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猫科动物股骨的生物力学特性。

The biomechanical properties of the feline femur.

作者信息

Gibson T W G, Moens N M M, Runciman R J, Holmberg D L, Monteith G M

机构信息

Ontario Veterinary College, Department of Clinical Studies, University of Guelph, Guelph, Ontario, Canada, N1G 2W1.

出版信息

Vet Comp Orthop Traumatol. 2008;21(4):312-7. doi: 10.3415/vcot-07-08-0077.

Abstract

The purpose of this study was to determine the biomechanical properties of feline long bone by testing cadaver bone from mature cats in compression, three-point bending, notch sensitivity and screw pull-out strength. The determination of these properties is of clinical relevance with regard to the forces resulting in long bone fractures in cats as well as the behaviour and failure mode of surgical implants utilized for fracture stabilization and repair in the cat. Cadaveric cat femurs were tested in compression, three-point bending and in three-point bending after the addition of a 2.0 mm screw hole. Cortical screws, 2.7 mm in diameter, were inserted in cadaveric cat femur samples for screw pull-out testing. The mean maximum load to failure of mid diaphyseal feline femurs tested in compression was 4201+/-1218 N. Statistical analysis of the parameter of maximum load tested in compression revealed a statistical difference between sides (p=0.02), but not location (p=0.07), or location by side (p=0.12). The maximum strength of mid diaphyseal feline femurs tested in compression was 110.6+/-26.6 MPa. The modulus of elasticity of mid-diaphyseal cat femurs tested in compression was determined to be 5.004+/-0.970 GPa. The mean maximum load to failure of feline femurs tested in three-point bending was 443+/-98 N. The mean maximum load to failure of feline femurs tested in three-point bending after a 2.0 mm diameter hole was drilled in the mid-diaphyseal region of each sample through both cortices was 471+/-52 N. The mean maximum load required for screw pull-out of 2.7 mm cortical screws placed in feline femurs tested in tension was 886+/-221 N. This data should be suitable for investigating fracture biomechanics and the testing of orthopaedic constructs commonly used for fracture stabilization in the feline patient.

摘要

本研究的目的是通过对成年猫的尸体骨骼进行压缩、三点弯曲、缺口敏感性和螺钉拔出强度测试,来确定猫长骨的生物力学特性。这些特性的确定对于导致猫长骨骨折的力,以及用于猫骨折固定和修复的外科植入物的行为和失效模式具有临床相关性。对尸体猫股骨进行压缩、三点弯曲测试,并在添加2.0毫米螺孔后进行三点弯曲测试。将直径2.7毫米的皮质螺钉插入尸体猫股骨样本中进行螺钉拔出测试。在压缩测试中,猫股骨干中段的平均最大破坏载荷为4201±1218 N。对压缩测试中最大载荷参数的统计分析显示,两侧之间存在统计学差异(p = 0.02),但位置之间无差异(p = 0.07),或按侧别和位置分析也无差异(p = 0.12)。在压缩测试中,猫股骨干中段的最大强度为110.6±26.6 MPa。在压缩测试中,猫股骨干中段的弹性模量确定为5.004±0.970 GPa。在三点弯曲测试中,猫股骨的平均最大破坏载荷为443±98 N。在每个样本的股骨干中段区域钻一个直径2.0毫米的孔穿透两侧皮质后进行三点弯曲测试,猫股骨的平均最大破坏载荷为471±52 N。在拉伸测试中,置于猫股骨中的2.7毫米皮质螺钉拔出所需的平均最大载荷为886±221 N。这些数据应适用于研究骨折生物力学以及对猫科动物患者骨折固定常用的骨科植入物进行测试。

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