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Does high-resolution MR imaging have better accuracy than standard MR imaging for evaluation of the triangular fibrocartilage complex?

We compared the findings of high-resolution MR imaging and standard MR imaging in the detection of tears of the triangular fibrocartilage in 33 patients with chronic wrist pain on the ulnar side. With arthroscopy as the standard of reference, sensitivity was 100%, specificity 53%, and accuracy 79% with the high-resolution MR imaging, against 83%, 67%, and 76% with the standard MR imaging. High-resolution MR imaging showed a higher sensitivity, but a decreased specificity in the assessment of the triangular fibrocartilage. The results showed that diagnosis of tears in the triangular fibrocartilage by MR imaging, even high-resolution MR imaging, is unsatisfactory, although further technological advances may well improve the accuracy.

Adult↗

Partial excision of the triangular fibrocartilage complex articular disk: a biomechanical study.

A cadaver study was performed to evaluate the effects of partial and complete excisions of the articular disk of the triangular fibrocartilage complex on the kinematics of the distal radioulnar joint and the structural integrity of the triangular fibrocartilage. An excision that did not violate the peripheral 2 mm of the disk and that comprised less than two thirds of the disk area resulted in no significant kinematic or structural changes, but larger excisions produced measurable changes. These results provide further support for limited excision of central triangular fibrocartilage complex tears.

Adult↗

Reconstruction of the triangular fibrocartilage complex after surgery for treatment of synovial osteochondromatosis of the distal radioulnar joint.

Synovial osteochondromatosis of the hand is uncommon, except for tenosynovial chondromatosis of the digits. It is even more rare in the wrist joint. A patient with synovial osteochondromatosis of the distal radioulnar joint that involved the triangular fibrocartilage complex is described. At operation, synovectomy, excision of osteochondral bodies, and removal of the entire triangular fibrocartilage complex was done. The triangular fibrocartilage complex was reconstructed using part of the extensor carpi ulnaris tendon. One year after operation, the patient had regained almost full range of motion and is without pain.

Cartilage, Articular↗

Histologic anatomy of the triangular fibrocartilage.

The collagen arrangement of the triangular fibrocartilage complex was studied in 20 fresh cadaver wrists by means of standard and polarized light microscopy and scanning electron microscopy. The collagen fibres in the articular disk are arranged in undulating sheets oriented at oblique angles to each other. The fibers of the radioulnar ligaments are oriented longitudinally from the radial origin to the ulnar insertion. The origin of the articular disk from the radius is characterized by thick fibers 1 to 2 mm in length radiating from the radius into the articular disk. Five specimens were also injected with india ink. The radioulnar ligaments and the peripheral 15% to 20% of the articular disk are well vascularized, whereas the central 80% of the articular disk is avascular.

Adolescent↗

Histological studies on the triangular fibrocartilage complex of the wrist.

The triangular fibrocartilage complex of the wrist was serially sectioned for routine histology. Results from eight dissecting room cadavers show that the complex is attached to hyaline cartilage on the radius via its articular disc. In contrast, the dorsal and volar radio-ulnar ligaments attach to the radius via zones of calcified and uncalcified fibrocartilage. The articular disc is thus a wide labrum that provides an articular surface for the ulna and for the carpal bones, and the radio-ulnar ligaments strengthen the attachment of the disc to the radius. Medially, the complex divides into upper and lower laminae. Arching strands of collagen fibres emerge from the upper lamina and pass through a region of highly vascular connective tissue to be attached to the ulna between the articular cartilage on the head and that at the tip of the styloid process. Much of the ulnar attachment is via zones of calcified and uncalcified fibrocartilage which blend with the adjacent articular cartilages. Such an arrangement of tissues prevents undue wear and tear at the ulnar attachment zone during pronation and supination of the forearm. The lower lamina blends with the sheath of extensor carpi ulnaris and the ulnar collateral ligament and allows the whole complex to attach to the carpal and metacarpal bones. The meniscus homologue is a region of dense irregular connective tissue with no independent histological identity.

Aged↗

Comparison between high-resolution MRI with a microscopy coil and arthroscopy in triangular fibrocartilage complex injury.

PURPOSE: To determine whether high-resolution magnetic resonance imaging (MRI) could detect injuries to the triangular fibrocartilage complex (TFCC). METHODS: Eleven patients who showed both a positive sign during the ulnocarpal stress test and tenderness at the distal end of the ulna had a high-resolution MRI using a 47-mm diameter microscopy coil. Six regions of the TFCC were investigated for injury: the radial attachment, disc, ulnar attachment of the triangular fibrocartilage (TFC), ulnotriquetral ligament, palmar radioulnar ligament (PRUL), and dorsal radioulnar ligament (DRUL). Arthroscopy was performed subsequently on each patient. RESULTS: For injuries to the radial attachment or the disc of the TFC, a high-resolution MRI showed 100% sensitivity and 100% specificity compared with arthroscopy. In 3 cases in which injury to the ulnar attachment of the TFC was detected with MRI and examination showed a positive piano-key sign and distal radioulnar joint instability, only 1 injury was confirmed with arthrotomy. For MRI diagnosis of an ulnotriquetral ulnolunate attachment injury, the sensitivity was 100% and the specificity was 70%; however, 3 cases had false-positive results. Finally MRI had 100% sensitivity for detecting DRUL and PRUL injuries, although specificities were 75% and 83%, respectively. With MRI there were 2 false-positive DRUL injury diagnoses and 1 false-positive PRUL injury diagnosis. CONCLUSIONS: High-resolution MRI using a microscopy surface coil allowed assessment of each TFCC component and showed a higher accuracy for diagnosing injuries to the radial attachment and the disc of the TFC compared with previous studies. High-resolution MRI, however, was not able to diagnose DRUL, PRUL, or ulnolunate ligament injuries accurately. TYPE OF STUDY/LEVEL OF EVIDENCE: Diagnostic III.

Adolescent↗

The utility of high-resolution magnetic resonance imaging in the evaluation of the triangular fibrocartilage complex of the wrist.

We performed a prospective study in order to assess the utility of high-resolution magnetic resonance imaging in the detection and specific localization of tears of the triangular fibrocartilage complex. Seventy-seven patients who had pain in the wrist were studied with use of a dedicated surface coil and three-dimensional gradient-recalled techniques with a field of view of eight centimeters and a slice thickness of one millimeter. The patients had pain on the ulnar side of the wrist, ligamentous instability, occult ganglia, or a combination of these. Magnetic resonance images were assessed for radial or ulnar avulsion, or both; central defects; degenerative intrasubstance changes; and complex tears of the triangular fibrocartilage complex. Partial tears were differentiated from complete tears. The findings on the magnetic resonance images were then compared with the arthroscopic findings. Fifty-seven of the fifty-nine tears that were suspected on magnetic resonance images were confirmed with arthroscopy; the two suspected tears that were not confirmed had been interpreted as small partial tears on the magnetic resonance images. With use of arthroscopy as the standard, magnetic resonance imaging had a sensitivity of 100 per cent (fifty-seven of fifty-seven), a specificity of 90 per cent (eighteen of twenty), and an accuracy of 97 per cent (seventy-five of seventy-seven) for the detection of a tear (kappa = 0.93, p < 0.00001). Fifty-three of the fifty-seven tears were localized correctly with use of magnetic resonance imaging. With regard to the location of the tear, magnetic resonance imaging had a sensitivity of 100 per cent (fifty-three of fifty-three), a specificity of 75 per cent (eighteen of twenty-four), and an accuracy of 92 per cent (seventy-one of seventy-seven) (kappa = 0.9, p < 0.0001). We concluded that high-resolution magnetic resonance imaging permits accurate depiction and localization of tears of the triangular fibrocartilage complex. When the appropriate pulse sequence is used, magnetic resonance imaging is an accurate and effective method for the non-invasive evaluation of pain in the wrist.

Adolescent↗

Functional anatomy of the triangular fibrocartilage complex.

The functional anatomy of the triangular fibrocartilage complex (TFCC) was investigated in 20 fresh cadavers. Dynamic changes in the TFCC during rotation were also examined from both the proximal and distal aspects. In our analysis, the TFCC was separated into three components. The distal component was stable, functioning like a hammock to suspend the ulnar carpus. The proximal component was the fan-shaped triangular ligament, the true radioulnar ligament. This was found to originate from the fovea of the ulna in a vertical fashion and was easily twisted during rotation. The third component, the ulnar collateral ligament, also twisted during rotation. When analysed by coronal section, the internal portion of the TFCC was found to be loose, and probably serves as a cushion to absorb local deformities in the TFCC during rotation.

Adolescent↗

Histological anatomy of the triangular fibrocartilage complex of the human wrist.

The triangular fibrocartilage complex (TFCC) was studied in serial histological sections of the human wrist to reveal its three-dimensional fine structure. The TFCC consisted of a fibrocartilaginous disc proper and other fibrous components. Three-dimensionally, the distal portion of the TFCC had a hammock-like contour that partially surrounded the carpus; while the proximal ligamentous portion corresponding to the radioulnar ligament connected the radius to the ulna. The radioulnar ligament originated at the ulna from both the fovea and the basistyloid. The fibres first gathered and then bifurcated palmarly and dorsally, enclosing and partially coalescing with the proximal side of the disc before inserting around the distal rim of the sigmoid notch of the radius. The meniscus homologue, which corresponded to the ulnar internal wall of the wrist joint, was derived from a loose synovial fold adapting to the stresses from radioulnar deviation. The distal side of the disc consisted of a dense population of chondrocytes in a collagen matrix, while the proximal side was rather rich in fibres directed radioulnarly. Inside the TFCC were loose connective tissues. The histological arrangement of the TFCC is compatible with its function of supporting the carpus, stabilizing the joints and allowing smooth motion of the wrist.

Adolescent↗

[Arthrography in lesions of triangular fibrocartilage of the wrist (author's transl)].

Arthrography of the wrist is a safe method to demonstrate lesions of the triangular fibrocartilage. Indications are posttraumatic pain and restriction of movement of the wrist. Lesions of the triangular fibrocartilage are caused by a distal fracture of the radius with shortening, sudden drop on the overextended hand and work with rock drills. The extent of injury is quite different: small fissures and splits, detachment of the discus from the lower end of the ulna, fragmentation and destruction of the fibrocartilage. Problems of therapy, however, are greater than problems of diagnosis: actually there is no generally adopted surgical method for the treatment of discus lesions.

Carpal Bones↗

Triangular fibrocartilage injuries in pediatric and adolescent patients.

This is a retrospective review of 29 posttraumatic pediatric and adolescent patients with surgically documented triangular fibrocartilage complex tears. All patients complained of ulnar wrist pain. Fifteen patients (52%) sustained distal radius fracture at the time of the original injury. Twenty-three (79%) of the triangular fibrocartilage complex tears were Palmer 1B lesions. There were 31A, 11C, and 21D lesions. All 1B, 1C, and 1D tears were repaired. Coexisting pathology was present in 25 patients (86%). This pathology included ulnar styloid nonunion, distal radioulnar joint instability, ulnocarpal impaction, distal radius deformity, and intercarpal ligament tears, which were treated by ulnar styloid nonunion excision, distal radioulnar joint stabilization, ulnar shortening, radius corrective osteotomy, and intercarpal ligament debridement, respectively. The length of the follow-up period averaged 21 months. Three patients were lost to follow-up. Outcomes were graded by a modification of the Mayo wrist score. Twenty-four patients (89%) had excellent results, 3 had good results.

Accidental Falls↗

Wrist stability after experimental traumatic triangular fibrocartilage complex lesions.

PURPOSE: The aim of this study was to evaluate changes in stability of the wrist after experimental traumatic triangular fibrocartilage complex lesions. METHODS: Sixteen cadaver wrist specimens were included: 8 were fixed in neutral rotation of the forearm, 4 in maximal supination, and 4 in maximal pronation. The specimens were tested in a multiangle and torque measuring instrument. First the intact specimen was tested, second a dorsal arthrotomy was performed, and the third test was with 1 of 4 different experimental lesions according to Palmer's classification of traumatic triangular fibrocartilage complex lesions (1A-1D). Forced radioulnar deviation and internal/external rotation were recorded with a load of 0.75 Nm in the interval -60 degrees to +60 degrees of flexion. RESULTS: We found the 1C lesion to be highly significantly related to wrist stability. Forced radioulnar deviation and forced internal/external rotation were altered significantly in 35 degrees of wrist extension. The other lesions did not alter the stability of the wrist significantly and the rotation of the forearm had no influence on the outcome. CONCLUSIONS: The 1A lesion does not alter significantly wrist stability and hence the common treatment by a two-third excision of the central part of the disk will not affect wrist stability. A 1C lesion alters significantly the stability of the wrist. At 35 degrees of wrist extension forced radioulnar deviation and forced internal/external rotation were altered significantly; this might be used in a clinical test for a 1C lesion. The rotation of the forearm has no influence on the outcome.

Aged↗

Arthroscopic repair of peripheral avulsions of the triangular fibrocartilage complex of the wrist: a multicenter study.

A multicenter study to assess arthroscopic reconstruction of the peripheral attachment of the triangular fibrocartilage complex was undertaken. A total of 44 patients (45 wrists) from three institutions were reviewed. Twenty-seven of the 45 wrists had associated injuries, including distal radius fracture (4), partial or complete rupture of the scapholunate (7), lunotriquetral (9), ulnocarpal (2), or radiocarpal (2) ligaments. There were two fractured ulnar styloids and one scapholunate accelerated collapse (SLAC) wrist deformity. The peripheral tears were repaired using a zone-specific repair kit. The patients were immobilized in a munster cast, allowing elbow flexion and extension, but no pronation or supination for 4 weeks, followed by 2 to 4 weeks in a short arm cast or VersaWrist splint. All patients were reexamined independently 1 to 3 years postoperatively by a physician, therapist, and registered nurse. The results were graded according to the Mayo modified wrist score. Twenty-nine of the 45 wrists were rated excellent. 12 good, 1 fair, and 3 poor. Overall, 42 of the 45 patients (93%) rated as satisfactory and returned to sports or work activities. One patient had chronic pain, and two patients had ulnar nerve symptoms, although motion was normal in all, and their grip strength was at least 75% of the opposite hand. Arthroscopic repair of peripheral tears of the triangular fibrocartilage complex (TFCC) is a satisfactory method of repairing these injuries.

Adult↗

Arthrography is superior to magnetic resonance imaging for diagnosing injuries of the triangular fibrocartilage.

The ability of single-injection radiocarpal arthrography and magnetic resonance imaging (MRI) to detect full-thickness tears of the triangular fibrocartilage were compared with wrist arthroscopy in 102 patients with wrist pain. The sensitivity of arthrography was 85%, and of MRI was 73%. Specificity was 100% for arthrography and 72% for MRI. Accuracy was 92% for arthrography, and 73% for MRI. Although future advances in MRI technology will probably improve its usefulness, single-injection wrist arthrography currently is superior to routine MRI for the detection of full-thickness triangular fibrocartilage tears.

Adolescent↗

Suture anchor repair of ulnar-sided triangular fibrocartilage complex tears.

Traditional open repair of traumatic triangular fibrocartilage complex (TFCC) tears requires a relatively extensive exposure, and arthroscopic repair, though conceptually simple, can be technically demanding. We describe a mini-open suture anchor technique that, while minimally invasive, is easier to perform than previously described open or arthroscopic techniques. Results achieved using this technique in eight cases compare favourably with those reported for other techniques.

Adult↗

The proximal ligamentous component of the triangular fibrocartilage complex.

The proximal ligamentous component of the triangular fibrocartilage complex (TFCC) was studied anatomically using 15 fresh-frozen cadaver hand forearm specimens. Changes in the length of either side of this component were analysed during forearm rotation with the complete three-dimensional structure of the TFCC preserved. The proximal ligamentous component consists of three portions: dorsal, central and palmar. The dorsal and palmar portions connect the radius and ulna directly. These were recognized in all specimens whereas the central portion was not constant. The morphology of the proximal component was categorized into three types: fan-shaped, V-shaped, and funnel-shaped in five wrists each. Changes in ligament length during forearm rotation were measured using fine wires under slight tension that paralleled the ligaments from origin to insertion. The dorsal and palmar portions demonstrated three trends: the dorsal portion increased in length from supination to pronation whereas the palmar portion increased in length from pronation to supination; the length of the dorsal portion remained almost constant as the palmar portion increased in length from pronation to supination; the length of the palmar portion remained almost constant while the dorsal portion lengthened from supination to pronation. These variations appear to be related to which portion of the ligament was attached nearest to the centre of the ulnar fovea, where the rotational axis of the forearm passes. The portion attaching nearest to the fovea demonstrated a nearly isometric length pattern, whereas the portion which attached at a distance showed greater extensibility. These findings suggest that the proximal component of the TFCC corresponds to a true radioulnar ligament, and the isometric and eccentric fibres act mutually during forearm rotation.

Cadaver↗

Wafer distal ulna resection for triangular fibrocartilage tears and/or ulna impaction syndrome.

Partial resection of the distal ulna (wafer resection) has been used to treat patients with symptomatic tears of the triangular fibrocartilage complex or mild ulna impaction syndrome. In this procedure, the distal 2 to 4 mm of the distal ulnar head is resected while preserving the ulnar styloid process and the ligaments attached to it. The triangular fibrocartilage is debrided, repaired, or partially excised as necessary. The procedure is contraindicated if there is more than 4 mm of positive ulnar variance. Thirteen wafer resections of the distal ulna were performed in 12 patients. All had good to excellent results after a minimum follow-up of 1 year. Wafer resection has specific advantages and avoids many of the potential complications of distal ulna recession and ulnar head resection for patients with the conditions described. The procedure is not indicated if instability or degenerative arthritis of the distal radioulnar joint is present or if there is carpal instability.

Adolescent↗

Ultrasound of intrinsic wrist ligament and triangular fibrocartilage injuries.

OBJECTIVE: The objective of this study was to evaluate ultrasound as a diagnostic tool for investigating scapholunate and lunatotriquetral ligamentous and triangular fibrocartilage (TFC) tears. Ultrasound findings were compared to conventional arthrogram findings, as the reference gold standard. DESIGN AND PATIENTS: In total 26 patients, 17 males and 9 females ranging in age from 17 to 35 (mean age, 34), were evaluated on referral for investigation of wrist pain. All patients were examined by high resolution ultrasound, using a 9-13 MHz transducer. All wrist ultrasound examinations were also compared to conventional tricompartmental arthrography, as the diagnostic gold standard reference. RESULTS: All ten scapholunate tears confirmed on arthrography were detected on ultrasound. Two of 8 lunatotriquetral and 7 of 11 TFC tears were correctly diagnosed on ultrasound. Sensitivity of ultrasound diagnosis ranged from 25% for lunatotriquetral tears to 100% for scapholunate tears. No false positive results were recorded for any of the three examined structures. CONCLUSION: The study results suggest that sonography is accurate for scapholunate tears, but is not accurate for evaluation of lunate-triquetral tears. It has intermediate accuracy for triangular fibrocartilage tears.

Adolescent↗