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医学工程与显微神经外科:应用与未来

Medical Engineering and Microneurosurgery: Application and Future.

作者信息

Morita Akio, Sora Shigeo, Nakatomi Hirofumi, Harada Kanako, Sugita Naohiko, Saito Nobuhito, Mitsuishi Mamoru

机构信息

Department of Neurological Surgery, Nippon Medical School.

出版信息

Neurol Med Chir (Tokyo). 2016 Oct 15;56(10):641-652. doi: 10.2176/nmc.ra.2016-0107. Epub 2016 Jul 26.

Abstract

Robotics and medical engineering can convert traditional surgery into digital and scientific procedures. Here, we describe our work to develop microsurgical robotic systems and apply engineering technology to assess microsurgical skills. With the collaboration of neurosurgeons and an engineering team, we have developed two types of microsurgical robotic systems. The first, the deep surgical systems, enable delicate surgical procedures such as vessel suturing in a deep and narrow space. The second type allows for super-fine surgical procedures such as anastomosing artificial vessels of 0.3 mm in diameter. Both systems are constructed with master and slave manipulator robots connected to local area networks. Robotic systems allowed for secure and accurate procedures in a deep surgical field. In cadaveric models, these systems showed a good potential of being useful in actual human surgeries, but mechanical refinements in thickness and durability are necessary for them to be established as clinical systems. The super-fine robotic system made the very intricate surgery possible and will be applied in clinical trials. Another trial included the digitization of surgical technique and scientific analysis of surgical skills. Robotic and human hand motions were analyzed in numerical fashion as we tried to define surgical skillfulness in a digital format. Engineered skill assessment is also feasible and should be useful for microsurgical training. Robotics and medical engineering should bring science into the surgical field and training of surgeons. Active collaboration between medical and engineering teams and academic and industry groups is mandatory to establish such medical systems to improve patient care.

摘要

机器人技术与医学工程能够将传统手术转变为数字化和科学化的程序。在此,我们描述了我们开发显微外科机器人系统并应用工程技术评估显微外科技能的工作。在神经外科医生和一个工程团队的合作下,我们开发了两种类型的显微外科机器人系统。第一种是深部手术系统,能够进行精细的外科手术,如在深部狭窄空间内进行血管缝合。第二种类型则允许进行超精细的外科手术,如吻合直径为0.3毫米的人造血管。这两种系统均由连接到局域网的主从操作机器人构成。机器人系统使得在深部手术领域能够进行安全且精确的手术。在尸体模型中,这些系统显示出在实际人体手术中具有良好的应用潜力,但要将它们确立为临床系统,还需要在厚度和耐用性方面进行机械改进。超精细机器人系统使极其复杂的手术成为可能,并将应用于临床试验。另一项试验包括手术技术的数字化以及对外科技能的科学分析。当我们试图以数字形式定义手术熟练程度时,对机器人和人类的手部动作进行了数值分析。工程化的技能评估也是可行的,并且应该对外科显微手术培训有用。机器人技术与医学工程应将科学引入外科领域以及外科医生的培训中。医学团队与工程团队以及学术和产业团体之间的积极合作对于建立此类医疗系统以改善患者护理至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ccfc/5066085/c5944a16fb1f/nmc-56-641-g1.jpg

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