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Biomedical subjects

Peter M Klara

Publications and source records attributed to Peter M Klara.

2 recordsLinked to original sources

Two-year fusion rate equivalency between Grafton DBM gel and autograft in posterolateral spine fusion: a prospective controlled trial employing a side-by-side comparison in the same patient.

STUDY DESIGN: Multicenter, prospective equivalency trial with each patient serving as his/her own control. OBJECTIVES: To compare the effectiveness of a Grafton DBM gel composite with iliac crest autograft in posterolateral spine fusion. SUMMARY OF BACKGROUND DATA: While autograft remains the preferred graft material to facilitate spine fusion, the supply is limited and harvesting produces undesirable clinical consequences. METHODS: A total of 120 patients underwent posterolateral spine fusion with pedicle screw fixation and bone grafting. Iliac crest autograft was implanted on one side of the spine and a Grafton DBM/autograft composite was implanted on the contralateral side in the same patient. An independent, blinded reviewer evaluated anteroposterior and lateral flexion-extension radiographs. The fusion mass lateral to the instrumentation on each side was judged fused or not, and the mineralization of the graft was rated absent, mild, moderate, or extensive. The degree of correspondence in outcomes between sides was estimated by computing the percentage agreement and kappa statistic. RESULTS: Nearly 70% of patients (81 of 120) provided complete 24-month radiographic studies. The bone graft mass was fused in 42 cases (52%) on the Grafton DBMside and in 44 cases (54%) on the autograft side. The overall percentage agreement for fusion status between sides was approximately 75% (61 of 81), indicating moderately strong statistical correspondence (kappa = 0.51, P < 0.0001). Bone mineralization ratings also were similar between treated sides. Perfect agreement was realized in almost 60% of patients (48 of 81) with moderate statistical correspondence (weighted kappa = 0.54, P < 0.0001). CONCLUSIONS: Grafton DBM can extend a smaller quantity of autograft than is normally required to achieve a solid spinal arthrodesis. Consequently, a reduced amount of harvested autograft may be required, potentially diminishing the risk and severity of donor site complications.

Bone Matrix↗

Artificial nucleus replacement: clinical experience.

The prosthetic disc nucleus is designed to help treat patients suffering from degenerative disc disease. The device consists of a hydrogel core that is encased in a polyethylene jacket and is intended to restore disc height while permitting normal range of motion. Clinical trials for the prosthetic disc nucleus were first conducted in 1996, and the device was found to be effective in most of the patients that were implanted. Additional trials in 1997-1998 were less successful, with 38% of patients requiring revision surgery because of device migration. Subsequent changes were made to device shapes and to the surgical protocol to facilitate implantation, thereby eliminating the high device migration rates. Following these modifications, the success rate for the device has improved significantly. Clinical data show excellent results with marked improvements in Oswestry and Prolo scores. Overall, disc height measurements have been well maintained within normal physiologic ranges. The prosthetic disc nucleus device is currently undergoing clinical trials in Canada, and an IDE application to the Food and Drug Administration was expected in the fall, 2001.

Clinical Trials as Topic↗