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At least 145 records · Page 8Linked to original sources

Reconstruction of the anterior cruciate ligament using the polyester ABC ligament scaffold: a minimum follow-up of four years.

We carried out a prospective study of 71 patients who had undergone reconstruction of the anterior cruciate ligament with the ABC scaffold. Their mean age was 28 years (18 to 50). All had either sub-acute or chronic traumatic deficiency of the ligament. The mean period of follow-up was five years (four to seven). Assessment included the use of the International Knee Documentation Committee score, the modified Lysholm score, the Tegner Activity score, the Knee Injury and Osteoarthritis Outcome score and measurement with the KT-1000 arthrometer. Two patients had mild recurrent synovitis. There were no infections and no failures of the ligament. During the period of study, two patients sustained a traumatic fracture of a femoral condyle. The implants retained their integrity in both cases. All patients returned to their previous or enhanced levels of daily activity by three months after operation and 56 (79%) achieved their pre-injury level of sporting activity by six months. The patients who were competing in National level sports returned to play at one level less after operation than before. The Lysholm score showed that 58% of the patients (41) were excellent, 34% (24) good, and 8% (6) fair, with a mean post-operative score of 93. According to the International Knee Documentation Committee score, 35% of knees (25) were 'normal', 52% (37) 'nearly normal' and 13% (9) 'abnormal'. Complete satisfaction was noted in 90% of patients (64). The development of osteoarthritis and the management of anterior cruciate deficiency associated with laxity of the medial collateral ligament remains uncertain. Our results indicate that in the medium-term, the ABC ligament scaffold is suitable and effective when early and safe return to unrestricted activities is demanded. We acknowledge the current general hostility towards reconstruction of the anterior cruciate ligament with artificial materials following reports of early failure and chronic synovitis associatiated with the production of particulate debris. We did not encounter these problems.

Adolescent↗

[Reconstruction of the anterior cruciate ligament with artificial ligament (Ligastic). Clinical results in 72 patients].

INTRODUCTION: The purpose of the study was to evaluate the anatomical and functional results of Anterior Cruciate Ligament reconstruction with the synthetic ligament Ligastic. MATERIAL AND METHODS: 72 patients have been reviewed clinically and radiologically and their functional abilities have been evaluated with Lysholm and Arpege score. 46 have been operated for recent ruptures (group A) and 26 for chronic ACL tears (group B). Follow up was 2 to 4,5 years. RESULTS: The results showed in group A a Lachman test > 3 mm in 57 per cent cases, a positive pivot shift in 29 per cent and ruptures of the ligament in 22 per cent. In group B, the Lachman test was > 3 mm in 47 per cent of the cases the pivot shift was positive in 54 per cent and the rupture of the ligament occurred in 35 per cent. The functional evaluation showed that only one third was stable but painful, and one third was unstable and painful. DISCUSSION: As many authors, we found an increase of bad anatomical and functional results with time. The ligament can't be considered as a scaffold for ingrowth tissue. Two thirds of the patients had painful knees at effort. CONCLUSION: The high percentage of ruptures of the ligament, and the non satisfactory functional results led us not to recommend the ACL reconstruction with a Ligastic implant.

Adolescent↗

[Diagnosis and therapy of the rupture of both cruciate ligaments, the medial collateral ligament and abscission of both menisci in a ram. A case report].

This report describes the case history of a 1.5-year-old ram admitted to the Clinic for Food Animals and Horses, University of Berne, Switzerland, because of an acute severe lameness of the left rear limb. Clinical and radiographic examination revealed disruption of the stifle joint with rupture of both cruciate ligaments, the medial collateral ligament, and disruption of both menisci from their attachments. The ruptured ligaments were replaced by synthetic ligament prostheses. Long-term examination at 12 months after implantation revealed slight instability of the stifle joint, caused by degeneration of the medial meniscus, and signs of arthrosis deformans. The new formed periarticular connective tissue contributed to the stability of the stifle joint, so that a good functional result was achieved. Necropsy findings at 14 months after implantation confirmed that the synthetic ligament prostheses were intact and the medial meniscus was detached from its insertion and incorporated into the joint capsule. At microscopic examination of the synthetic band prosthesis, ingrowth of collagen and fibrous tissue was evident.

Animals↗

A study of the synovial and ligamentous structure of the anterior cruciate ligament.

The synovial and ligamentous structure of 16 human anterior cruciate ligaments (ACL), removed at autopsy, were examined by light microscopy with special regard to their topographical relationships. The soft tissue support of the ACL consists of fibrous, areolar and areolo-adipose synovial tissue. The subsynovial layer comprises a tight fibrous peripheral part and an element of loose connective tissue containing some tight connective tissue strands, vessels and nerves. The collagenous ligamentous part of the ACL is the proper functional tissue and contains approximately 1500 fascicles measuring an average of 250 micron in diameter. These fascicles are composed of bundles of collagen fibres, fibrocytes and deposits of proteoglycans. The synovial and ligamentous structures are attached by the second part of the subsynovial layer, which radiates into the ligamentous tissue and envelops the fascicles like a sheath. By this means the biological connection between these two structures is guaranteed. The relevance of these findings to operative reconstruction of recent ligamentous injuries is discussed.

Adult↗

[A new drill guide for plastic repair of the anterior cruciate ligament by a free ligamenteous graft (author's transl)].

A report of the most widely used grafts for the replacement of the anterior cruciate ligament shows the difficulties of plastic repair. The author recommends the patella ligament used by Brückner but, because of the relative shortness of this ligament, not as a distally based ligamenteous graft but as a free one. The exact topography of the anterior cruciate ligament is given. A new drill guide for repair of this ligament is described and the technique of implantation by making use of that drill guide is explained.

Humans↗

Effects of ligament repair on laxity and creep behavior of an early healing ligament scar.

BACKGROUND: Previous clinical studies have reported that conservatively managed medial collateral ligament (MCL) injuries remained unstable 9 years post injury with subjective complaints of muscle weakness, reinjuries, and post-traumatic osteoarthritis. Animal studies have also reported that healing MCLs were weaker and more lax than controls. Therefore, our purpose was to study the early effects of ligament repair on scar laxity, creep, and creep recovery in a rabbit model of bilateral medial collateral ligament (MCL) injury. METHODS: Each rabbit had one MCL cut in midsubstance which was not repaired, while the other MCL had a sagittal Z-plasty repair. Six weeks after surgery, isolated bone-MCL-bone complexes were biomechanically tested for MCL laxity, cyclic creep, creep recovery, and then loaded to ultimate failure. RESULTS: Nonrepaired scars were significantly more lax than both repaired Z-plasty scars and normal controls. In contrast, there was no significant difference in MCL laxity between repaired scars and normal controls. There were no significant differences between nonrepaired or repaired scars for either cyclic creep and creep recovery. Both crept significantly more and recovered significantly less than normal controls after the same load history. There were no significant differences in the failure load, stiffness, and tensile strength between gap scars and Z-plasty scars. All healing ligaments had significantly lower failure load, stiffness, and tensile strength than normal controls. CONCLUSIONS: The present study demonstrates that ligament repair is effective in decreasing short-term laxity of ligament scars. These 6-week scars would be prone to abnormal creep if loaded excessively.

Animals↗

Evaluation of "neocollateral" ligament formation by magnetic resonance imaging after total excision of the proximal interphalangeal collateral ligaments.

The presence of palpable thickening and maintenance of stability within weeks of total excision of the proximal interphalangeal (PIP) joint collateral ligaments is an established, although somewhat mysterious, phenomenon. To further investigate this postoperative thickening, magnetic resonance imaging (MRI) scans were obtained on 10 joints in 9 patients who had undergone total ligament excision for posttraumatic stiff PIP joints 3 months to 14 years earlier. Although the ultrastructure of these newly formed structures is yet unknown, their palpable consistency, MRI contour, distribution, and signal intensity suggest the formation of a new soft tissue structure, albeit scar, which has all the attributes of a collateral ligament. This MRI of a "neocollateral ligament" would help explain the consistent observation of complete joint stability within weeks following total excision of both PIP joint collateral ligaments. All patients from the 14-year span sampled were found to have a similar, consistent, linear low signal density structure crossing the joint margins and essentially identical to that of a normal collateral ligament.

Adult↗

Ligament creep recruits fibres at low stresses and can lead to modulus-reducing fibre damage at higher creep stresses: a study in rabbit medial collateral ligament model.

Ligaments are subjected to a range of loads during different activities in vivo, suggesting that they must resist creep at various stresses. Cyclic and static creep tests of rabbit medial collateral ligament were used as a model to examine creep over a range of stresses in the toe- and linear-regions of the stress-strain curve: 4.1 MPa (n = 7), 7.1 MPa (n = 6), 14 MPa (n = 9) and 28 MPa (n = 6). We quantified ligament creep behaviour to determine if, at low stresses, modulus would increase in a cyclic creep test and collagen fibres would be recruited in a static creep test. At higher creep stresses, a decrease in measured modulus was expected to be a potential marker of damage. The increase in modulus during cyclic creep and the increase in strain during static creep were similar between the three toe-region stresses (4.1, 7.1, 14 MPa). However, at the linear-region stress (28 MPa), both these parameters increased significantly compared to the increases at the three toe-region stresses. A concurrent crimp analysis revealed that collagen fibres were recruited during creep, evidenced by decreased area of crimped fibres at the end of the static creep test. Interestingly, a predominance of straightened fibres was observed at the end of the 28 MPa creep test, suggesting a limited potential for fibre recruitment at higher, linear-region stresses. An additional 28 MPa (n = 6) group had mechanically detectable discontinuities in their stress-strain curves during creep that were related to reductions in modulus and suggested fibre damage. These data support the concept that collagen fibre recruitment is a mechanism by which ligaments resist creep at low stresses. At a higher creep stress, which was still only about a third of the failure capacity, damage to some ligaments occurred and was marked by a sudden reduction in modulus. In the cyclic tests, with continued cycling, the modulus increased back to original values obtained before the discontinuity suggesting that other fibres were being recruited to bear load. These results have important implications for our understanding of how fibre recruitment and stress redistribution act in normal ligament to minimize creep and restore modulus after fibre damage.

Animals↗

Collagens in an adult bovine medial collateral ligament: immunofluorescence localization by confocal microscopy reveals that type XIV collagen predominates at the ligament-bone junction.

To understand the structure and function of medial collateral ligament, collagens present in an adult bovine ligament were determined. The mid-section of the ligament was powdered and extracted with 4M guanidinium hydrochloride, and the residue was digested with pepsin to solubilize the collagens. Type I collagen was the major fibril collagen recovered in the pepsin solubilized fraction, with types III and V each representing about 5% and 2%, respectively. Type VI collagen was the major collagen present in the guanidinium hydrochloride extract, and it accounted for about 40% of the proteins in the extract or 4% of the tissue dry weight. Type XII and XIV collagens were also detected in the guanadinium hydrochloride extract as minor components. Immunofluorescence localization using confocal microscopy showed that type XII and XIV collagens are associated with the ligament fibrillar network and that type XIV collagen was prominent at the ligament-bone junction. These data reinforce the notion that these collagens are associated with the type I collagen fibrillar network in connective tissues. In view of high mechanical stresses that exist at the ligament-bone interface, presence of type XIV collagen in high concentration at this junction may contribute to the modulation of the biomechanical properties of this tissue.

Animals↗

[Nerve supply to the anterior cruciate ligament and cruciate ligament allograft].

To confirm the innervation of the anterior cruciate ligament and anterior cruciate allograft the anterior cruciate ligament was grafted allogenic and deep-freeze preserved, in 12 white New Zealand rabbits. After removal from the donor animal the ligaments and pertaining bone tissue were placed in deep freeze at -90 degrees C for 72 hours. The grafts were fixed in the receiving animal by means of transosseous wire sutures. The non-operated contralateral anterior cruciate ligament served as control. Follow-up examinations were performed after 3, 6, 12, 24, 36 and 52 weeks. Immunohistochemical methods were employed to examine newly ingrown nerve fibres. Monoclonal antibodies against neurofilaments (to identify rapid conducting mechanoreceptive afferent A fibres) were used, as well as substance P (to identify slow conducting nociceptive afferent C fibres) and thyrosine hydroxylase (for the identification of vasomotor efferent C fibres). In the control ligaments we found an abundant amount of nerve fibres of all three kinds, each of these having its own typical distribution pattern. The fibres were mainly subsynovial, in some cases however also localised in the interfascicular connective tissue septae. At specialised end organs we could only identify Ruffini's corpuscles. No nerve fibres were found in the cruciate ligament allografts after 3 weeks, but an initial few fibres showed up after 6 weeks. After 12 weeks individual nerve fibres of all 3 kinds became noticeable, and after 24 weeks all three kinds of fibres were abundantly represented. No specialised end organs were found in the allografts.(ABSTRACT TRUNCATED AT 250 WORDS)

Afferent Pathways↗

Relationship of the dura, Hofmann's ligaments, Batson's plexus, and a fibrovascular membrane lying on the posterior surface of the vertebral bodies and attaching to the deep layer of the posterior longitudinal ligament. An anatomical, radiologic, and clinical study.

With the advent of computed tomography (CT) and magnetic resonance imaging (MRI), visualization of soft tissue structures in the spinal canal, which were previously undetectable, is possible. This study was undertaken to more accurately identify these soft tissue layers and to determine factors such as when is a disc contained and when is it not; in discography, when the disc leaks, into what layer is the contrast going; or when a nuclear fragment creeps upward or downward, just where is it. The works of Fick, Dommisse, Kikuchi, Schellinger, Hofmann, Batson, and Parke were studied. The professors of anatomy of four major medical schools were consulted along with several neuroradiologists and embryologists. Forty lumbar spines were dissected (20 fresh, 20 preserved). Magnetic resonance imaging scans were taken. Photographs and photomicrographs were made. A fibrous membrane, first mentioned by Fick, can be identified lying anterior to the posterior longitudinal ligament and attaching to the deep layer of the posterior longitudinal ligament. It has been given relatively little attention in the past. This membrane has about one fourth the toughness of the dura and is made up largely of fibrous tissue. The veins of Batson lie on its dorsal surface and pierce it to go ventral to this membrane and enter the vertebral body. Batson's plexus crosses the disc space. The peridural membrane extends from one side to the other, spanning the width of the vertebral body and encircling the bony canal around the outside of the dura. There is a potential space between it and the dura. It does not cross the disc space. A probe can easily be passed posterior or anterior to it, between it and the posterior longitudinal ligament or between it and the vertebral body. We also identified Hofmann's ligament anterior to the dura, attaching the dura to the posterior longitudinal ligament. Laterally, tiny attachments between this fibrovascular membrane and the circumneural sheaths of the spinal nerves can be observed as the nerves enter the foramina. The posterior longitudinal ligament (PLL) is very tough and strong and seldom ruptures. The annulus frequently ruptures. Fragments of nucleus pulposus can creep out at the vertebral rim and get under the PLL and the peridural membrane. Hematoma can form by the same route and have the exact appearance as a sequestrated disc. There is no periosteum inside the vertebral canal. With MRI, hematomas can be differentiated from an extruded fragment. They may cause symptoms similar to an extruded disc but will probably heal with time.(ABSTRACT TRUNCATED AT 400 WORDS)

Aged↗

MR imaging of the most commonly injured ankle ligaments. Part II. Ligament injuries.

Thirteen patients with clinically diagnosed sprained ankles underwent magnetic resonance (MR) imaging. Five of these cases are presented to illustrate the potential of MR imaging to enable identification of both primary and associated ligament injury sites, grading of the severity of the injuries, and visualization of the associated findings of tendon sheath and joint effusion. The appropriate combination of foot position and imaging plane is essential to achieve full-length visualization of each ligament. Two patients demonstrated findings compatible with total gross disruption of the anterior fibulotalar ligament; two, with injury to the fibulocalcaneal ligament with effusion of the overlying peroneus tendon sheath; and one, with thinning, lengthening, and fibrotic changes involving the anterior fibulotalar ligament. MR imaging can provide a noninvasive means to evaluate the site and severity of ankle ligament injuries (a) in acute ankle injuries that demonstrate significant instability, (b) in stable acute injuries involving athletes or litigation, or (c) in patients with repeated injuries or instability in whom surgery is contemplated.

Adult↗

Relationships between objective assessment of ligament stability and subjective assessment of symptoms and function after anterior cruciate ligament reconstruction.

BACKGROUND: Relationships between objective assessment of ligament stability and subjective assessment of symptoms and function after anterior cruciate ligament reconstruction have not been established. HYPOTHESIS: Relationships exist between objective and subjective assessments after anterior cruciate ligament reconstruction. STUDY DESIGN: Case series. METHODS: Patients (N = 202) undergoing anterior cruciate ligament reconstruction with 2-year minimum follow-up were studied. Objective variables of ligament stability at follow-up included instrumented laxity, Lachman examination, and pivot-shift examination. Subjective variables of symptoms at follow-up included pain, swelling, giving way, locking, crepitus, stiffness, and limping. Subjective function at follow-up included walking, squatting, stair climbing, running, cutting, jumping, twisting, activity limitation, sports level, activities of daily living level, work level, knee function, sports participation, Lysholm score, and satisfaction with outcome. RESULTS: Instrumented knee laxity and Lachman examination had no significant (P >.05) relationships with any subjective variables of symptoms and function. Pivot-shift examination had significant associations with satisfaction (P =.03), partial giving way (P =.01), full giving way (P =.01), difficulty cutting (P =.01), difficulty twisting (P =.01), activity limitation (P =.01), overall knee function (P =.03), sports participation (P =.02), and Lysholm score (P =.01). CONCLUSIONS: The pivot-shift examination may be a better measure of "functional instability" than instrumented knee laxity or Lachman examination after anterior cruciate ligament reconstruction.

Adolescent↗

Periodontal ligament formation around titanium implants using cultured periodontal ligament cells: a pilot study.

The aim of this study was to investigate whether a new periodontal ligament attachment will form on titanium implants when they are implanted with cultured periodontal ligament cells. Periodontal ligament cells obtained from the teeth of 3 dogs were cultured and attached to the surface of titanium implants. The implants with the cultured autologous periodontal ligament cells were placed in the mandibles of the dogs. After 3 months of healing, histologic examination revealed that, on some implant surfaces, a layer of cementum-like tissue with inserting collagen fibers had been achieved. These results demonstrated that cultured periodontal ligament cells can form tissue resembling a true periodontal ligament around implants.

Animals↗

[An experimental study on tissue induction in anterior cruciate ligament reconstruction with the scaffold-type polyester artificial ligament (Leeds-Keio)].

The effect of experimental autogenous tissue implantation (infrapatellar fat pad, fascia lata) together with scaffold type artificial ligament (Leeds-Keio) in ACL reconstruction was studied in 56 mongrel adult dogs. Specimens were examined macroscopically, histologically and by means of microangiography. The results were compared with those in which the artificial ligament was used alone. When infrapatellar fat pad was transferred on artificial ligament, tissue induction was observed 2 weeks after reconstruction. When ACL was reconstructed using a combination of artificial ligament and a small piece of fascia lata, maturated dense collagen fibers were observed 24 weeks after reconstruction. These results indicated that quicker tissue induction could be obtained in ACL reconstruction using an artificial ligament together with a infrapatellar fat pad, and that collagen fiber maturation was accelerated when ACL was reconstructed using an artificial ligament together with a small piece of fascia lata.

Adipose Tissue↗

The superior intracapsular ligament of the sacroiliac joint: presumptive evidence for confirmation of Illi's ligament.

The existence of a superior intracapsular ligament within the sacroiliac joint has been disputed for years. This study notes that the dissection technique used to open the sacroiliac joint is of critical importance in finding this ligament. A dissection technique that emphasizes an inferior approach to the joint cavity is described. A superior intracapsular ligament of the sacroiliac joint (Illi's ligament) is noted with a 75% frequency in dissected cadavers. Illi's model for motion of the sacrum was based partially on the function of this ligament. The findings of this study suggest that current models of motion at the sacroiliac joint must include the presence of a superior intracapsular ligament.

Anthropometry↗

Total (anterior and posterior) decompression of the spinal cord: surgical treatment for combined ossification of the posterior longitudinal ligament and yellow ligament of the thoracic spine.

The ossification of the posterior longitudinal ligament (OPLL) combined with ossification of the yellow ligament (OYL) in the thoracic spine can compress the spinal cord from the anterior and posterior direction, resulting in serious myelopathy. For these cases we devised a treatment consisting of two steps, total decompression of the spinal cord. The first step is removal of ossified yellow ligament posteriorly following wide laminectomy and the second step is removal of ossified posterior longitudinal ligament anteriorly, followed by interbody fusion. As the final procedure of the first step, two parallel deep gutters, covering the complete length of the ossified ligament to be removed anteriorly, are drilled from the posterior direction into the vertebral body along both sides of the dura. This pretreatment makes removal of the ossified ligament from the anterior, during the second stage, much easier and safer. This operation appears to be a promising operative procedure from our seven case experiences so far.

Adult↗

[Ideal indications for the use of a textile ligament of high strength Trevira in alloplastic replacement of the anterior cruciate ligament in chronic isolated rupture].

Between August 1980 and December 1986, 120 patients suffering from chronic instabilities of the knee ligament were submitted to corrective surgery at the Berufsgenossenschaftliche Unfallklinik Frankfurt am Main. A textile ligament made of polyethylene terephthalate (Trevira hochfest type 730) was substituted in all cases for the disturbed or missing ligament structure. 67 out of 100 patients came to the check-up appointments. A precise and objective comparison between the preoperative and postoperative findings of each patient was now possible for the first time thanks to the most recent computer technique. Until now we were not able to do this. Possibly the results published hitherto had a subjective touch and were too much dependent on the feelings of the individual investigators. Full objective stability over several years was reached anyhow in 51.4% of the patients checked up. Especially in case of inveterate isolated rupture of the anterior cruciate ligament, the alloplastic substitution by a ligament made of Trevira hochfest is at present an ideal possibility to restore stability for a long time and to prevent severe secondary wear symptoms of the other interior structures of the knee. The failures and insatisfactory results with respect to stability are explained by an insufficient consideration of the implantation technique recommended. In order to help this method to achieve its welldeserved propagation which would be to the advantage of patients with chronic instabilities of the knee ligament, this technique is explained in detail once more and possible errors are indicated.

Adult↗