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首页> 外文期刊>Brain stimulation >Navigated transcranial magnetic stimulation does not decrease the variability of motor-evoked potentials.
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Navigated transcranial magnetic stimulation does not decrease the variability of motor-evoked potentials.

机译:导航的经颅磁刺激并不能降低运动诱发电位的变化。

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BACKGROUND: One major attribute of transcranial magnetic stimulation (TMS) is the variability of motor-evoked potential (MEP) amplitudes, to which variations of coil positioning may contribute. Navigated TMS allows the investigator to retrieve a stimulation site with an accuracy of 2.5 mm and to retain coil position with low spatial divergence during stimulation. OBJECTIVE: The purpose of this study was to investigate whether increased spatial constancy of the coil using a navigational system decreases the variability of MEP amplitudes and increases their reproducibility between different points in time of investigation. METHODS: We investigated eight healthy subjects (mean age 23.8 +/- 1.2 years, range 22-25, four women, four men) at three different points in time with and without an optically tracked frameless navigational device, respectively. Input-output curves, motor threshold, and MEP amplitudes were recorded. We calculated the coefficient of variation as statistical parameter of variability. Reproducibility between different sessions was assessed via the MEP amplitude. RESULTS: The coefficient of variance of MEP amplitudes did not show a distinct difference between navigated and non-navigated TMS in input-output curves. MEP amplitudes, indicating reproducibility, did not significantly differ between sessions with and without navigated TMS, either. CONCLUSIONS: Our results do not support the hypothesis that increased spatial constancy using a navigational system improves variability and reproducibility of MEP amplitudes. Variability of MEPs might mainly be due to not influenceable neurophysiologic factors such as undulant cortical excitability and spinal desynchronization.
机译:背景:经颅磁刺激(TMS)的一个主要属性是电机诱发电位(MEP)幅度的变化,线圈位置的变化可能对此有所贡献。导航的TMS可使研究人员以2.5 mm的精度取回刺激部位,并在刺激过程中以低空间差异保持线圈位置。目的:本研究的目的是研究使用导航系统提高线圈的空间恒定性是否会降低MEP振幅的可变性并提高其在不同研究时间点之间的可重复性。方法:我们调查了八个健康受试者(平均年龄23.8 +/- 1.2岁,范围22-25,四名女性,四名男性)在三个不同的时间点,分别有和没有光学跟踪的无框导航设备。记录输入输出曲线,电机阈值和MEP振幅。我们将变异系数计算为变异性的统计参数。通过MEP振幅评估不同疗程之间的可重复性。结果:在输入-输出曲线中,MEP振幅的方差系数在导航和非导航TMS之间没有显示明显差异。指示可重复性的MEP幅度在使用和不使用导航TMS的会话之间也没有显着差异。结论:我们的结果不支持使用导航系统提高空间恒定性可以改善MEP振幅的可变性和可重复性的假设。 MEPs的变异性可能主要是由于不受影响的神经生理因素,例如过度的皮质兴奋性和脊柱失步。

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