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关节置换骨水泥的有限元热分析

Finite element thermal analysis of bone cement for joint replacements.

作者信息

Li Chaodi, Kotha Shiva, Huang Chen-Hsi, Mason James, Yakimicki Don, Hawkins Michael

机构信息

Department of Aerospace and Mechanical Engineering, University of Notre Dame, Notre Dame, IN 46556, USA.

出版信息

J Biomech Eng. 2003 Jun;125(3):315-22. doi: 10.1115/1.1571853.

Abstract

A finite element technique was developed to investigate the thermal behavior of bone cement in joint replacement procedures. Thermal tests were designed and performed to provide the parameters in a kinetic model of bone cement exothermic polymerization. The kinetic model was then coupled with an energy balance equation using a finite element formulation to predict the temperature history and polymerization development in the bone-cement-prosthesis system. Based on the temperature history, the possibility of the thermal bone necrosis was then evaluated. As a demonstration, the effect of cement mantle thickness on the thermal behavior of the system was investigated. The temperature profiles in the bone-cement-prosthesis system have shown that the thicker the cement, the higher the peak temperature in the bone. In the 7 mm thick cement case, a peak temperature of over 55 degrees C was predicted. These high temperatures occurred in a small region near the bone/cement interface. No damage was predicted in the 3 mm and 5 mm cement mantle thickness cases. Although thermal damage was predicted in the bone for the 7 mm mantle thickness case, the amount of thermal necrosis predicted was minimal. If more cement is used in the surgical procedure, more heat will be generated and the potential for thermal bone damage may rise. The systems should be carefully selected to reduce thermal tissue damage when more cement is used. The methodology developed in this paper provides a numerical tool for the quantitative simulation of the thermal behavior of bone-cement-prosthesis designs.

摘要

开发了一种有限元技术来研究关节置换手术中骨水泥的热行为。设计并进行了热测试,以提供骨水泥放热聚合动力学模型中的参数。然后使用有限元公式将动力学模型与能量平衡方程耦合,以预测骨 - 水泥 - 假体系统中的温度历史和聚合发展。基于温度历史,评估了热骨坏死的可能性。作为示例,研究了骨水泥套厚度对系统热行为的影响。骨 - 水泥 - 假体系统中的温度分布表明,骨水泥越厚,骨中的峰值温度越高。在骨水泥厚度为7毫米的情况下,预测峰值温度超过55摄氏度。这些高温出现在骨/骨水泥界面附近的小区域。在骨水泥套厚度为3毫米和5毫米的情况下,预计不会有损伤。虽然在骨水泥套厚度为7毫米的情况下预计骨会出现热损伤,但预测的热坏死量很小。如果在手术过程中使用更多的骨水泥,会产生更多的热量,热骨损伤的可能性可能会增加。当使用更多骨水泥时,应谨慎选择系统以减少热组织损伤。本文开发的方法为骨 - 水泥 - 假体设计的热行为定量模拟提供了一种数值工具。

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