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The inion response revisited: evidence for a possible cerebellar contribution to vestibular-evoked potentials produced by air-conducted sound stimulation

机译:重新提交的内部反应:对可能的诱发潜在的可能性诱发潜力的迹象是通过空气传导的声音刺激产生的

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This study investigated the effect of eye gaze and head position on vestibular-evoked potentials (VsEPs). Head position would be expected to affect myogenic sources, and eye position is known to affect ocular myogenic responses (ocular vestibular-evoked myogenic potentials), whereas a neurogenic source should behave otherwise. Eleven healthy subjects were recruited, and VsEPs, using 72-channel EEG, were recorded at a fixed intensity above the vestibular threshold. Three eye gaze and three head positions were tested (-20 degrees, 0 degrees, and +20 degrees to the horizontal). Short-latency potentials showed that in addition to the expected effect of gaze on infraocular (IO') leads, where up-gaze gives a maximum response, significant changes in amplitude were also observed in electrodes remote from the eyes and in particular, from contralateral parietal-occipital (PO) and neck (CB') leads. Shortlatency potentials of similar latency were observed (p10/n17 and n10/p17, respectively). The pattern of change with gaze in the PO leads was distinct from that observed for the IO' leads. For the PO leads, the maximum response was obtained with neutral gaze, and this was also distinct from that observed for CB' electrodes, where a maximal response was observed with head flexion in the second wave but not the first. Evidence of modulation of N42 and N1 potentials with both eye and head position was also observed. Head-and eye-position manipulation thus suggests that the inion response consists of an early neurogenic component, as well as myogenic responses. The p10/n17 at PO, in particular, may be an indicator of vestibulocerebellar projections.
机译:本研究调查了眼睛凝视和头部位置对前庭诱发电位(VSEPS)的影响。预期头部位置会影响肌原源,并且已知眼部位置影响眼部肌源性响应(眼部前部诱发的肌原源性),而神经源性源应行为否则。招募了11个健康的受试者,并且使用72频道脑电图的VSEPS以固定的强度记录在前庭阈值之上。测试三个眼睛凝视和三个头位置(-20度,0度,水平+ 20度)。短延迟电位表明,除了凝视对前(IO')引线的预期效果之外,在上凝游出现最大响应的情况下,还观察到从眼睛远离眼睛的电极观察振幅的显着变化,尤其是来自对侧的顶叶枕(PO)和颈部(CB')引导。观察到类似等待时间的缺失性电位(分别p10 / n17和n10 / p17)。 PO引线中凝视的变化模式与IO'铅的观察结果不同。对于PO引线,用中性凝视获得最大响应,这也是不同于CB电极观察到的,其中在第二波中观察到最大响应,但不是第一波的头部屈曲。还观察到具有眼睛和头部位置的N42和N1电位调节的证据。因此,头部和眼位置操纵表明,INION响应由早期的神经源性组分以及肌源反应组成。 P10 / N17,特别是P117117可以是前韦妥塞投影的指示。

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