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经颅直流电刺激对复杂外科手术运动任务影响的脑-行为分析

Brain-behavior analysis of transcranial direct current stimulation effects on a complex surgical motor task.

作者信息

Walia Pushpinder, Fu Yaoyu, Norfleet Jack, Schwaitzberg Steven D, Intes Xavier, De Suvranu, Cavuoto Lora, Dutta Anirban

机构信息

Department of Biomedical Engineering, University at Buffalo, Buffalo, NY, United States.

Department of Industrial and Systems Engineering, University at Buffalo, Buffalo, NY, United States.

出版信息

Front Neuroergon. 2024 Jan 9;4:1135729. doi: 10.3389/fnrgo.2023.1135729. eCollection 2023.

Abstract

Transcranial Direct Current Stimulation (tDCS) has demonstrated its potential in enhancing surgical training and performance compared to sham tDCS. However, optimizing its efficacy requires the selection of appropriate brain targets informed by neuroimaging and mechanistic understanding. Previous studies have established the feasibility of using portable brain imaging, combining functional near-infrared spectroscopy (fNIRS) with tDCS during Fundamentals of Laparoscopic Surgery (FLS) tasks. This allows concurrent monitoring of cortical activations. Building on these foundations, our study aimed to explore the multi-modal imaging of the brain response using fNIRS and electroencephalogram (EEG) to tDCS targeting the right cerebellar (CER) and left ventrolateral prefrontal cortex (PFC) during a challenging FLS suturing with intracorporeal knot tying task. Involving twelve novices with a medical/premedical background (age: 22-28 years, two males, 10 females with one female with left-hand dominance), our investigation sought mechanistic insights into tDCS effects on brain areas related to error-based learning, a fundamental skill acquisition mechanism. The results revealed that right CER tDCS applied to the posterior lobe elicited a statistically significant ( < 0.05) brain response in bilateral prefrontal areas at the onset of the FLS task, surpassing the response seen with sham tDCS. Additionally, right CER tDCS led to a significant ( < 0.05) improvement in FLS scores compared to sham tDCS. Conversely, the left PFC tDCS did not yield a statistically significant brain response or improvement in FLS performance. In conclusion, right CER tDCS demonstrated the activation of bilateral prefrontal brain areas, providing valuable mechanistic insights into the effects of CER tDCS on FLS peformance. These insights motivate future investigations into the effects of CER tDCS on error-related perception-action coupling through directed functional connectivity studies.

摘要

与假经颅直流电刺激(tDCS)相比,经颅直流电刺激(tDCS)已显示出其在增强手术训练和表现方面的潜力。然而,要优化其疗效,需要根据神经影像学和机制理解来选择合适的脑靶点。先前的研究已经证实了在腹腔镜手术基础(FLS)任务中使用便携式脑成像(将功能近红外光谱(fNIRS)与tDCS相结合)的可行性。这使得能够同时监测皮层激活情况。基于这些基础,我们的研究旨在探索在具有挑战性的FLS缝合及体内打结任务期间,使用fNIRS和脑电图(EEG)对针对右侧小脑(CER)和左侧腹外侧前额叶皮层(PFC)的tDCS进行脑反应的多模态成像。我们的研究涉及12名具有医学/医学预科背景的新手(年龄:22 - 28岁,2名男性,10名女性,其中1名女性为左利手),旨在深入了解tDCS对与基于错误的学习(一种基本技能获取机制)相关脑区的影响机制。结果显示,应用于后叶的右侧CER tDCS在FLS任务开始时,在双侧前额叶区域引发了具有统计学意义(<0.05)的脑反应,超过了假tDCS所见的反应。此外,与假tDCS相比,右侧CER tDCS导致FLS评分有显著(<0.05)改善。相反,左侧PFC tDCS未产生具有统计学意义的脑反应,也未改善FLS表现。总之,右侧CER tDCS显示出双侧前额叶脑区的激活,为CER tDCS对FLS表现的影响提供了有价值的机制见解。这些见解促使未来通过定向功能连接性研究,进一步探究CER tDCS对与错误相关的感知 - 动作耦合的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fb71/10790853/7258c75eacbb/fnrgo-04-1135729-g0002.jpg

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