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OBJECTIVE ASSESSMENT OF MINIMALLY INVASIVE SURGICAL SKILLS

机译:微创手术技能的客观评估

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Minimally invasive surgery (MIS) is known to be a difficult procedure to master due to its complexity, compared to traditional open surgery. Therefore, an objective and quantitative assessment tool is highly required in MIS, which can be used for determining surgeon's skills, evaluating educational programs and providing subjects with unbiased feedback. The goal of this paper is to review various assessment methods, summarize capabilities of the methods, and suggest future possible improvements. Specifically, this paper categorize existing methods into two groups: the first and the most well known group focuses on the analysis of surgical motions, and the other group uses force and torque as a key metric. Specifically, motion analysis includes tracking the body, tool, or hand motions of a surgeon, either from teleoperated robotic systems or surgical simulators using different sensors like wireless or electromagnetic motion tracking sensors, video-glove-based input devices, optical tracking system, or magnetic tracking technologies. Sometimes data explored form this method is synchronized with eye-gaze data (what a surgeon looks at while operating), or videographic data. Using motion analysis actually the number of movements, rate of movements, total path length, movement variability, time taken to complete the operation, average or peak velocity are considered for assessing surgical skills. On the other hand, the methods in the second group assess the skills based on force and toque data that surgeons apply through surgical instruments. More specifically, these methods use different kind of sensors placed on the grasper. Different force and torque measurement systems, hidden-Markov-model-based analysis, simulated models with criteria, and Virtual reality have been developed, allowing for the quantification of the performance of surgeons. Although, each method has its own advantageous, and according to the kind of surgical task and evaluation, these methods can be used successfully to assess surgical skills, to provide predictive validity for each of these methods more study is needed. Also, future works should improve the efficiency of each method and move toward automated, low-cost and real time assessment methods.
机译:与传统的开放式手术相比,由于其复杂性,已知微创手术(MIS)难以掌握。因此,MIS中非常需要客观和定量的评估工具,该工具可用于确定外科医生的技能,评估教育计划并为受试者提供公正的反馈。本文的目的是回顾各种评估方法,总结这些方法的功能,并提出未来可能的改进方案。具体来说,本文将现有方法分为两类:第一组和最知名的组专注于分析手术动作,另一组使用力和扭矩作为关键指标。具体来说,运动分析包括使用不同的传感器(例如无线或电磁运动跟踪传感器,基于视频手套的输入设备,光学跟踪系统或其他),从远程操作的机器人系统或手术模拟器中跟踪外科医生的身体,工具或手部运动。磁跟踪技术。有时,通过这种方法探索的数据会与视线数据(外科医生在手术时所看到的)或录像数据同步。实际上,通过运动分析可以考虑运动次数,运动速率,总路径长度,运动变异性,完成手术所花费的时间,平均或峰值速度,以评估手术技能。另一方面,第二组中的方法根据外科医生通过手术器械施加的力和扭矩数据评估技能。更具体地说,这些方法使用放置在抓紧器上的不同类型的传感器。已经开发了不同的力和扭矩测量系统,基于隐马尔可夫模型的分析,带有标准的模拟模型以及虚拟现实,从而可以量化外科医生的表现。尽管每种方法都有其自身的优势,并且根据手术任务和评估的种类,这些方法可以成功地用于评估手术技能,以为每种方法提供预测效度,需要进行更多的研究。此外,未来的工作应提高每种方法的效率,并朝着自动化,低成本和实时评估方法发展。

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