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Biomedical subjects

G A Finerman

Publications and source records attributed to G A Finerman.

At least 37 records · Page 2Linked to original sources

Biomechanical consequences of replacement of the anterior cruciate ligament with a patellar ligament allograft. Part II: forces in the graft compared with forces in the intact ligament.

Seventeen fresh-frozen knee specimens from cadavera were instrumented with a load-cell attached to a mechanically isolated cylinder of subchondral bone containing the tibial insertion of the anterior cruciate ligament. The forces in the intact anterior cruciate ligament were recorded as the knee was passively extended from 90 degrees of flexion to 5 degrees of hyperextension without and with several constant tibial loads: 100 newtons of anterior tibial force, ten newton-meters of internal and external tibial torque, and ten newton-meters of varus and valgus moment. The anterior cruciate ligament was resected, and a bone-patellar ligament-bone graft was inserted. The knee was flexed to 30 degrees, and the graft was pre-tensioned to restore normal anterior-posterior laxity. The knee-loading experiments were repeated at this level of pre-tension (laxity-matched pre-tension) and at a level that was forty-five newtons greater than the laxity-matched pre-tension (over-tension). During passive extension of the knee, the forces in the graft were always greater than the corresponding forces in the intact anterior cruciate ligament. Over-tensioning of the graft increased the forces in the graft at all angles of flexion. At full extension, the mean force in the anterior cruciate ligament was fifty-six newtons; the mean force in the graft at laxity-matched pre-tension was 168 newtons, and it was 286 newtons in the over-tensioned graft. Greater pre-tensioning may be required when the knee demonstrates apparent tightening of the graft in flexion. The mean forces in the graft generated during all constant loading tests were greater than those for the intact anterior cruciate ligament over the range of flexion. When the graft was over-tensioned, the forces generated by the anterior tibial force and by varus and valgus moment increased but those generated by internal and external tibial torque did not. There was no significant change in the mean tibial rotation as a function of the angle of flexion of the knee after insertion of the graft; normal tibial rotation of the knee during passive extension (the so-called screw home mechanism) was eliminated.

Anterior Cruciate Ligament↗

MRI and morphology of the insertion of the patellar tendon after graft harvesting.

We performed MRI on 16 patients who had had reconstruction of the anterior cruciate ligament (ACL) with a mid-third bone-patellar-tendon-bone autograft. Our aim was to assess the tendon and the site of its insertion at an average of seven years after the original operation. In four of these patients biopsies were taken from the donor site when they had revision of their original operation. MRI showed reconstitution of the tendon into the patellar defect with no evidence of bone formation. Six patients had a persistent defect in the patellar tendon itself. Histological examination of the biopsies of the donor site showed an indirect pattern of insertion with absence of the normal fibrocartilage zone. These morphological changes may adversely affect the biomechanical properties of the healed donor site and we suggest that another graft taken from this site may not be suitable for use in a further operation for reconstruction of the ACL.

Adult↗

Combined knee loading states that generate high anterior cruciate ligament forces.

Injuries to the anterior cruciate ligament frequently occur under combined mechanisms of knee loading. This in vitro study was designed to measure levels of ligament force under dual combinations of individual loading states and to determine which combinations generated high force. Resultant force was recorded as the knee was extended passively from 90 degrees of flexion to 5 degrees of hyperextension under constant tibial loadings. The individual loading states were 100 N of anterior tibial force, 10 Nm of varus and valgus moment, and 10 Nm of internal and external tibial torque. Straight anterior tibial force was the most direct loading mechanisms; the mean ligament force was approximately equal to applied anterior tibial force near 30 degrees of flexion and to 150% of applied tibial force at full extension. The addition of internal tibial torque to a knee loaded by anterior tibial force produced dramatic increases of force at full extension and hyperextension. This loading combination produced the highest ligament forces recorded in the study and is the most dangerous in terms of potential injury to the ligament. In direct contrast, the addition of external tibial torque to a knee loaded by anterior tibial force decreased the force dramatically for flexed positions of the knee; at close to 90 degrees of flexion, the anterior cruciate ligament became completely unloaded. The addition of varus moment to a knee loaded by anterior tibial force increased the force in extension and hyperextension, whereas the addition of valgus moment increased the force at flexed positions. These states of combined loading also could present an increased risk for injury. Internal tibial torque is an important loading mechanism of the anterior cruciate ligament for an extended knee. The overall risk of injury to the ligament from varus or valgus moment applied in combination with internal tibial torque is similar to the risk from internal tibial torque alone. External tibial torque was a relatively unimportant mechanism for generating anterior cruciate ligament force.

Aged↗

A case of juxta-articular myxoma of the knee.

This 9-year-old girl presented with a painful mass in the posterolateral aspect of her right knee. Excisional biopsy of the mass revealed a juxta-articular myxoma. The differential diagnosis for such an intra- or periarticular mass should include meniscal cyst, parameniscal cyst, ganglion cyst, juxta-articular myxoma, focal nodular PVNS, and desmoid tumor. Current imaging techniques do not allow differentiation between these benign lesions and low grade myxoid-containing sarcoma.

Child↗

Long-term durability of cemented primary total hip arthroplasty.

The results of all primary cemented total hip arthroplasties that were performed at UCLA Medical Center between 1974 and 1982 and had at least 1 year of follow-up evaluation were reviewed. Five hundred ninety-seven hips were implanted in 513 patients receiving a T28 (81%), a TR28 (16%), or a Charnley (3%) prosthesis (all from Zimmer, Warsaw, IN). The overall 15-year survival of the implants was 82%, although age at surgery was a strong predictor of implant failure (P < .001). The 15-year aseptic revision estimate was 37% in those patients younger than 50 at implantation, 17% in those patients aged 50 to 60 at implant surgery, and 4% in patients older than 60 at surgery. After adjustment for patient age, primary etiology was not significantly related to implant failure. Sepsis necessitated revision in 2.6% of the patients by 10 years. Lucencies throughout all three acetabular zones were noted in 45% of patients with long-term follow-up evaluation; however, this "radiographic loosening" was not a good indicator of impending clinical failure. (Only 49% of these components required revision in the ensuing 10 years following evidence of radiographic loosening.) The results for the younger patients are markedly inferior to those for older patients. Excellent results obtained with earlier prosthetic designs and cementing techniques make cemented hip arthroplasty a strong contender for the method of choice in the older patient.

Age Factors↗

Single plane and biplane external fixators for knee arthrodesis.

Thirty-six knee arthrodeses performed using an external fixator with an average followup of 48 months were reviewed retrospectively. A single plane fixator was used in 19 cases and a biplane fixator in 17 cases. The reasons for fusion included an infected total knee arthroplasty (21 cases), aseptic loosening of a total knee arthroplasty (9 cases), posttraumatic osteoarthritis (3 cases), and a neuropathic joint, an infected unicondylar knee arthroplasty, and a tuberculous joint (1 case each). A fusion was obtained after the initial procedure in 22 patients (61%). With additional procedures, a fusion was obtained eventually in 27 patients (75%). The fusion rate decreased with an increasing number of prior knee procedures. Single and biplane external fixator designs had similar initial fusion rates (single 58%, biplane 65%). Complications included 14 nonunions (5 fused with additional procedures), 6 pin tract infections, 5 delayed unions, 1 stress fracture through a pin site, and 1 persistent infection resulting in an above-knee amputation. Despite biomechanical advances in external fixator design, knee arthrodesis remains difficult to achieve in patients who have had multiple previous procedures, a failed total knee arthroplasty, or an infected total knee arthroplasty with significant bone loss.

Adult↗

Direct in vitro measurement of forces in the cruciate ligaments. Part I: The effect of multiplane loading in the intact knee.

Specially designed load-transducers that measured the resultant forces exerted by the posterior and anterior cruciate ligaments on their respective femoral and tibial insertions were applied to eighteen fresh-frozen cadaveric knees for a series of controlled loading experiments. The mean force in the posterior cruciate ligament at 5 degrees of forced hyperextension of the knee was 23 per cent of the mean force in the anterior cruciate ligament. When the knee was hyperflexed by application of 10.0 newton-meters of bending moment to the tibia, the mean force in the posterior cruciate ligament was 55 per cent of that in the anterior cruciate ligament. Quadriceps tendon pull increased the force in the posterior cruciate ligament in twelve of the fourteen specimens to which it had been applied, at 80 and 90 degrees of flexion only. The force generated in the posterior cruciate ligament by applied internal tibial torque was greatest when the knee was in 90 degrees of flexion; the force in the anterior cruciate ligament was greatest when the knee was fully extended. External tibial torque generated force in the posterior cruciate ligament in only eight specimens, and only at 80 and 90 degrees of flexion. The levels of force that were generated in the posterior cruciate ligament by applied varus and valgus bending moment were greatest at 90 degrees of flexion of the knee; the levels of force in the anterior cruciate ligament were greatest with the knee in full extension. With the knee flexed 90 degrees and the tibia in neutral rotation, fifty newtons of applied posterior tibial force increased the mean force in the posterior cruciate ligament by 58.4 newtons; at full extension, no increase in the force in the ligament was recorded, indicating that tensed capsular structures were absorbing the applied load. When the tibia was internally or externally rotated by applied tibial torque, the increases in the force in the ligament from applied posterior tibial force were sharply diminished.

Aged↗

Direct in vitro measurement of forces in the cruciate ligaments. Part II: The effect of section of the posterolateral structures.

Specially designed load-transducers were applied to eight fresh-frozen cadaveric knee specimens in order to measure resultant forces in both cruciate ligaments as the knees were subjected to straight varus-valgus bending moment and to tibial torque (with and without a superimposed posterior tibial force). The forces in the ligaments and tibial rotation were recorded at seven angles of flexion of the knee, between 0 and 90 degrees, before and after section of the posterolateral structures. Ligamentous section increased angulation of the tibia when varus moment was applied to the knee; the large increases in lateral opening of the knee joint were accompanied by increases in the force in the anterior cruciate ligament at all angles of flexion and increases in the force in the posterior cruciate ligament between 45 and 90 degrees of flexion. When valgus moment was applied, there were no significant changes in valgus angulation or the resultant force in either cruciate ligament after ligamentous section. Ligamentous section increased rotation of the tibia when external torque was applied to the knee. The increased external rotation was accompanied by decreases in the force in the anterior cruciate ligament between 0 and 20 degrees of flexion of the knee and increases in the force in the posterior cruciate ligament between 45 and 90 degrees of flexion. In the studies involving applied internal tibial torque, after ligamentous section, rotation of the tibia increased slightly between 60 and 90 degrees of flexion. The force in the anterior cruciate ligament increased between 0 and 20 degrees of flexion, while the force in the posterior cruciate ligament was unaffected.(ABSTRACT TRUNCATED AT 250 WORDS)

Aged↗

Resistant nonunions and partial or complete segmental defects of long bones. Treatment with implants of a composite of human bone morphogenetic protein (BMP) and autolyzed, antigen-extracted, allogeneic (AAA) bone.

Twenty-five patients with resistant nonunions including partial or complete segmental defects were treated with a composite alloimplant of human bone morphogenetic protein (h-BMP) and autolyzed, antigen-free, allogeneic bone (AAA). The series consisted of 16 females and nine males; average age was 45 years. Preoperative symptoms averaged 30 months (range, five to 83 months); 22 of 25 patients had failed multiple attempts at electrical stimulation. Twenty-three of 25 patients had an average of three prior failed surgical attempts at union (range, one to ten). There were ten segmental defects with an average length of 4 cm (range, 2-9 cm). The composite implant was incorporated as an onlay in 15 extremities and as an inlay graft supported by internal fixation in ten extremities. Seven patients received supplementary autogeneic cancellous bone grafting. Average healing time was six months (range, three to 14 months). Average follow-up time was 21 months (range, five to 82 months). Functional results were rated as excellent, 14; good, five; and fair, five. One failed to unite because of a recurrent infection. Union was obtained in 24 of 25 patients. There were five failures of the original operation that required reoperations; union eventually occurred in four of five extremities by repeat composite grafting and replacement of the failed internal fixation. Bony union between host bone and the composite implant began at an average of eight weeks postoperatively. Present results indicate that h-BMP/AAA composite implants represent adjunctive treatment of difficult nonunions. The h-BMP/AAA composite implants may be implanted in either partial or complete segmental defects of long bones.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

Periprosthetic chronic inflammation characterized through the measurement of superoxide anion production by synovial-derived macrophages.

Periprosthetic macrophages were isolated from the synovium of primary and revision arthroplasty patients. Inflammatory activity was determined by the level of superoxide (O2-) production de novo and in response to phorbol myristate acetate (PMA) stimulation. Nonstimulated primary arthroplasty-derived macrophages produced 2.54 +/- 2.04 pmoles of O2-/minute/10(5) cells. When identical reaction tubes were stimulated with PMA, O2- levels increased to 5.76 +/- 3.77 pmol of O2-/minute/10(5) cells. Nonstimulated revision arthroplasty-derived macrophages produced 3.26 +/- 2.02 pmol of O2-/minute/10(5) cells during this ten-minute time period. When identical reaction tubes were stimulated with PMA, O2- levels increased to 3.98 +/- 2.52 pmol of O2-/minute/10(5) cells. The difference in the ratio of O2- production in response to stimulation between primary and revision groups was statistically significant. The observation of a chronic moderate level of activation and the lack of responsiveness to a potent stimulator suggests that macrophage inflammatory activity is down-regulated in periprosthetic synovium.

Adult↗

Patient activity, sports participation, and impact loading on the durability of cemented total hip replacements.

Patients with either cemented surface replacements or cemented stemmed hip prostheses and who regularly participate in sporting activities or heavy labor after total joint arthroplasty are at twice the long-term risk of requiring revision surgery for loosening as patients who are less active. For patients with surface replacement total hip arthroplasty (THA), the adverse effects of activity are greatest in patients with preoperative diagnoses other than osteoarthritis, and were seen by the sixth year postsurgery. For patients with conventional stemmed prostheses, the effects of patient activity are not seen until about ten years postsurgery. For resurfacing THA for osteoarthritis, the long-term of loosening is primarily in patients who participate in high impact activities.

Bone Cements↗

Catastrophic wear of tibial polyethylene inserts.

A number of factors play an important role in the wear-resistance of tibial polyethylene inserts. Among these are manufacturing processes that adversely affect the wear-resistance of polyethylene (such as heat treatments to the articular surface or gamma irradiation used for sterilization), tibio-femoral articular geometry, polyethylene thickness, knee alignment, femoral-component-bearing surface material, modularity of the tibial inserts and tibial trays, and quality of the polyethylene itself. The authors report an unusually high rate of failure by wear of tibial polyethylene inserts from a series of 176 Porous Coated Anatomic (PCA) knees in which there were eight revisions (4.5% of the series) performed for tibial polyethylene wear at an average of 60 months. Nine additional knees (5.1%) had thinning of greater than 30% of the initial polyethylene thickness. Four of the unsuccessful knees revealed areas of osteolysis filled with membranes containing large amounts of particulate polyethylene. In addition to the 176 knees from a series from a Los Angeles university, the cases of five other knees in four patients who came for treatment from outside hospitals with full-thickness wear of the tibial polyethylene are discussed. One of these five knees was a cementless PCA knee that developed massive osteolysis in response to the particulate polyethylene debris.

Chromium Alloys↗

The effect of section of the medial collateral ligament on force generated in the anterior cruciate ligament.

Ten fresh-frozen knees from cadavera were instrumented with a specially designed transducer that measures the force that the anterior cruciate ligament exerts on its tibial attachment. Specimens were subjected to tibial torque, anterior tibial force, and varus-valgus bending moment at selected angles of flexion of the knee ranging from 0 to 45 degrees. Section of the medial collateral ligament did not change the force generated in the anterior cruciate ligament by applied varus moment. When valgus moment was applied to the knee, force increased dramatically after section of the medial collateral ligament; the increases were greatest at 45 degrees of flexion. Section of the medial collateral ligament had variable effects on the force generated in the anterior cruciate ligament during internal rotation but dramatically increased that generated during external rotation; these increases were greatest at 45 degrees. Section of the medial collateral ligament increased mean total torsional laxity by 13 degrees (at 0 degrees of flexion) to 20 degrees (at 45 degrees of flexion). Application of an anteriorly directed force to the tibia of an intact knee increased the force generated in the anterior cruciate ligament; this increase was maximum near the mid-part of the range of tibial rotation and minimum with external rotation of the tibia. Section of the medial collateral ligament did not change the force generated in the anterior cruciate ligament by straight anterior tibial pull near the mid-part of the range of tibial rotation.(ABSTRACT TRUNCATED AT 250 WORDS)

Aged↗

Total knee arthroplasty in patients after patellectomy.

Twenty-six total knee arthroplasties (TKAs) were evaluated in 22 patients who had had a patellectomy. Fourteen knees (12 patients) had a primary TKA, and 12 patients had a revision TKA. Two patients in the revision group, whose prostheses failed, were from the primary TKA group. The mean follow-up time was 8.5 years in the primary TKA group and 7.6 years in the revision TKA group. A group of 14 control knees with patellae was randomly generated but matched for prosthesis, diagnosis, surgeon, age, and time of surgery. This group was similarly evaluated with an average follow-up time of 6.9 years. The primary TKA group had seven knees that were rated as good or excellent, two as fair, and three as poor. The control group had a significantly higher average rating than the primary TKA group. In this group, there were 12 good or excellent knees, three fair, and none poor. Postoperative pain, flexion contracture, extension lag, and range of motion all contributed significant information to the final score, whereas other variables (walking, function, strength, and instability) did not contribute any additional information. Although higher overall scores may have been expected if the patients had patellae, the results during the follow-up examination were satisfactory and justified TKA in these patients. In general, however, patients without patellae may be at a higher risk for failure of the prosthesis, as seen in five patients having primary TKA and another ten patients with failed TKA requiring revision.

Adult↗

Posterior cruciate ligament: MR imaging.

The authors reviewed 610 consecutive magnetic resonance (MR) examinations of patients with suspected internal derangements of the knee, paying special attention to the posterior cruciate ligament (PCL). The normal PCL shows a low MR signal intensity and an arcuate shape. An accessory anterior or posterior meniscofemoral ligament was identified in 58.5% of examinations. Among 202 patients who underwent arthroscopy or arthrotomy, MR imaging depicted 11 PCL injuries: eight complete or incomplete ligament disruptions and three avulsions. All were confirmed by means of arthroscopy or arthrotomy. MR findings of PCL injury were anatomic disruption, increased signal intensity in the ligament, and redundancy of an avulsed ligament. Of the 11 PCL injuries, four were not detected at initial clinical examination. In none of the 202 patients in whom arthroscopy or surgery was performed was an abnormal PCL identified in the presence of a normal MR examination. MR imaging is a reliable method for the detection of PCL injuries.

Adolescent↗

Distal metaphyseal tibial nonunion. Deformity and bone loss treated by open reduction, internal fixation, and human bone morphogenetic protein (hBMP).

Four patients with severely deformed nonunions of the distal end of the tibia failed to respond to standard surgical methods and were successfully treated as follows: debridement of fibrous tissue, sequestrectomy, correction of angulatory deformities, internal stabilization, and implantation of human bone morphogenetic protein (hBMP). After resection of the sequestra, all four patients had significant bone defects of the anterior tibial cortex extending to the ankle joint. The average number of failed previous surgical procedures was 5.8. The average patient age was 35.3 years. The intervals of nonunion averaged 24.8 months. In two patients, the hBMP, including other low molecular weight bone matrix noncollagenous proteins (hBMP/NCP), was implanted across the fracture site in polylactic-polyglycollic acid strips (1 X 13 cm) as an onlay graft. In one patient, the BMP was implanted in the fracture gap in absorbable gelatin (No. 5 capsules). In another patient, the BMP/NCP was also implanted in the form of a composite of cortical allogeneic bone in addition to a capsule of BMP/NCP. In all four cases, alignment was restored and the bone ends were stabilized with internal fixation. Preoperatively, the ankle joints were ankylosed and painful. Healed fractures and functional ankle joints were observed in three of four patients at an average of 4.4 months. In one patient, the fracture healed but the joint remained ankylosed. Although a randomized double-blind consecutive series of matched cases is necessary to prove the efficacy of hBMP, implants of hBMP combined with skillful surgical treatment are under investigation in the interim as an alternative to amputation.

Adult↗

Autogeneic cancellous bone grafts in extensive segmental ulnar defects in dogs. Effects of xenogeneic bovine bone morphogenetic protein without and with interposition of soft tissues and interruption of blood supply.

Xenogeneic (bovine) bone morphogenetic protein (bBMP) and associated insoluble noncollagenous proteins (NCP) were implanted in inbred adult beagle dogs with 3-4 cm diaphyseal defects in the ulna. Defects were stabilized with internal plate fixation, and the control defects were not stabilized. The defects were implanted with either autogeneic cancellous bone grafts (ACG), bBMP/NCP, or a composite of ACG and bBMP/NCP. Of the plated ulnae, 18 of 19 ACG controls restored bone continuity; six of seven defects healed under the influence of bBMP/NCP plus ACG. Two of four defects with bBMP/NCP plus ACG healed and two were filled with osseous tissue, but fibrous tissue developed at one or both bone ends. Eight of nine defects implanted with bBMP/NCP capsules alone were repaired with fibrous tissue only. Of the nonplated defects, four were implanted with bBMP/NCP plus ACG and only one regenerated; three of four showed hypertrophic bone growth around a pseudarthrosis. Of six nonplated defects implanted with bBMP/NCP without ACG, all developed atrophic bone ends and fibrous tissue repair. Thus, to restore continuity of large segmental defects three times greater than the critical size for spontaneous regeneration, xenogeneic bBMP/NCP failed to induce bone regeneration in dogs. To exclude cell-mediated immune reactions and soft-tissue ingrowth, one defect was bridged with a polytetrafluoroethylene semipermeable tube (pore size 0.45 micron) containing implants of bBMP/NCP. In response to bBMP/NCP, cells from the host bone ends produced ossicles of induced woven bone formation. The observation that bBMP/NCP induced bone formation across the defect inside of semipermeable cylindrical chambers suggests that the experiments on bone defects larger than the critical size for spontaneous repair should be repeated with: (1) allogeneic dog BMP/NCP; (2) semipermeable cylinders to protect against muscle interposition; (3) compartment angiograms to evaluate blood supply; (4) treatment of the recipient with immunosuppressants and immunostaining to observe the concentration gradient of BMP; and (5) histologic observations on the first three days after implantation to evaluate cell-mediated immune barriers to the response of BMP.

Animals↗

Isolation, partial purification and in vitro characterization of osteogenic inhibitory protein.

A noncollagenous protein has been extracted and partially purified from adult cortical bone. This protein copurifies with another bone matrix protein, bone morphogenetic protein, until treatment with nonionic detergents. Characterization of the biological activity of this new protein has demonstrated it to be a potent osteogenic inhibitor in vitro. The inhibitor antagonizes the chondrogenic activity of devitalized, demineralized bone matrix as well as the activity of soluble bone morphogenetic protein. Bone matrix induced collagen and glycosaminoglycan synthesis are both inhibited in the presence of various concentrations of the osteogenic inhibitory protein. Inhibition of collagen synthesis required the presence of osteogenic inhibitory protein from the initiation of the tissue culture while glycosaminoglycan synthesis could be inhibited at any stage of differentiation. We postulate that this osteogenic inhibitory protein is essential in normal homeostatic bone metabolism, perhaps acting directly on bone morphogenetic protein.

Animals↗