared to conventional wrist MRI. [36] (10.1016/j.injury.2019.07.032)
  • [L3] We found a higher frequency of accompanying ECU tendon and/or DRUJ disorders in patients with chronic TFCC tears as compared to the control group. [38] (10.1016/j.jhsa.2016.07.040)
  • [Paper] [40] (10.1055/s-0040-1713580)
  • [L4] In high-demand athletes, arthroscopic repair of TFCC tears is becoming the treatment of choice to obtain optimum physiologic strength, complete range of motion, stability, and the shortest possible postoperative period. [41] (10.1016/j.hcl.2009.05.011)
  • [L3] Arthroscopic debridement alone appears to be an effective and safe initial treatment for patients with traumatic central TFCC tears. [45] (10.1302/0301-620x.106b4.bjj-2023-0642.r3)
  • [L3] The Melone classification system does not predict the presence of TFCC lesions, while Frykman Type VI and VIII fractures show a significantly higher incidence of TFCC tears. [51] (10.1177/1753193408090106)
  • [L5] [52] (10.1016/j.hcl.2012.05.014)
  • [L5] [56] (10.1177/1753193409100120)
  • [L2] Load-bearing RaUl measurement is a simple method to diagnose an unstable distal radioulnar joint in patients with TFCC injury. [62] (10.1016/j.jhsa.2022.01.008)
  • [L4] The combined HS and suture repair effectively restores stability to both the DRUJ and UCJ in patients with TFCC-related ulnocarpal instability, considerably reducing pain and preserving range of motion. [64] (10.1016/j.jhsg.2025.100806)
  • [L4] [66] (10.1055/s-0035-1544226)
  • [L3] The sensitivity, specificity, and accuracy of 3.0T wrist MRI for the TFCC is consistently higher compared with those of 1.5T wrist MRI, suggesting improved capability for detection of TFCC injuries. [67] (10.1016/j.jhsa.2008.02.028)
  • [L5] [68] (10.5435/jaaos-d-21-01029)
  • [L3] Nonoperative management of traumatic TFCC injuries with above-elbow immobilization is a viable treatment method, particularly in patients without DRUJ subluxation. [69] (10.1302/0301-620x.103b8.bjj-2020-2310.r2)
  • [L5] A postoperative MRI as a noninvasive tool helps to analyze the integrity of TFCC postrepair and adds to our understanding on the natural course of its healing. [70] (10.1016/j.eats.2025.103568)
  • [L2] Disability outcomes were worse in patients with distal radial fracture where TFCC was injured. [71] (10.1016/j.jht.2017.09.002)
  • [L4] Since ulnar-sided contrast leakage is more common in patients with peripheral TFCC injuries, distinction between an atypical configuration of the prestyloid recess and actual leakage is important in CT arthrography of the wrist. [72] (10.1186/s12891-022-05241-9)
  • [L4] [73] (10.1177/15589447221084125)
  • [L3] The presence of an abnormal TFCC on MRI may be of questionable clinical meaning, because there is a high incidence of TFCC abnormalities in asymptomatic subjects, particularly those over the age of 50. [74] (10.1016/j.jhsa.2011.10.006)
  • [L2] Disability outcomes were worse in patients with distal radius fracture where TFCC was injured. [75] (10.1016/j.jht.2017.09.012)
  • [L3] In the first year after open TFCC reinsertion, 91% of the patients returned to work, including 50% within 12 weeks. [76] (10.1016/j.hansur.2021.03.012)

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