首页> 外文会议>ASME International Design Engineering Technical Conferences and Computers and Information in Engineering Conference >SIZE AND SHAPE OPTIMIZATION OF A 1.0 mm MULTIFUNCTIONAL FORCEPS- SCISSORS INSTRUMENT FOR MINIMALLY INVASIVE SURGERY
【24h】

SIZE AND SHAPE OPTIMIZATION OF A 1.0 mm MULTIFUNCTIONAL FORCEPS- SCISSORS INSTRUMENT FOR MINIMALLY INVASIVE SURGERY

机译:1.0 mm多功能钳剪刀仪的尺寸和形状优化,用于微创手术

获取原文

摘要

A size and shape optimization routine is developed and implemented on a 1 mm multifunctional instrument for minimally invasive surgery. The instrument is a compliant mechanism, without hinges, capable of both grasping and cutting. Multifunctional instruments have proven to be beneficial in the operating room because of their ability to perform multiple tasks, thereby decreasing the total number of instrument exchanges in a single procedure. In addition, with fewer exchanges the risk of inadvertent tissue trauma as well as overall surgical time and costs are reduced. The focus of the paper is to investigate the performance effects of allowing the cross-sectional area along the length of the device to vary. This is accomplished by defining various cross-sectional segments along the device in terms of parametric variables (W_1) and optimizing the dimensions to provide a sufficient forceps jaw opening while maintaining adequate cutting and grasping forces. Two optimization problems are considered. First, all parametric segments are set equal to one another permitting all cross-sections to vary uniformly and achieving size optimization. Second, each segment is defined as a separate design variable to allow segments to vary independently and thereby achieving shape optimization. Due to the device's symmetry, one-half of the mechanism is modeled as a cantilever beam undergoing large deformation. ANSYS' optimization module is employed using the first order method because it is capable of performing optimization considering non-linear deformation and multiple loading conditions. Finally, prototypes are fabricated using wire EDM and prototype evaluations are conducted to compare size versus shape optimization, and to validate ANSYS as the solution method.
机译:在1 mm多功能仪器上开发和实现尺寸和形状优化程序,用于微创手术。仪器是一种柔顺机制,无需铰链,能够抓住和切割。由于能够执行多项任务,多功能仪器在手术室中被证明是有益的,从而降低了单个程序中的仪器交换总数。此外,较少交换无意组织创伤的风险以及整体手术时间和成本都减少。本文的焦点是研究允许沿装置长度沿横截面积变化的性能效果。这是通过在参数变量(W_1)的沿着装置的各种横截面段来实现,并优化尺寸以提供足够的钳子钳口,同时保持足够的切割和抓握力。考虑了两个优化问题。首先,设置所有参数段等于彼此等于允许所有横截面均匀变化和实现尺寸优化的彼此变化。其次,每个段被定义为单独的设计变量,以允许段独立地变化,从而实现形状优化。由于设备对称性,其中一半机构被建模为悬臂光束,遭受大变形。使用第一订单方法采用ANSYS的优化模块,因为它能够考虑考虑非线性变形和多个负载条件的优化。最后,使用电线EDM制造原型,并进行原型评估以比较大小与形状优化,并验证ANSYS作为解决方案方法。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号