School of Electronics and Information Engineering, Southwest Petroleum University, Chengdu, Sichuan, China.
Key Laboratory of Convergence Medical Engineering System and Healthcare Technology, The Ministry of Industry and Information, School of Life Science, Beijing Institute of Technology, Haidian District, Beijing, China.
Med Biol Eng Comput. 2018 Jan;56(1):25-35. doi: 10.1007/s11517-017-1666-2. Epub 2017 Jun 30.
A number of remote robotic catheter systems have been developed to protect physicians from X-ray exposure in endovascular surgery. However, the teleoperation prevents the physicians sensing the force directly which may easily result in healthy vessels injured. To realize the safe operation, a tissue protection-based VR training system has been developed in this paper to prevent collateral damage by collision. The integrated VR simulator cannot only remind the novice possible collisions by visual signs, but also cooperate with the newly designed tissue protection mechanism to remit collision trauma beforehand. Such mechanism exploits the diameter variable pulley in order to implement the safe interaction between catheter and vasculature. To testify the effectiveness of the tissue protection in training system, we invited four non-medical students to participate the successive 5 days training session. The evaluation results show that the average impingement distance (representing tissue damage) to vascular wall has been reduced to 0.6 mm, and the collision frequency is greatly decreased which implies the realization of relative safe catheterization.
已经开发出许多远程机器人导管系统,以保护医生在血管内手术中免受 X 射线辐射。然而,远程操作阻止了医生直接感受力,这可能很容易导致健康的血管受伤。为了实现安全操作,本文开发了一种基于组织保护的虚拟现实培训系统,以防止碰撞造成的附带损伤。集成的 VR 模拟器不仅可以通过视觉标志提醒新手可能发生的碰撞,还可以与新设计的组织保护机制合作,预先减轻碰撞创伤。该机制利用直径可变滑轮来实现导管和脉管系统之间的安全交互。为了验证培训系统中的组织保护的有效性,我们邀请了四名非医学专业学生参加连续 5 天的培训课程。评估结果表明,血管壁的平均撞击距离(代表组织损伤)已减少到 0.6 毫米,碰撞频率大大降低,这意味着相对安全的导管插入术已经实现。