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一种新型主从模式神经介入手术机器人系统的动物实验

Animal Experiment of a Novel Neurointerventional Surgical Robotic System with Master-Slave Mode.

作者信息

Liu Keyun, Jiang Yuhua, Li Youxiang

机构信息

Department of Intervention, Beijing Chaoyang Hospital, Capital Medical University, Beijing 100020, China.

Department of Interventional Neuroradiology, Beijing Neurosurgical Institute and Beijing Tiantan Hospital, Capital Medical University, Beijing 100050, China.

出版信息

Appl Bionics Biomech. 2021 Jan 28;2021:8836268. doi: 10.1155/2021/8836268. eCollection 2021.

Abstract

In order to inspect and improve the system performance of the neuro-interventional surgical robot and its effectiveness and safety in clinical applications, we conducted ten animal experiments using this robotic system. Cerebral angiography was performed on ten experimental animals, and various mechanical performance indicators, operating time, X-ray radiation dosage to the experimental animals and the experimenter, and arterial damage in the experimental animals were recorded when the robotic system completed cerebral angiography. The results show that the robotic system can successfully complete the cerebral angiography surgery, and the mechanical performance is up to standard. The operating time is almost the same as the physician's operating time. And the mean X-ray radiation dosage received by the experimental animals and experimenter was 0.893 Gy and 0.0859 mSv, respectively. There were no complications associated with damage to the vascular endothelium. The robotic system can basically complete the relevant assessment indicators, and its system performance, effectiveness, and safety in clinical applications meet the standards, basically meeting the requirements of clinical applications of neurointerventional surgery.

摘要

为了检测和改善神经介入手术机器人的系统性能及其在临床应用中的有效性和安全性,我们使用该机器人系统进行了十次动物实验。对十只实验动物进行了脑血管造影,并在机器人系统完成脑血管造影时记录了各种机械性能指标、手术时间、实验动物和实验者所接受的X射线辐射剂量以及实验动物的动脉损伤情况。结果表明,该机器人系统能够成功完成脑血管造影手术,机械性能达标。手术时间与医生的手术时间基本相同。实验动物和实验者所接受的平均X射线辐射剂量分别为0.893 Gy和0.0859 mSv。未出现与血管内皮损伤相关的并发症。该机器人系统基本能够完成相关评估指标,其系统性能、有效性和在临床应用中的安全性均符合标准,基本满足神经介入手术临床应用的要求。

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