首页> 外文期刊>Clinical neurophysiology >H-coil: Induced electric field properties and input/output curves on healthy volunteers, comparison with a standard figure-of-eight coil.
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H-coil: Induced electric field properties and input/output curves on healthy volunteers, comparison with a standard figure-of-eight coil.

机译:H线圈:健康志愿者的感应电场特性和输入/输出曲线,与标准的八字形线圈比较。

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OBJECTIVE: To acquire information about the physical properties and physiological effects of the H-coil. METHODS: We used a robotized system to measure the electric field (E-field) generated by a H-coil prototype and compared it with a standard figure-of-eight coil. To explore the physiological properties of the coils, input/output curves were recorded for the right abductor digiti minimi muscle (ADM) as target muscle. To explore focality of stimulation, simultaneous recordings were performed for the left ADM, right abductor pollicis brevis (APB), extensor digitorum communis (EDC) and biceps brachii (BB) muscles. RESULTS: Physical measurements of the H-coil showed four potentially stimulating foci, generating different electric field intensities along two different spatial orientations. RMT was significantly lower for H-coil- as compared to figure-of-eight coil stimulation. When stimulation intensity for the input-output curve was determined by percent of maximum stimulator output, the H-coil produced larger MEPs in the right ADM, as compared to the figure-of-eight coil, due to the larger relative enhancement of stimulation intensity of the H-coil. When stimulation intensity was adjusted to RMT, MEPs elicited at the right ADM were larger for figure-of-eight coil than for H-coil stimulation, while this relation was reversed for distant non-target muscles, with low stimulation intensities. With high stimulation intensities, the H-coil elicited larger MEPs for all tested muscles. Onset latency of the MEPs was never shorter for H-coil than for figure-of-eight coil stimulation of the target muscles. CONCLUSIONS: These results are in favor for a non-focal, but not deeper effect of the H-coil, as compared to a figure-of-eight coil. SIGNIFICANCE: This is the first neurophysiological study exploring the focality and depth of stimulation delivered by the H-coil systematically in humans. We found no advantage of this coil with regard to depth of stimulation in comparison to the figure-of-eight coil. Future studies have to show if the non-focality of this coil differs relevantly from that of other non-focal coils, e.g. the round coil.
机译:目的:获得有关H型线圈的物理性质和生理效应的信息。方法:我们使用一个机器人系统来测量H形线圈原型产生的电场(电场),并将其与标准的8字形线圈进行比较。为了探究线圈的生理特性,记录了作为目标肌的右半指外展肌(ADM)的输入/输出曲线。为了探究刺激的焦点,同时记录了左ADM,右外展短缩腓肌(APB),指伸伸指公共(EDC)和肱二头肌(BB)肌肉。结果:H形线圈的物理测量显示了四个潜在的刺激焦点,沿着两个不同的空间方向产生了不同的电场强度。与八字形线圈刺激相比,H形线圈的RMT明显更低。当输入输出曲线的刺激强度由最大刺激器输出的百分比确定时,与八字形线圈相比,H线圈在右侧ADM中产生更大的MEP,这是因为刺激强度的相对增强更大H线圈当将刺激强度调整为RMT时,八字形线圈在右侧ADM处产生的MEP大于H线圈刺激,而远处非目标肌肉的这种关系则相反,刺激强度较低。在高刺激强度的情况下,H线圈对所有测试的肌肉引起较大的MEP。 H线圈的MEP发作潜伏期从未比目标肌肉的八字形线圈刺激短。结论:与八字形线圈相比,这些结果有利于H线圈的非焦距但不是更深的影响。重要性:这是第一项探索H线圈对人体系统性刺激的深度和深度的神经生理学研究。与八字形线圈相比,我们发现该线圈在刺激深度方面没有优势。未来的研究必须证明该线圈的非聚焦性是否与其他非聚焦线圈的非聚焦性有明显不同,例如圆形线圈。

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