Center for Micro-BioRobotics, Italian Institute of Technology, Viale Rinaldo Piaggio 34, Pontedera (PI), 56025, Italy.
The BioRobotics Institute, Scuola Superiore Sant'Anna, Viale Rinaldo Piaggio 34, Pontedera (PI), 56025, Italy.
Adv Sci (Weinh). 2021 Aug;8(15):e2100418. doi: 10.1002/advs.202100418. Epub 2021 Jun 2.
A chromogenically reversible, mechanochromic pressure sensor is integrated into a mininvasive surgical grasper compatible with the da Vinci robotic surgical system. The sensorized effector, also featuring two soft-material jaws, encompasses a mechanochromic polymeric inset doped with functionalized spiropyran (SP) molecule, designed to activate mechanochromism at a chosen pressure and providing a reversible color change. Considering such tools are systematically in the visual field of the operator during surgery, color change of the mechanochromic effector can help avoid tissue damage. No electronics is required to control the devised visual feedback. SP-doping of polydimethylsiloxane (2.5:1 prepolymer/curing agent weight ratio) permits to modulate the mechanochromic activation pressure, with lower values around 1.17 MPa for a 2% wt. SP concentration, leading to a shorter chromogenic recovery time of 150 s at room temperature (25 °C) under green light illumination. Nearly three-times shorter recovery time is observed at body temperature (37 °C). To the best of knowledge, this study provides the first demonstration of mechanochromic materials in surgery, in particular to sensorize unpowered surgical effectors, by avoiding dramatic increases in tool complexity due to additional electronics, thus fostering their application. The proposed sensing strategy can be extended to further tools and scopes.
一种显色可逆、压致变色压力传感器被集成到一种与达芬奇机器人手术系统兼容的微创手术夹具中。带有两个软质材料夹爪的传感器化执行器还包含一种掺杂有功能化螺吡喃(SP)分子的压致变色聚合物嵌段,旨在在选定的压力下激活压致变色,并提供可逆的颜色变化。考虑到此类工具在手术过程中系统地处于操作者的视野范围内,压致变色执行器的颜色变化可以帮助避免组织损伤。不需要电子设备来控制设计的视觉反馈。聚二甲基硅氧烷(预聚物/固化剂重量比为 2.5:1)的 SP 掺杂允许调节压致变色的激活压力,对于 2%wt 的 SP 浓度,较低的值约为 1.17 MPa,导致在室温(25°C)下绿光照射下的显色恢复时间为 150 s。在体温(37°C)下,观察到近三倍的较短恢复时间。据所知,这项研究首次在手术中展示了压致变色材料,特别是通过避免由于额外的电子设备而导致工具复杂性的显著增加来对无动力手术执行器进行传感,从而促进了它们的应用。所提出的传感策略可以扩展到其他工具和范围。