在模拟微创手术任务中使用线性和非线性材料研究触觉断裂距离

Investigating haptic distance-to-break using linear and nonlinear materials in a simulated minimally invasive surgery task

Ergonomics · 2015
被引 10
ABS 3

中文导读

研究显示操作者能通过触觉信息感知模拟组织在断裂前还能变形多少,这对设计手术训练模拟器和自动化系统有帮助。

Abstract

Accurate detection of mediated haptic information in minimally invasive surgery (MIS) is critical for applying appropriate force magnitudes onto soft tissue with the aim of minimising tissue trauma. Force perception in MIS is a dynamic process, with surgeons' administration of force into tissue revealing information about the remote surgical site which further informs the surgeons' haptic interactions. The relationship between applied force and material deformation rate provides biomechanical information specifying the deformation distance remaining until a tissue will fail: which is termed distance-to-break (DTB). The current study demonstrates that observers can detect DTB while deforming simulated tissues and stop before reaching the tissues' failure points. The design of training simulators, control devices and automated robotic systems for applications outside of MIS is discussed. Practitioner Summary: In MIS, haptic information is critical for applying appropriate forces onto soft tissue to minimise tissue trauma. Observers used force information to detect how far they could deform a virtual tissue before it would break. The design of training simulators, control devices and automated robotic systems is discussed.

微创手术触觉技术虚拟现实生物力学手术模拟