Kinematic analysis in oculoplastic reconstructive surgery: measuring manual control and fluidity of movement.

George M Saleh, Andre Litwin, J Richard O Collin, Geoffrey E Rose, Vinod Gauba, Salim Ghoussayni, Badrul Hussain
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引用次数: 5

Abstract

Objective: To evaluate higher-order kinematic analysis, a technique not previously applied to surgical skills assessment, as a tool for elucidating patterns of movement.

Methods: An observational cohort study of 27 subjects, divided into 3 equal groups based on surgical experience consisting of novice (performed <5 prior procedures), intermediate (performed 5-100 prior procedures), and expert (performed >100 prior procedures) subjects. The subjects placed a deep 3-1-1 suture onto a shielded hook on a standardized surgical skills practice board. Detailed 3-dimensional motion data were obtained using a motion capture system. Two novel parameters were used to analyze movement patterns: the frequency distribution (cumulative histogram), describing the distribution of movement sizes used, and the probability density function (normalization of frequency distribution data), evaluating the distribution of motion against the magnitude of movement. The α risk for statistical significance was set at .05.

Results: We found significant differences among the 3 groups for frequency distribution (P = .02; Kruskal-Wallis test) and probability density function (P = .03).

Conclusions: These 2 indices, derived from kinematic analysis, appear to distinguish between groups of test subjects with known differences in surgical experience. The evaluation of higher-order motion patterns appears to be of value in the objective evaluation of surgical skills. This method for assessment of manual skills is likely to provide a better guide as to which patterns of movement have the greatest efficiency for specific tasks.

眼整形重建手术的运动学分析:测量人工控制和运动的流动性。
目的:评估高阶运动学分析,一种以前未应用于外科技能评估的技术,作为阐明运动模式的工具。方法:采用观察性队列研究,27例受试者根据手术经验分为3组,其中包括新手(100例)。受试者将深3-1-1缝线置于标准外科技能练习板上的屏蔽钩上。使用运动捕捉系统获得详细的三维运动数据。两个新的参数用于分析运动模式:频率分布(累积直方图),描述所使用的运动大小的分布,以及概率密度函数(频率分布数据的归一化),根据运动的大小评估运动的分布。具有统计学意义的α风险设为0.05。结果:三组间频率分布差异有统计学意义(P = 0.02;Kruskal-Wallis检验)和概率密度函数(P = .03)。结论:从运动学分析得出的这两个指标似乎可以区分已知手术经验差异的测试对象组。高阶运动模式的评估似乎在客观评估手术技能方面有价值。这种评估手工技能的方法可能会提供更好的指导,以确定哪种运动模式对特定任务最有效。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Archives of ophthalmology
Archives of ophthalmology 医学-眼科学
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审稿时长
3-8 weeks
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