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Studying Brain Activation during Skill Acquisition via Robot-Assisted Surgery Training

机译:通过机器人辅助手术训练研究技能获取的脑激活

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摘要

Robot-assisted surgery systems are a recent breakthrough in minimally invasive surgeries, offering numerous benefits to both patients and surgeons including, but not limited to, greater visualization of the operation site, greater precision during operation and shorter hospitalization times. Training on robot-assisted surgery (RAS) systems begins with the use of high-fidelity simulators. Hence, the increasing demand of employing RAS systems has led to a rise in using RAS simulators to train medical doctors. The aim of this study was to investigate the brain activity changes elicited during the skill acquisition of resident surgeons by measuring hemodynamic changes from the prefrontal cortex area via a neuroimaging sensor, namely, functional near-infrared spectroscopy (fNIRS). Twenty-four participants, who are resident medical doctors affiliated with different surgery departments, underwent an RAS simulator training during this study and completed the sponge suturing tasks at three different difficulty levels in two consecutive sessions/blocks. The results reveal that cortical oxygenation changes in the prefrontal cortex were significantly lower during the second training session (Block 2) compared to the initial training session (Block 1) (p < 0.05).
机译:机器人辅助手术系统是最近在微创手术中的最新突破,为患者和外科医生提供了许多益处,包括但不限于操作现场的更大可视化,在操作期间更高的精度和较短的住院时间。关于机器人辅助手术(RAS)系统的培训始于使用高保真模拟器。因此,采用RAS系统的需求越来越大导致使用RAS模拟器培训医生的增加。本研究的目的是通过测量通过神经影像传感器,即功能近红外光谱(FNIR)来研究通过测量来自前额叶皮质区域的血流动力学改变在驻留外科医生的技能获取期间引发的大脑活动变化。二十四名参与者,居民医学医生隶属于不同的外科部门,在这项研究期间接受了RAS模拟器培训,并在连续两个会议/块中完成了三种不同难度水平的海绵缝合任务。结果表明,与初始训练会话相比,在第二次训练期间(框2)在第二训练期间(框2)在第二训练期间(框2)的皮质氧化变化(P <0.05)。

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