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Skills learning in robot-assisted surgery is benefited by task-specific augmented feedback

机译:特定于任务的增强反馈使机器人辅助手术中的技能学习受益

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摘要

Background: Providing augmented visual feedback is one way to enhance robot-assisted surgery (RAS) training. However, it is unclear whether task specificity should be considered when applying augmented visual feedback. Methods: Twenty-two novice users of the da Vinci Surgical System underwent testing and training in 3 tasks: simple task, bimanual carrying (BC); intermediate task, needle passing (NP); and complex task, suture tying (ST). Pretraining (PRE), training, and posttraining (POST) trials were performed during the first session. Retention trials were performed 2 weeks later (RET). Participants were randomly assigned to 1 of 4 feedback training groups: relative phase (RP), speed, grip force, and video feedback groups. Performance measures were time to task completion (TTC), total distance traveled (D), speed (S), curvature, relative phase, and grip force (F). Results: Significant interaction for TTC and curvature showed that the RP feedback training improved temporal measures of complex ST task compared to simple BC task. Speed feedback training significantly improved the performance in simple BC task in terms of TTC, D, S, curvature, and F even after retention. There was also a lesser long-term effect of speed feedback training on complex ST task. Grip force feedback training resulted in significantly greater improvements in TTC and curvature for complex ST task. For the video feedback training group, the improvements in most of the outcome measures were evident only after RET. Conclusions: Task-specific augmented feedback is beneficial to RAS skills learning. Particularly, the RP and grip force feedback could be useful for training complex tasks.
机译:背景:提供增强的视觉反馈是增强机器人辅助手术(RAS)训练的一种方法。但是,尚不清楚在应用增强的视觉反馈时是否应考虑任务的特殊性。方法:达芬奇手术系统的22名新手用户接受了3个任务的测试和培训:简单任务,双手携带(BC);中间任务,通过针(NP);和复杂的任务,缝合线(ST)。在第一阶段进行了预培训(PRE),培训和后培训(POST)试验。保留试验在2周后进行(RET)。参与者被随机分配到4个反馈训练组中的1个:相对相位(RP),速度,抓地力和视频反馈组。绩效指标是完成任务的时间(TTC),总行驶距离(D),速度(S),曲率,相对相位和抓地力(F)。结果:TTC和曲率的显着相互作用表明,与简单BC任务相比,RP反馈训练改善了复杂ST任务的时间测量。即使保留后,速度反馈训练也显着提高了简单BC任务在TTC,D,S,曲率和F方面的性能。速度反馈培训对复杂的ST任务的长期影响也较小。握力反馈训练可显着提高复杂ST任务的TTC和曲率。对于视频反馈培训小组,大多数结果指标的改善只有在RET后才明显。结论:特定于任务的增强反馈有助于RAS技能学习。特别是,RP和抓地力反馈对于训练复杂任务可能很有用。

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