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Effects of Transcutaneous Electric Nerve Stimulation on Upper Extremity Proprioceptive Function

机译:经皮神经电刺激对上肢本体感受功能的影响

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Electrical stimulation of the vagus nerve has been shown to enhance cortical plasticity and may benefit upper extremity rehabilitation following stroke. As an initial step towards assessing the potential of other craniocervical nerves as neuromodulation targets during rehabilitation, we explored the ability of non-invasive stimulation of cervical spine afferents, paired with a proprioceptive discrimination task, to improve sensory function in neurologically intact human subjects. On each trial, subjects’ arms were moved by a robot from a test position, along a random path, to a judgment position located 1-4 cm away. Subjects responded ‘same’ if the judgment position was the same as the test or ‘different’ if it was not. These responses were used to compute proprioceptive sensitivity and bias. Three groups of 20 subjects received transcutaneous electric nerve stimulation to the C3/C4 cervical spine at one of three frequencies (30 Hz, 300 Hz, 3 kHz) for 10 minutes prior to task performance. A fourth group served as a sham. We found a statistically significant interaction between stimulation frequency and displacement distance on proprioceptive sensitivity. In summary, stimulation of cervical spine afferents may enhance arm proprioceptive function, though in unimpaired subjects these gains depend on both stimulation frequency and discrimination distance.Clinical Relevance— This study provides preliminary data on the potential for non-invasive stimulation of cervical spine afferents to enhance recovery of function following stroke and other neurological disorders
机译:迷走神经的电刺激已显示可增强皮质可塑性,并可能有益于中风后上肢的康复。作为评估康复过程中其他颅颈神经作为神经调节靶点的潜力的第一步,我们探索了无创刺激颈椎传入神经的能力,并结合了本体感觉辨别任务,以改善神经功能完整的人类受试者的感觉功能。在每次试验中,机器人将受试者的手臂从测试位置沿着随机路径移动到1-4厘米远的判断位置。如果判断位置与测试相同,则受试者回答“相同”,否则返回“不同”。这些反应用于计算本体感受敏感性和偏倚。在执行任务之前,三组20名受试者在三种频率(30 Hz,300 Hz,3 kHz)之一中接受了对C3 / C4颈椎的经皮电神经刺激,持续10分钟。第四组为假人。我们发现刺激频率和位移距离在本体感受敏感性上具有统计学意义的相互作用。总之,对颈椎传入神经的刺激可能会增强手臂的本体感受功能,尽管在未受损的受试者中,这些增益取决于刺激频率和辨别距离。增强中风和其他神经系统疾病后的功能恢复

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