Digestive Endoscopy Unit, IRCCS - Fondazione Policlinico Universitario Agostino Gemelli, Rome, Italy.
Department of Digestive Surgery and Endoscopy, IHU Strasbourg, Strasbourg, France.
Dig Endosc. 2019 Mar;31(2):119-124. doi: 10.1111/den.13270. Epub 2018 Oct 24.
Many different types of endoscopy robot have been developed or are under development. Some of these innovative biotechnologies are dedicated to complex endoscopic procedures such as endoscopic submucosal dissection whereas others are purely diagnostic. In endoscopy robotics, there are still several problems that need a solution. These problems basically concern robotic locomotion and instrument control, as well as clinical application. In most cases, the technology is still under development. The current fields of investigation are augmented reality, advances in actuation and reduction of hysteresis, optical analysis, wireless movement transmission and many others. Besides endoscopic submucosal dissection, other promising fields of implementation of endoscopy robots are natural orifices transluminal endoscopic surgery and bariatric endoscopy. Obviously, endoscopy robots are expensive, but both doctors and health system providers are becoming more aware of the possibilities that these platforms can offer. Improvement of the performance of endoscopy robots undoubtedly will lead to their widespread use and, therefore, a balance in cost-effectiveness.
已经开发或正在开发许多不同类型的内窥镜机器人。其中一些创新生物技术专门用于复杂的内窥镜手术,如内窥镜黏膜下剥离术,而其他则纯粹是诊断性的。在内窥镜机器人领域,仍然存在几个需要解决的问题。这些问题基本上涉及机器人的运动和仪器控制,以及临床应用。在大多数情况下,该技术仍在开发中。目前的研究领域包括增强现实、驱动技术的进步和滞后的减少、光学分析、无线运动传输等。除了内窥镜黏膜下剥离术,内窥镜机器人的其他有前途的应用领域是自然腔道内镜手术和减肥内镜。显然,内窥镜机器人价格昂贵,但医生和医疗系统提供者越来越意识到这些平台所能提供的可能性。内窥镜机器人性能的提高无疑将导致其广泛应用,从而实现成本效益的平衡。