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使用结构工程模型预测股骨近端强度。

Predicting proximal femoral strength using structural engineering models.

作者信息

Keyak Joyce H, Kaneko Tadashi S, Tehranzadeh Jamshid, Skinner Harry B

机构信息

Department of Orthopaedic Surgery, University of California, Irvine, 92868, USA.

出版信息

Clin Orthop Relat Res. 2005 Aug(437):219-28. doi: 10.1097/01.blo.0000164400.37905.22.

Abstract

Hip fracture related to osteoporosis and metastatic disease is a major cause of morbidity and mortality. An accurate and precise method of predicting proximal femoral strength and fracture location would be useful for research and clinical studies of hip fracture. The goals of this study were to develop a structural modeling technique that accurately predicts proximal femoral strength; to evaluate the accuracy and precision of this predicted strength on an independent data set; and to evaluate the ability of this technique to predict fracture location. Fresh human cadaveric proximal femora with and without metastatic lesions were studied using computed tomography scan-based three-dimensional structural models and mechanical testing to failure under single-limb stance-type loading. The models understated proximal femoral strength by an average of 444 N, and the precision of the predicted strength was +/- 1900 N. Therefore, the ability to predict hip strength in an individual subject is limited primarily by the level of precision, rather than accuracy. This level of precision is likely to be sufficient for many studies of hip strength. Finally, these models predict fractures involving the subcapital and cervical regions, consistent with most fractures produced experimentally under single-limb stance-type loading.

摘要

与骨质疏松症和转移性疾病相关的髋部骨折是发病和死亡的主要原因。一种准确且精确的预测股骨近端强度和骨折位置的方法,对于髋部骨折的研究和临床研究将是有用的。本研究的目的是开发一种能准确预测股骨近端强度的结构建模技术;在独立数据集上评估该预测强度的准确性和精确性;并评估该技术预测骨折位置的能力。使用基于计算机断层扫描的三维结构模型和在单肢站立式加载下直至破坏的力学测试,对有无转移性病变的新鲜人类尸体股骨近端进行了研究。这些模型对股骨近端强度的低估平均为444 N,预测强度的精确性为±1900 N。因此,预测个体受试者髋部强度的能力主要受精确性水平的限制,而非准确性。这种精确性水平可能足以满足许多关于髋部强度的研究需求。最后,这些模型预测的骨折涉及股骨头下和颈部区域,这与在单肢站立式加载下实验产生的大多数骨折情况一致。

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