钻探
流离失所(心理学)
椎骨
计算机科学
机器人
模拟
职位(财务)
人工智能
补偿(心理学)
固定(群体遗传学)
生物医学工程
计算机视觉
工程类
地质学
机械工程
医学
心理治疗师
心理学
人口
经济
财务
古生物学
精神分析
环境卫生
作者
Zhongliang Jiang,Long Lei,Yu Sun,Xiaozhi Qi,Ying Hu,Bing Li,Nassir Navab,Jianwei Zhang
标识
DOI:10.1109/tmrb.2020.3000299
摘要
Drilling is one of the hardest parts of pedicle screw fixation, and it is one of the most dangerous operations because inaccurate screw placement would injury vital tissues, particularly when the vertebra is not stationary. Here we demonstrate the drilling state recognition method for moving tissue by compensating the displacement based on a simplified motion predication model of a vertebra with respect to the tidal volume. To adapt it to different patients, the prediction model was built based on the physiological data recorded from subjects themselves. In addition, the spindle speed of the drilling tool was investigated to find a suitable speed for the robotic-assisted system. To ensure patient safety, a monitoring system was built based on the thrusting force and tracked position information. Finally, experiments were carried out on a fresh porcine lamellar bone fixed on a 3-PRS parallel robot used to simulate the vertebra displacement. The success rate of the robotic-assisted drilling procedure reached 95% when the moving bone was compensated.
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