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交锁髓内钉治疗复杂股骨骨折的生物力学特性

Biomechanical characteristics of interlocking femoral nails in the treatment of complex femoral fractures.

作者信息

Kyle R F, Schaffhausen J M, Bechtold J E

机构信息

Orthopaedic Biomechanics Lab, Hennepin County Medical Center, Minneapolis, Minnesota.

出版信息

Clin Orthop Relat Res. 1991 Jun(267):169-73.

PMID:2044272
Abstract

Interlocking intramedullary (IM) nails allow more comminuted and proximal or distal femoral fractures to be successfully treated than previously possible with routine IM nailing. Autopsy specimens were prepared to evaluate the effectiveness of different locking mechanisms on fracture site stability. Grosse-Kempf (GK) and Brooker-Wills (BW) IM nails were inserted in anatomic specimen femurs with transverse fractures and 1-, 2-, and 3-cm defects. The femurs were loaded in four-point bending, and bending stiffness was calculated. The femurs were also loaded in torsion, and the amount of slippage between the nail and bone (at 10 Nm of applied torque) was measured. The GK nail, fully interlocked, had the lowest amount of rotational slip, followed by the BW and the GK noninterlocked nail. Bending stiffness was not significantly different for these IM nails.

摘要

与常规髓内钉固定相比,交锁髓内钉能够成功治疗更多的粉碎性股骨近端或远端骨折。制备尸检标本以评估不同锁定机制对骨折部位稳定性的有效性。将Grosse-Kempf(GK)和Brooker-Wills(BW)髓内钉插入有横形骨折以及1厘米、2厘米和3厘米骨缺损的解剖标本股骨中。对股骨进行四点弯曲加载,并计算弯曲刚度。还对股骨进行扭转加载,并测量钉子与骨之间的滑移量(在施加10牛米扭矩时)。完全交锁的GK钉旋转滑移量最低,其次是BW钉和未交锁的GK钉。这些髓内钉的弯曲刚度无显著差异。

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