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Healing of the medial collateral ligament in rats. The effects of repair, motion, and secondary stabilizing ligaments.

The effects of repair, motion, and the integrity of the secondary ligamentous restraints on healing of the medial collateral ligament were studied in a rat model. Healing was assessed by measuring ligamentous laxity and tensile strength. All healing ligaments were weaker and more lax than their controls. Repair did not have a statistically significant effect on the laxity or the strength of the medial collateral ligament. Allowing active motion had a statistically significant beneficial effect on the strength of the medial collateral ligament. Stability was adversely affected by active motion if the secondary restraints had been transected; however, when the secondary ligamentous restraints were intact, active motion was beneficial and immobilization was harmful.

Animals↗

Pregnancy affects cellular activity, but not tissue mechanical properties, in the healing rabbit medial collateral ligament.

Recently, evidence has been accumulating that ligament and joint laxity is altered in women and rabbits during pregnancy. Furthermore, many female adolescents injure ligaments through participation in athletics and other activities. Therefore, to determine whether pregnancy has different effects on the injured and uninjured medial collateral ligament of the rabbit knee, we investigated cellular changes (mRNA levels) and alterations in tissue properties (biomechanics) accompanying pregnancy in animals with the medial collateral ligament injured during adolescence and bred for their primigravid pregnancy as young adults. Assessment of mRNA levels for matrix molecules, matrix metalloproteinases and tissue inhibitor of metalloproteinase-1, growth factors and sex hormone receptors, inflammatory cytokines, inducible nitric oxide synthase, and cyclooxygenase-2 by semiquantitative reverse transcription-polymerase chain reaction revealed that pregnancy had different impacts on scar and uninjured tissue for six of 15 genes assessed. A pregnancy-associated increase in laxity of the medial collateral ligament was observed for rabbits in the uninjured primigravida group; however, no increase was observed for injured rabbits during pregnancy. The injured ligament was already significantly more lax than the normal counterpart, and pregnancy did not lead to additional laxity or prevent the normal decline in laxity as the scar matured in nonpregnant animals. These results indicate that the impact of pregnancy on laxity and cell activity of the medial collateral ligament is dependent on whether the ligament is uninjured or injured. Pregnancy had no significant effect on structural (stiffness and failure load), material (stress at failure and Young's modulus), or viscoelastic (cyclic and static relaxation) properties of tissue from uninjured or injured medial collateral ligament. Therefore, the properties of the healing ligament were not adversely affected during pregnancy in this experimental model. However, it remains to be determined if these results with an injured medial collateral ligament can be extrapolated to the injured anterior cruciate ligament.

Animals↗

[Repair of collateral ligament rupture in the interphalangeal joint using superficial flexor tendon of finger].

OBJECTIVE: To introduce the surgical procedure and clinical result of microsurgical repair on collateral ligament rupture in the interphalangeal joint using superficial flexor tendon of finger. METHODS: From 1987, 23 cases with collateral ligament rupture in the interphalangeal joint were repaired by part of superficial flexor tendon of finger. The initial point of collateral ligament was drilled two holes, 2 to 3 mm in distance, and crossed by steel wire. Then the superficial flexor tendon of finger was crossed under the steel wire and sutured to the terminal point of superficial flexor tendon of finger by 5/0 to 7/0 nontraumatic suture thread to maintain suitable tension, and sutured to collateral ligament by 8/0 nontraumatic suture thread. Extension splint fixation was performed 4 to 6 weeks postoperatively. RESULTS: Followed up 3 to 6 months, 15 cases were excellent, 6 cases were better, 2 cases were moderate, and the excellent rate was 91.34% according to Saetta standard. CONCLUSION: Microsurgical repair on collateral ligament rupture in the interphalangeal joint using superficial flexor tendon of finger is a convenient and effective surgical method.

Adolescent↗

Ultrasonographic detection of thumb ulnar collateral ligament injuries: a cadaveric study.

Ten fresh-frozen cadaveric thumbs were utilized to determine whether ultrasound is a useful tool for diagnosing ruptures of the ulnar collateral ligament. The integrity of the ulnar collateral ligament was evaluated by ultrasound and confirmed by dissection. Partial ruptures were produced by gentle manual loading in four of the cases and were all correctly diagnosed by ultrasound. Six complete ruptures occurred secondary to forceful loading and were diagnosed as torn in five of them. Ultrasound correctly determined the presence of an iatrogenic Stener's lesion in one specimen and an intra-articular displacement in another. In the laboratory setting, repeated clinical stress examinations of the ulnar collateral ligament can lead to iatrogenic displacement of the ligament edges. Diagnostic ultrasound is a useful, noninvasive tool for assessing the extent of rupture of the ulnar collateral ligament.

Adult↗

Mobility of the ankle joint: recording of rotatory movements in the talocrural joint in vitro with and without the lateral collateral ligaments of the ankle.

A method for graphic recording of rotatory movements in osteoligamentous ankle preparations is described. By this method it is possible to record characteristic mobility patterns in two planes at the same time. The ankle is affected by a known torque, so that the individual mobility patterns are reproducible with unchanged condition of the ligaments. Six amputated legs were investigated in the sagittal and horizontal planes and another six in the sagittal and frontal planes. Mobility patterns were recorded with intact ligaments and after successive cutting of the lateral collateral ligaments of the ankle in the anteroposterior direction. In the sagittal plane increased dorsiflexion was observed after total cutting of the lateral ligaments, while plantar flexion remained unchanged. In the horizontal plane the internal rotation of the talus increased in step with increasing injury to the ligament, particularly when the ankle was plantar flexed. When all collateral ligaments had been cut, an increase in external rotation occurred, especially in dorsiflexion. In the frontal plane the talar tilt increased gradually with increasing injury to the ligaments. Talar tilt was at a maximum in the neutral position of the ankle or in plantar flexion. After total severing of the collateral ligaments, however, talar tilt was most marked in dorsiflexion of the ankle.

Ankle Joint↗

Ulnar collateral ligament reconstruction in high school baseball players: clinical results and injury risk factors.

BACKGROUND: The incidence of ulnar collateral ligament injury has increased in baseball, especially at the high school level. HYPOTHESIS: Ulnar collateral ligament injury in high school baseball players is associated with overuse, high-velocity throwing, early throwing of breaking pitches, and improper warm-ups. STUDY DESIGN: Retrospective cohort study. METHODS: Follow-up physical examination and questionnaire data were collected at an average of 35 months after ulnar collateral ligament reconstruction from 27 former high school baseball players. Six potential risk factors were evaluated: year-round throwing, seasonal overuse, event overuse, throwing velocity more than 80 mph, throwing breaking pitches before age 14, and inadequate warm-ups. RESULTS: Overall, 74% returned to baseball at the same or higher level. Patients averaged 3 potential risk factors, and 85% demonstrated at least one overuse category. Of the pitchers, the average self-reported fastball velocity was 83 mph, and 67% threw breaking pitches before age 14. CONCLUSIONS: The success rate of ulnar collateral ligament reconstruction in high school baseball players is nearly equal to that in more mature groups of throwers. Overuse of the throwing arm and throwing breaking pitches at an early age may be related to their injuries. Special attention should be paid to elite-level teenage pitchers who throw with high velocity.

Adolescent↗

Experimental repair of the medial collateral ligament of the knee in rabbits.

In order to know the reparative process of the bone-ligament junction of the medial collateral ligament, the mechanical properties and histological findings of the medial collateral bone-ligament-bone preparations from adult rabbits were examined at 2, 4, 6, 8, 12, 16, 20 postoperative weeks. There were certain relations between the histological findings and the strength of the repaired medial collateral ligaments, but the healing process of the mechanical properties was slower and at half a year follow up the maximum load could only reach 3/4 of the control.

Animals↗

[Lesions of the collateral ligaments of the ankle: diagnosis and follow-up with magnetic resonance and ultrasonography].

Acute sprains are one of the most frequent ankle conditions; the lateral collateral ligaments are often involved. Currently, plain radiography and clinical examination are the methods of choice in the management of these injuries. This study was aimed at describing the MR findings of acute ankle sprains, to assess which ligaments are involved, to study the repair process during conservative treatment and, finally, to compare MR and US findings in acute and chronic injuries. We divided our study into a prospective and a retrospective parts. In the prospective study, MRI was performed in 20 consecutive patients with acute ankle sprain diagnosed at the emergency care unit of our institute and treated conservatively with braces. The patients with fractures were excluded. Follow-up was based on a series of MR exams performed every 30 days for 6 months. We diagnosed 18 injuries of the lateral collateral ligaments, 5 of the anterior talofibular ligament (ATFL) (2 partial and 3 complete tears) and 13 of both the ATFL and the calcaneofibular (CFL) (6 partial and 7 complete tears). The follow-up showed complete edema resorption at 30 days in 2 patients with no ligament injuries; the persistence of a medium-large amount of fluid in partial tears at 30 days and its complete resorption at 60 days; and, finally, the persistence of a medium-large amount of fluid at 180 days in 2 complete tears. No scar could be identified in all the patients with ligament injuries. The retrospective study was based on the comparison of MR (gold standard) and US findings in 78 patients with ankle sprain, 28 in the acute and 50 in the chronic phase. In the first group we found 9 ATFL injuries (6 partial and 3 complete tears), 5 ATFL and CFL injuries (3 partial and 2 complete tears), 2 complete tears of lateral collateral ligaments, 3 deltoid ligament (DL) injuries, 2 ATFL and DL injuries and 2 injuries of both lateral and medial collateral ligaments. US was in agreement with MRI in 85% of ATFL, 67% of CFL and 28% of DL injuries; US also yielded 2 false positives in PAA. In the second group of 50 patients, MRI showed 11 ATFL and 8 ATFL and CFL injuries, 3 injuries of lateral collateral ligaments, 6 DL and 8 ATFL, CFL and DL injuries and 5 complete tears of both internal and external collateral ligaments; 10 exams were negative. US had 58% agreement with MRI in ATFL, 46% in CFL and 21% in DL injuries. In this series, US yielded 3 false positives in PAA injuries.

Adolescent↗

Posterior olecranon resection and ulnar collateral ligament strain.

Valgus extension overload is well described in the throwing athlete. The surgical treatment involves posterior olecranon osteophyte resection. It is not known how much of the posterior olecranon can be resected before increased stress is placed on the ulnar collateral ligament. Ten cadaveric arms underwent posterior olecranon resection in 4-mm increments. After each bone resection, three different valgus loads were applied to the elbow at 70 degrees and 90 degrees of flexion. Ulnar collateral ligament strain significantly increased with each load. Significantly more strain occurred on the ulnar collateral ligament at 90 degrees compared with 70 degrees of elbow flexion. This difference may be the result of the relative importance of the ulnar collateral ligament and the posterior olecranon at different positions of elbow flexion. The strain on the ulnar collateral ligament was slightly higher after the 8-mm and 12-mm cuts but not statistically significant. This study suggests that at moderate quasistatic valgus loads, ulnar collateral ligament strain is not significantly increased with posterior olecranon resection.

Adult↗

Stability after medial collateral ligament release in total knee arthroplasty.

Six knees from cadavers were tested for change in stability after release of the medial collateral ligament with posterior cruciate-retaining and substituting total knee replacements. Load deformation curves of the joint were recorded in full extension and 30 degrees, 60 degrees, and 90 degrees flexion under a 10 N-m varus and valgus torque, 1.5 N-m internal and external rotational torque, and a 35 N anterior and posterior force to test stability in each knee. The intact specimen and posterior cruciate ligament-retaining total joint replacement were tested for baseline comparisons. The superficial medial collateral ligament was released, followed by release of the posterior cruciate ligament. The knee then was converted to a posterior-stabilized implant. After medial collateral ligament release, valgus laxity was statistically significantly greater at 30 degrees, 60 degrees, and 90 degrees flexion after posterior cruciate ligament sacrifice than it was when the posterior cruciate ligament was retained. The posterior-stabilizing post added little to varus and valgus stability. Small, but significant, differences were seen in internal and external rotation before and after posterior cruciate ligament sacrifice. The posterior-stabilized total knee arthroplasty was even more rotationally constrained in full extension than the knee with intact medial collateral ligament and posterior cruciate ligament.

Arthroplasty, Replacement, Knee↗

Elongation patterns of the collateral ligaments of the human knee.

OBJECTIVE: To determine the responses of the medial and lateral collateral ligaments (MCL, LCL) of the human knee to externally applied stresses. DESIGN: Differential variable reluctance transducers were used to measure length changes along the long posterior parallel fibers of the MCL and the middle third of the LCL through a flexion range of 15-120 degrees and a variety of external stresses. BACKGROUND: There is a lack of consensus regarding the collateral ligament response to internal and external tibial rotation. In addition, there are very few studies that have investigated the effects of quadriceps and hamstrings muscle group loads on the strain in the collateral ligaments. METHODS: Three series of tests were performed. First, the passive behavior of the ligaments was obtained as well as the ligament response to 3 degrees of varus and valgus rotation. The next series tested the ligaments' response to 0-10 degrees of internal and external tibial axial rotation. Finally, isolated and co-contracted quadriceps and hamstrings muscle group loads were applied. RESULTS: The instrumented portions of both ligaments were more strained in extension than flexion. Varus rotations stretched the LCL, whereas valgus rotations elongated the MCL. The strain in the MCL was shown to increase during external rotation and decrease during internal rotation. The LCL did not exhibit a uniform response across specimens to internal or external tibial axial rotation, but was consistent between left and right knees from a single cadaver. Highly consistent trends of interactions between muscle loads and the strain in both the MCL and LCL were noted. CONCLUSIONS: The responses of the MCL and LCL to applied stresses are dependent upon the flexion angle of the knee, the influence of muscle loading and, to a lesser extent, anatomic variation in the ligaments themselves. Guidelines for rehabilitation of the collateral ligaments following injury are suggested.

Journal Article↗

Undersurface tear of the ulnar collateral ligament in baseball players. A newly recognized lesion.

Seven patients were diagnosed with an undersurface tear of the deep capsular layer of the anterior bundle of the ulnar collateral ligament. Preoperatively, all of the patients had tenderness over the anterior bundle of the ulnar collateral ligament and pain with valgus stressing of the elbow. Six of the seven patients had a normal magnetic resonance imaging scan, with one magnetic resonance imaging scan showing degeneration within the ligament. All of the patients had a negative computed tomography arthrogram for extracapsular contrast extravasation. A consistent finding in five of the seven patients was a leak of contrast around the edge of the humerus or ulna, although the contrast was contained within the joint. At arthroscopic evaluation, all of the patients demonstrated medial elbow instability as valgus stress was applied across the elbow joint in 70 degrees of flexion. All of the patients underwent open medial elbow surgery, where the ulnar collateral ligament was visualized and found to be intact externally. But when the anterior bundle was incised, there was a detachment of the undersurface of the ligament at the ulna or the humerus. Cadaveric dissections were performed to define the anatomy of the insertion sites and to confirm that this lesion was not an anatomic variant. A tear of the deep layer of the ulnar collateral ligament can result in symptomatic instability that is difficult to diagnose with conventional preoperative testing. This lesion of the anterior bundle of the ulnar collateral ligament has not been previously reported, and in our series it was associated with persistent medial elbow pain in throwing athletes.

Adult↗

The natural history of bone bruises. A prospective study of magnetic resonance imaging-detected trabecular microfractures in patients with isolated medial collateral ligament injuries.

We conducted a prospective study to evaluate bone bruises, or trabecular microfractures, associated with isolated medial collateral ligament injuries. Magnetic resonance imaging was performed on 65 patients with isolated medial collateral ligament injuries determined by physical examination and imaging studies. Of these 65 patients, 29 (45%) had associated trabecular microfractures. Follow-up images were completed at various intervals on 24 of these 29 patients (83%). Complete resolution of these lesions was observed in all cases. This process appears to occur as a result of gradual diffusion over a period of 2 to 4 months. Bone bruises associated with medial collateral ligament injuries are approximately one-half as common as bone bruises associated with anterior cruciate ligament injuries. However, medial collateral ligament-associated trabecular microfractures may be a better natural history model because these injuries are treated nonoperatively.

Adolescent↗

Reconstruction of the ulnar collateral ligament of the thumb metacarpophalangeal joint: a cadaver study.

PURPOSE: The purpose of this study was to compare the stiffness and strength of the native ulnar collateral ligament with 4 methods of static ulnar collateral ligament (UCL) reconstruction at the thumb metacarpophalangeal (MCP) joint. METHODS: Eleven fresh-frozen cadaver specimens were amputated at the carpometacarpal and interphalangeal joints and all soft tissues were removed except for the extensor pollicis brevis tendon, the proper and accessory collateral ligaments, and the volar plate. Each thumb metacarpal was potted in cement and the native UCL was loaded to failure at 30 degrees of MCP flexion. Ulnar collateral ligament reconstructions as described by Strandell, Osterman, Fairhurst, and a modification of the Glickel procedure then were performed. Each specimen was again loaded to failure and the moment at failure, stiffness, and angle at failure were calculated. RESULTS: None of the reconstructions duplicated the strength or stiffness of the native UCL. The modification of the Glickel procedure with interference knot fixation had a significantly higher moment at failure and was significantly stiffer than any of the other procedures. The differences in strength and stiffness between the Strandell, Osterman, and Fairhurst reconstructions were not statistically significant. There were no significant differences in angle at failure for any of the reconstructions. CONCLUSIONS: No static ligament reconstruction restores the normal stability characteristics of the thumb UCL. The anatomic reconstruction of the UCL with interference knot fixation of the tendon graft has far better strength and stiffness than any of the other reconstructions tested. These characteristics may allow for early motion at the MCP joint.

Cadaver↗

Synergistic effect of growth factors on cell outgrowth from explants of rabbit anterior cruciate and medial collateral ligaments.

Cellular migration and proliferation are integral aspects of wound healing. An in vitro assay for cellular migration and proliferation using explants of rabbit anterior cruciate and medial collateral ligaments was developed previously. This study presents the effects of serum-free culture medium supplemented with basic fibroblast growth factor, bovine insulin, transforming growth factor-beta 1, and platelet-derived growth factor-B, added either individually or in combination, on cell outgrowth in explants of rabbit anterior cruciate and medial collateral ligaments. Outgrowth was assessed at 3 and 6 days by counting the number of cells surrounding the tissue explants. For explants of both ligaments, cell outgrowth was dependent on the presence of 10% fetal bovine serum or the combination of growth factors. Little outgrowth occurred in explants of either ligament in the presence of basic fibroblast growth factor, transforming growth factor-beta 1, or bovine insulin. Platelet-derived growth factor-B at concentrations of 20 and 100 ng/ml seemed to increase cell outgrowth from medial collateral ligament explants at 6 days. The outgrowth from the explants of both ligaments was much greater in the presence of all four growth factors than the sum of the outgrowth with the individual factors. This synergistic effect was as much as 10-fold and 20-fold for the anterior cruciate ligament explants at days 3 and 6, respectively, but no more than 3-fold for the medial collateral ligament explants at these times. Medial collateral ligament explants exhibited greater cell outgrowth than anterior cruciate ligament explants in 10% serum and in the presence of the four growth factors.

Animals↗

Atraumatic medial collateral ligament oedema in medial compartment knee osteoarthritis.

OBJECTIVE: To describe and determine the prevalence of atraumatic medial collateral oedema identified in patients with medial compartment osteoarthritis. DESIGN AND PATIENTS: Sixty patients, 30 patients with medial compartment knee osteoarthritis (Kellgren and Lawrence grade 2 to 4) and 30 age-matched patients with atraumatic knee pain without osteoarthritis, referred for MR imaging over a 2 year period were included in the study. In each case, severity of osteoarthritis was recorded on radiographs and correlated with the presence or absence of medial collateral ligament oedema at MR imaging. RESULTS: Medial collateral oedema was identified in 27 of the 30 patients with osteoarthritis, of whom 14 had grade 1 oedema and 13 had grade 2 oedema compared with the presence of medial collateral ligament oedema (grade 1) in only two of the 30 control patients without osteoarthritis ( P<<0.0001). CONCLUSION: Medial collateral oedema is common in patients with osteoarthritis in the absence of trauma. When identified, medial collateral ligament oedema should be considered to be a feature of osteoarthritis and should not be incorrectly attributed to an acute traumatic injury.

Edema↗

Force measurements on the fibular collateral ligament, popliteofibular ligament, and popliteus tendon to applied loads.

BACKGROUND: Little information is known about the forces seen on the main individual structures of the posterolateral knee to applied loads. This information is needed to determine which structures should be reconstructed and also the relative strengths needed for reconstruction grafts. PURPOSE: To determine in vitro forces in the fibular collateral ligament, popliteofibular ligament, and popliteus tendon for various posterolateral knee loading conditions. STUDY DESIGN: Cadaveric study. RESULTS: The fibular collateral ligament was loaded in varus, internal rotation, and external rotation. The highest amount of force seen on the fibular collateral ligament was at 0 degrees of knee flexion with external rotation, with the mean load response to external rotation significantly less at 90 degrees . Fibular collateral ligament varus load response at 0 degrees , 30 degrees , and 60 degrees was fairly constant, with a significant decrease at 90 degrees compared to 30 degrees of knee flexion. The popliteus tendon and popliteofibular ligament were loaded with an external rotation moment and were noted to have similar loading patterns. The mean load response on both the popliteus tendon and the popliteofibular ligament peaked at 60 degrees of knee flexion. The mean popliteus tendon and popliteofibular ligament load response at 0 degrees was significantly less than the mean load response at 30 degrees , 60 degrees , and 90 degrees of knee flexion. CONCLUSIONS: High relative loads were seen on the fibular collateral ligament with varus and external rotation and on the popliteus tendon and popliteofibular ligament, with external rotation. A reciprocal relationship of load sharing in external rotation depending on knee flexion angle was revealed that has not been previously reported. The force on the fibular collateral ligament with external rotation loads was higher than the load on the popliteus complex at lower flexion angles, with the popliteus complex having higher load sharing at 60 degrees and 90 degrees of knee flexion. These results provide a measure of the potential for failure of these structures with joint loading and guidelines for both graft strength requirements for surgical reconstructions and postoperative rehabilitation protocols.

Biomechanical Phenomena↗

Relationship of ulnar collateral ligament strain to amount of medial olecranon osteotomy.

Athletes at risk for valgus extension overload are also at risk for tears of the anterior bundle of the ulnar collateral ligament. Some athletes develop ligament tears after procedures for valgus extension overload such as posteromedial olecranon osteotomy. The amount of posteromedial olecranon that can be resected before ulnar collateral ligament strain, and risk of injury, increases is unknown. We dissected and mounted five fresh-frozen human cadaveric elbows to allow strain gauge monitoring of the ulnar collateral ligament with varying valgus stress, elbow flexion angle, and medial osteotomy. The average strain to failure was 11.96%+/-6.51%, corresponding to a load of 347.71+/-46.42 N. The maximum tensile force recorded at failure was 416.24 N. Three-way repeated-measures analysis of variance revealed no significant change in strain with change in the amount of osteotomy for a given applied load and angle of flexion. On the basis of these data, we conclude that the effect of medial olecranon osteotomy on ulnar collateral ligament strain may be small. Small sample size, elderly specimens, and the variables inherent in the experimental setup and mathematical modeling make it difficult to extrapolate these results to in vivo behavior of the anterior ulnar collateral ligament. Further work is needed before definitive guidelines for olecranon osteotomy can be formulated.

Collateral Ligaments↗