Six-dimensional constraints and force feedback for robot-assisted teleoperated fracture reduction

遥操作 还原(数学) 机器人 触觉技术 模拟 计算机科学 方向(向量空间) 透视 偏移量(计算机科学) 固定装置 控制理论(社会学) 人工智能 数学 工程类 机械工程 控制(管理) 外科 医学 几何学 程序设计语言
作者
Jingtao Lei,Guangqing Song
出处
期刊:Robotica [Cambridge University Press]
卷期号:42 (7): 2328-2344 被引量:2
标识
DOI:10.1017/s0263574724000687
摘要

Abstract Robots have the capability to perform precise and minimally invasive surgeries. For the robot-assisted teleoperated fracture reduction surgery, the operating accuracy largely depends on visual reference through fluoroscopy. The operator needs to adjust several times according to computed tomography (CT) image. During the robot reduction surgery, there are large muscle forces generated by the numerous muscles surrounding the fractured segments. However, there is no effective reduction force feedback to the master robot. In this paper, in order to improve the operating accuracy of the fracture reduction with teleoperated surgery mode, six-dimensional constraints of the master robot are studied by utilizing the virtual fixture method, which can restrict the position and orientation through the force and visual guidance. The six-dimensional force sensor is used to collect information of the reduction force. For the master robot, a motor stall control method based on the current loop is adopted to provide feedback of the reduction force, which can enhance the surgeon’s sense of operational presence. To verify the effectiveness of virtual fixture and force feedback, the fracture reduction experiments are conducted on the fractured model with simulating lager muscle force. Experimental results show that the reduction errors are within acceptable ranges: $0.03\pm 0.73\textrm{mm}$ , $0.54\pm 0.43\textrm{mm}$ , $0.46\pm 1.05\textrm{mm}$ , $1.05\pm 1.31^{\circ}$ , $1.15\pm 1.91^{\circ}$ , $1.09\pm 2.61^{\circ}$ . The number of fluoroscopy procedures required ranges from 1 to 2 and the average operation time is approximately 170 s. Compared to traditional methods and other teleoperation methods, the fracture reduction accuracy and surgical efficiency of method in this paper are significantly improved.
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