Gefen Amit
Department of Biomedical Engineering, Faculty of Engineering, Tel Aviv University, Tel Aviv, Israel.
J Appl Biomech. 2010 Feb;26(1):93-103. doi: 10.1123/jab.26.1.93.
The extrapolation of biological damage from a biomechanical model requires that a closed-form mathematical damage threshold function (DTF) be included in the model. A DTF typically includes a generic load variable, being the critical load (e.g., pressure, strain, temperature) causing irreversible tissue or cell damage, and a generic time variable, which represents the exposure to the load (e.g., duration, strain rate). Despite the central role that DTFs play in biomechanical studies, there is no coherent literature on how to formulate a DTF, excluding the field of heat-induced damage studies. This technical note describes six mathematical function types (Richards, Boltzmann, Morgan-Mercer-Flodin, Gompertz, Weibull, Bertalanffy) that are suitable for formulating a wide range of DTFs. These functions were adapted from the theory of restricted growth, and were fitted herein to describe biomechanical damage phenomena. Relevant properties of each adapted function type were extracted to allow efficient fitting of its parameters to empirical biomechanical data, and some practical examples are provided.
从生物力学模型推断生物损伤需要在模型中包含一个封闭形式的数学损伤阈值函数(DTF)。DTF通常包括一个通用载荷变量,即导致不可逆组织或细胞损伤的临界载荷(例如压力、应变、温度),以及一个通用时间变量,它表示对载荷的暴露情况(例如持续时间、应变率)。尽管DTF在生物力学研究中起着核心作用,但除了热诱导损伤研究领域外,关于如何制定DTF并没有连贯的文献。本技术说明描述了六种适合制定广泛DTF的数学函数类型(理查兹函数、玻尔兹曼函数、摩根 - 默瑟 - 弗洛丁函数、冈珀茨函数、威布尔函数、贝塔朗菲函数)。这些函数源自受限生长理论,在此用于描述生物力学损伤现象。提取了每种适配函数类型的相关属性,以便将其参数有效拟合到经验生物力学数据,并提供了一些实际示例。