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运动皮层经颅磁刺激最佳电流方向的个体间变异性。

Inter-individual variability in optimal current direction for transcranial magnetic stimulation of the motor cortex.

作者信息

Balslev Daniela, Braet Wouter, McAllister Craig, Miall R Chris

机构信息

Behavioural Brain Sciences Centre, School of Psychology, University of Birmingham, Birmingham, UK.

出版信息

J Neurosci Methods. 2007 May 15;162(1-2):309-13. doi: 10.1016/j.jneumeth.2007.01.021. Epub 2007 Feb 4.

Abstract

We evaluated inter-individual variability in optimal current direction for biphasic transcranial magnetic stimulation (TMS) of the motor cortex. Motor threshold for first dorsal interosseus was detected visually at eight coil orientations in 45 degrees increments. Each participant (n=13) completed two experimental sessions. One participant with low test-retest correlation (Pearson's r<0.5) was excluded. In four subjects, visual detection of motor threshold was compared to EMG detection; motor thresholds were very similar and highly correlated (0.94-0.99). Similar with previous studies, stimulation in the majority of participants was most effective when the first current pulse flowed towards postero-lateral in the brain. However, in four participants, the optimal coil orientation deviated from this pattern. A principal component analysis using all eight orientations suggests that in our sample the optimal orientation of current direction was normally distributed around the postero-lateral orientation with a range of 63 degrees (S.D.=13.70 degrees). Whenever the intensity of stimulation at the target site is calculated as a percentage from the motor threshold, in order to minimize intensity and side-effects it may be worthwhile to check whether rotating the coil 45 degrees from the traditional posterior-lateral orientation decreases motor threshold.

摘要

我们评估了运动皮层双相经颅磁刺激(TMS)最佳电流方向的个体间变异性。以45度增量在八个线圈方向上目视检测第一背侧骨间肌的运动阈值。每位参与者(n = 13)完成两个实验阶段。排除一名重测相关性较低(皮尔逊r<0.5)的参与者。在四名受试者中,将运动阈值的目视检测与肌电图检测进行比较;运动阈值非常相似且高度相关(0.94 - 0.99)。与先前的研究相似,在大多数参与者中,当第一个电流脉冲流向大脑后外侧时,刺激最为有效。然而,在四名参与者中,最佳线圈方向偏离了这种模式。使用所有八个方向进行的主成分分析表明,在我们的样本中,电流方向的最佳方向围绕后外侧方向呈正态分布,范围为63度(标准差 = 13.70度)。每当将目标部位的刺激强度计算为运动阈值的百分比时,为了最小化强度和副作用,检查将线圈从传统的后外侧方向旋转45度是否会降低运动阈值可能是值得的。

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