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首页> 外文期刊>Journal of Neural Transmission >Far field potentials from brain stem after transcutaneous Vagus nerve stimulation: optimization of stimulation and recording parameters
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Far field potentials from brain stem after transcutaneous Vagus nerve stimulation: optimization of stimulation and recording parameters

机译:经皮迷走神经刺激后脑干的远场电位:刺激和记录参数的优化

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摘要

The method of vagus somatosensory evoked potentials (VSEP) was introduced to easily measure the activity of vagus brain stem nuclei. In Alzheimer’s disease, this measure was characterized by longer latencies as compared to controls while amplitudes did not show statistical significant differences at frontal and central recording sites. Therefore, the influence of stimulation and recording parameters on amplitudes of VSEP were systematically examined. In 20 healthy participants, VSEP measurement was done by electrical stimulation of the cutaneous representation of the vagus nerve in the external auditory channel and recording of VSEP over the scalp. The optimum stimulation intensity is 8 mA without perception of pain. There is no effect of stimulation side or gender. Maximum VSEP amplitudes are detected at bipolar recordings comprising the electrode T4 without statistically significant differences of latencies, wave shape and polarity. Thus, recordings of future examinations should be performed at 8 mA including this temporal electrode position. The reason for focussing on brain stem evoked potentials is that recent work has accumulated evidence for this area being involved in early phases of neurodegenerative diseases such as Alzheimer’s disease and Parkinson’s disease. Improved methodological knowledge may facilitate the assessment of this non-invasive and cost-effective method in the early diagnosis of neurodegenerative disorders.
机译:引入迷走神经体感诱发电位(VSEP)方法可以轻松测量迷走性脑干核的活性。在阿尔茨海默氏病中,这种测量的特点是与对照组相比,潜伏期更长,而振幅在额叶和中央记录部位均未显示出统计学上的显着差异。因此,系统地研究了刺激和记录参数对VSEP振幅的影响。在20名健康受试者中,通过电刺激外耳道迷走神经的皮肤表征并在头皮上记录VSEP来进行VSEP测量。最佳刺激强度为8 mA,无疼痛感。没有刺激方面或性别的影响。在包括电极T4的双极记录中检测到最大VSEP振幅,而在延迟,波形和极性上没有统计学上的显着差异。因此,包括该时间电极位置在内的将来检查的记录应在8 mA下进行。专注于脑干诱发电位的原因是,最近的研究已经积累了该领域涉及神经退行性疾病(如阿尔茨海默氏病和帕金森氏病)早期的证据。在神经退行性疾病的早期诊断中,改进的方法学知识可能有助于评估这种非侵入性且具有成本效益的方法。

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