The BioRobotics Institute, Scuola Superiore Sant'Anna, Pontedera, Italy.
Department of Industrial Engineering, University of Florence, Firenze, Italy.
Minim Invasive Ther Allied Technol. 2022 Jan;31(1):42-49. doi: 10.1080/13645706.2020.1749083. Epub 2020 Apr 7.
During the last two decades, many surgical procedures have evolved from open surgery to minimally invasive surgery (MIS). This limited invasiveness has motivated the development of robotic assistance platforms to obtain better surgical outcomes. Nowadays, the da Vinci robot is a commercial tele-robotic platform widely used for different surgical applications.
In this work, the da Vinci Research Kit (dVRK), namely the research version of the da Vinci, is used to manipulate a novel microwave device in a teleoperation scenario. The dVRK provides an open source platform, so that the novel microwave tool, dedicated to prevention bleeding during hepatic resection surgery, is mechanically integrated on the slave side, while the software interface is adapted in order to correctly control tool pose. Tool integration is validated through and tests performed by expert surgeons, meanwhile the coagulative efficacy of the developed tool in a perfused liver model was proved in tests.
An innovative microwave tool for liver robotic resection has been realized and integrated into a surgical robot. The tool can be easily operated through the dVRK without limiting the intuitive and friendly use, and thus easily reaching the hemostasis of vessels.
在过去的二十年中,许多外科手术已经从开放性手术发展为微创手术(MIS)。这种微创性促使开发了机器人辅助平台以获得更好的手术效果。如今,达芬奇机器人是一种商业远程机器人平台,广泛应用于各种外科手术。
在这项工作中,使用了达芬奇研究套件(dVRK),即达芬奇的研究版本,以在远程操作场景中操纵新型微波设备。dVRK 提供了一个开源平台,因此专门用于肝切除术止血的新型微波工具可以机械集成在从机侧,同时对软件接口进行了适配,以便正确控制工具姿势。通过专家外科医生进行的 和 测试验证了工具的集成,同时在灌注肝脏模型中证明了所开发工具的凝固效果。
已经实现了一种用于肝机器人切除术的创新型微波工具,并将其集成到手术机器人中。该工具可以通过 dVRK 轻松操作,而不会限制直观友好的使用,从而轻松实现血管止血。