首页> 外文期刊>Brain stimulation >Optically tracked neuronavigation increases the stability of hand-held focal coil positioning: evidence from 'transcranial' magnetic stimulation-induced electrical field measurements.
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Optically tracked neuronavigation increases the stability of hand-held focal coil positioning: evidence from 'transcranial' magnetic stimulation-induced electrical field measurements.

机译:光学跟踪的神经导航可提高手持式聚焦线圈定位的稳定性:“经颅”磁刺激诱发的电场测量的证据。

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The stability of hand-held coil positioning with neuronavigated versus conventional transcranial magnetic stimulation (TMS) is still underinvestigated. Eleven operators naive for neuronavigation were asked to position and maintain a figure-of-eight-shaped coil over a dipole probe placed within of a polystyrene reproduction of the human head and scalp, in correspondence of the right primary motor cortex. Ten monophasic magnetic pulses were delivered at 46% maximal stimulator output (MSO) in two different experimental conditions: (1) assisted by an optically tracked neuronavigational system; and (2) without neuronavigation. With neuronavigated stimulation, both standard deviation and coefficient of variation of the voltages induced in the dipole probe were significantly lower than without neuronavigation. Results were confirmed in four operators performing a longer-lasting experiment using 50 magnetic pulses in each condition, at an intensity of at 40% MSO. Findings show that optically tracked neuronavigation improves the stability of focal coil positioning.
机译:与传统的经颅磁刺激(TMS)相比,采用神经导航的手持式线圈定位的稳定性仍未得到充分研究。要求11位天真无知的神经导航操作员在放置在人头和头皮的聚苯乙烯复制品中的偶极子探针上定位并保持一个八字形的线圈,这与右原发性运动皮层相对应。在两个不同的实验条件下,以46%的最大刺激器输出(MSO)传递了十个单相磁脉冲:(1)借助光学跟踪的神经导航系统; (2)没有神经导航。在神经导航刺激下,偶极探针中感应电压的标准偏差和变异系数均显着低于无神经导航的情况。四名操作员在每种条件下使用50个磁脉冲以40%MSO的强度进行了更持久的实验,结果得到了确认。研究结果表明,光学跟踪的神经导航可提高聚焦线圈定位的稳定性。

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