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光学追踪系统在腹腔镜手术运动技能评估中的应用。

Application of an Optical Tracking System for Motor Skill Assessment in Laparoscopic Surgery.

机构信息

Equipment Department, Shanghai Changhai Hospital, Shanghai 200433, China.

School of Information Science and Technology, Shanghaitech University, Shanghai 201210, China.

出版信息

Comput Math Methods Med. 2022 Jul 22;2022:2332628. doi: 10.1155/2022/2332628. eCollection 2022.

Abstract

OBJECTIVE

Motion analysis of surgical instruments can be used to evaluate laparoscopic surgical skills, and this study assessed the validity of an optical tracking system for the assessment of laparoscopic surgical motor skills.

METHODS

Ten experienced surgeons and ten novices were recruited to complete the transferring tasks on a laparoscopic simulator. An optical tracking system, Micron Tracker, was used to capture the marker points on each instrument and to obtain the coordinates of the marker points and the corresponding instrument tip coordinates. The data are processed to create a coordinate system based on the laparoscopic simulator and to calculate the movement parameters of the instruments, such as operating time, path length, speed, acceleration, and smoothness. At the same time, the range of motion of the instrument (insertion depth and pivoting angle) is also calculated.

RESULTS

The position that the tip of the instrument can reach is a small, irregularly shaped spatial area. Significant differences ( < 0.05) were found between the surgeon and novice groups in parameters such as operating time, path length, mean speed, mean acceleration, and mean smoothness. The range of insertion depth of the instruments was approximately 150 mm to 240 mm, and the pivoting angles of the left and right instruments were 30.9° and 46.6° up and down and 28.0° and 35.0° left and right, respectively.

CONCLUSIONS

The optical tracking system was effective in subjectively evaluating laparoscopic surgical skills, with significant differences between the surgeon and novice groups in terms of movement parameters, but not in terms of range of motion.

摘要

目的

手术器械的运动分析可用于评估腹腔镜手术技能,本研究评估了光学跟踪系统评估腹腔镜手术运动技能的有效性。

方法

招募了 10 名经验丰富的外科医生和 10 名新手来完成腹腔镜模拟器上的转移任务。使用光学跟踪系统 Micron Tracker 捕获每个器械上的标记点,并获取标记点和相应器械尖端坐标的坐标。对数据进行处理,以创建基于腹腔镜模拟器的坐标系,并计算器械的运动参数,如操作时间、路径长度、速度、加速度和平滑度。同时,还计算了器械的运动范围(插入深度和枢轴角度)。

结果

器械尖端可以到达的位置是一个小的、不规则形状的空间区域。在操作时间、路径长度、平均速度、平均加速度和平均平滑度等参数方面,外科医生组和新手组之间存在显著差异(<0.05)。器械的插入深度范围约为 150mm 至 240mm,左右器械的枢轴角度向上和向下分别为 30.9°和 46.6°,向左和向右分别为 28.0°和 35.0°。

结论

光学跟踪系统在主观评估腹腔镜手术技能方面是有效的,外科医生组和新手组在运动参数方面存在显著差异,但在运动范围方面没有差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/39ca/9337947/aa12a2aac8cf/CMMM2022-2332628.001.jpg

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