用于内窥镜神经外科手术的手持式机器人设备:系统集成和临床前评估

IF 2.9 Q2 ROBOTICS
E. Dimitrakakis, G. Dwyer, Nicola Newall, Danyal Z. Khan, Hani J. Marcus, Danail Stoyanov
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引用次数: 0

摘要

扩展内窥镜鼻内孔入路是内窥镜神经外科手术的最佳范例之一,可通过鼻孔的自然孔道进入颅底。目前的标准器械缺乏衔接,限制了手术通道和外科医生的灵巧性,因此机器人衔接器械可从中受益。本研究介绍了一种手持式机器人系统,该系统带有一系列可拆卸的末端执行器,适用于这种方法。该系统由可互换的铰接式 2/3 自由度 3 毫米器械、符合人体工程学设计的手持控制器和配套的控制盒组成,前者可扩大手术工作空间,提高外科医生的灵活性,后者带有旋转操纵杆主体,可放置在用户最舒适的位置。实验对机器人器械的工作空间、结构完整性和施力能力进行了评估。然后,整个系统在临床前的模型可行性测试中进行了测试,随后由一批具有不同临床经验的外科医生进行了尸体试验研究。这一系列实验的结果表明,该系统具有更高的灵巧性和足够的坚固性,在临床应用中具有可行性,而且与目前的神经外科器械相比也有所改进。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Handheld robotic device for endoscopic neurosurgery: system integration and pre-clinical evaluation
The Expanded Endoscopic Endonasal Approach, one of the best examples of endoscopic neurosurgery, allows access to the skull base through the natural orifice of the nostril. Current standard instruments lack articulation limiting operative access and surgeon dexterity, and thus, could benefit from robotic articulation. In this study, a handheld robotic system with a series of detachable end-effectors for this approach is presented. This system is comprised of interchangeable articulated 2/3 degrees-of-freedom 3 mm instruments that expand the operative workspace and enhance the surgeon’s dexterity, an ergonomically designed handheld controller with a rotating joystick-body that can be placed at the position most comfortable for the user, and the accompanying control box. The robotic instruments were experimentally evaluated for their workspace, structural integrity, and force-delivery capabilities. The entire system was then tested in a pre-clinical context during a phantom feasibility test, followed up by a cadaveric pilot study by a cohort of surgeons of varied clinical experience. Results from this series of experiments suggested enhanced dexterity and adequate robustness that could be associated with feasibility in a clinical context, as well as improvement over current neurosurgical instruments.
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来源期刊
CiteScore
6.50
自引率
5.90%
发文量
355
审稿时长
14 weeks
期刊介绍: Frontiers in Robotics and AI publishes rigorously peer-reviewed research covering all theory and applications of robotics, technology, and artificial intelligence, from biomedical to space robotics.
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