Goetz Jessica E, Pedersen Douglas R, Robinson Duane A, Conzemius Michael G, Baer Thomas E, Brown Thomas D
Department of Orthopaedics and Rehabilitation, University of Iowa, 2181 Westlawn Building, Iowa City, IA 52242-1100, USA.
J Biomech. 2008 Jul 19;41(10):2197-205. doi: 10.1016/j.jbiomech.2008.04.032. Epub 2008 Jun 17.
Cryoinsult-induced osteonecrosis (ON) in the emu femoral head provides a unique opportunity to systematically explore the pathogenesis of ON in an animal model that progresses to human-like femoral head collapse. Among the various characteristics of cryoinsult, the maximally cold temperature attained is one plausible determinant of tissue necrosis. To identify the critical isotherm required to induce development of ON in the cancellous bone of the emu femoral head, a thermal finite element (FE) model of intraoperative cryoinsults was developed. Thermal material property values of emu cancellous bone were estimated from FE simulations of cryoinsult to emu cadaver femora, by varying model properties until the FE-generated temperatures matched corresponding thermocouple measurements. The resulting FE model, with emu bone-specific thermal properties augmented to include blood flow effects, was then used to study intraoperatively performed in vivo cryoinsults. Comparisons of minimum temperatures attained at FE nodes corresponding to the three-dimensional histologically apparent boundary of the region of ON were made for six experimental cryoinsults. Series-wide, a critical isotherm of 3.5 degrees C best corresponded to the boundary of the osteonecrotic lesions.
鸸鹋股骨头的冷冻损伤诱导性骨坏死(ON)为在一种发展为类似人类股骨头塌陷的动物模型中系统探索ON的发病机制提供了独特机会。在冷冻损伤的各种特征中,所达到的最低温度是组织坏死的一个可能决定因素。为了确定诱导鸸鹋股骨头松质骨发生ON所需的临界等温线,建立了术中冷冻损伤的热有限元(FE)模型。通过改变模型属性直至有限元生成的温度与相应的热电偶测量值匹配,从对鸸鹋尸体股骨进行冷冻损伤的有限元模拟中估计鸸鹋松质骨的热材料属性值。然后,将所得的具有增强的鸸鹋骨特异性热属性以纳入血流效应的有限元模型用于研究术中进行的体内冷冻损伤。对六个实验性冷冻损伤,比较了与组织学上明显的ON区域三维边界相对应的有限元节点处达到的最低温度。在整个系列中,3.5摄氏度的临界等温线与骨坏死病变的边界最为对应。