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Quantitative Analysis of Transnasal Anterior Skull Base Approach: Report of Technology for Intraoperative Assessment of Instrument Motion

机译:跨越颅骨基础方法的定量分析:仪器运动术中评估技术报告

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Objective: To develop a method to measure intraoperative surgical instrument motion. This model will be applicable to the study of surgical instrument kinematics including surgical training, skill verification, and the development of surgical warning systems that detect aberrant instrument motion that may result in patient injury. Design: We developed an algorithm to automate derivation of surgical instrument kinematics in an endoscopic endonasal skull base surgery model. Surgical instrument motion was recorded during a cadaveric endoscopic transnasal approach to the pituitary using a navigation system modified to record intraoperative time-stamped Euclidian coordinates and Euler angles. Microdebrider tip coordinates and angles were referenced to the cadaver's preoperative computed tomography scan allowing us to assess surgical instrument kinematics over time. A representative cadaveric endoscopic endonasal approach to the pituitary was performed to demonstrate feasibility of our algorithm for deriving surgical instrument kinematics. Conclusions: Technical feasibility of automatically measuring intraoperative surgical instrument motion and deriving kinematics measurements was demonstrated using standard navigation equipment.
机译:目的:开发一种衡量术中外科仪器运动的方法。该模型适用于外科仪器运动学研究,包括外科培训,技能验证以及检测可能导致患者损伤的异常仪器运动的手术警告系统。设计:我们开发了一种自动化外科内蒙古颅底手术模型中外科仪器运动学推导的算法。使用导航系统在垂体上的尸体内窥镜跨野前课程方法期间记录手术器械运动,该方法使用导航系统进行修改以记录术中的时间戳的欧氏坐标坐标和欧拉角度。 MicrodeBrider尖端坐标和角度参考了Cadaver的术前计算断层扫描扫描,允许我们随着时间的推移评估手术仪器运动学。进行了垂体的代表性尸体内窥镜内蒙联方法,以证明我们用于导出外科仪器运动学的算法的可行性。结论:使用标准导航设备证明了自动测量术中手术仪器运动和导出运动学测量的技术可行性。

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