Brown Jeffrey D, Rosen Jacob, Kim Yoon Sang, Chang Lily, Sinanan Mika N, Hannaford Blake
Department of Bioengineering, University of Washington, USA.
Stud Health Technol Inform. 2003;94:26-32.
Accurate biomechanical characteristics of tissues are essential for developing realistic virtual reality surgical simulators utilizing haptic feedback. Surgical simulation technology has progressed rapidly but lacks a comprehensive database of soft tissue mechanical properties with which to incorporate. Simulators are often designed purely based on what "feels right;" quantitative empirical data are lacking. A motorized endoscopic grasper was used to test abdominal porcine tissues in-vivo and in-situ with cyclic and static compressive loadings. An exponential constitutive equation was fit to the resulting stress-strain curves, and the coefficients were compared for various conditions. Stress relaxation for liver and small bowel were also examined. Differences between successive squeezes and between in-vivo and in-situ conditions were found.
组织准确的生物力学特性对于开发利用触觉反馈的逼真虚拟现实手术模拟器至关重要。手术模拟技术发展迅速,但缺乏一个全面的软组织力学特性数据库来纳入其中。模拟器通常纯粹基于“感觉正确”来设计;缺乏定量的经验数据。使用电动内窥镜抓钳对猪腹部组织进行体内和原位的循环和静态压缩加载测试。将一个指数本构方程拟合到所得的应力-应变曲线,并比较不同条件下的系数。还研究了肝脏和小肠的应力松弛情况。发现连续挤压之间以及体内和原位条件之间存在差异。