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Source analysis of short and long latency vestibular-evoked potentials (VsEPs) produced by left vs. right ear air-conducted 500 Hz tone pips

机译:左耳和右耳空气传导500 Hz音调点产生的短时延和长时延前庭诱发电位(VsEPs)的来源分析

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摘要

Todd et al. (2014) have recently demonstrated the presence of vestibular dependent changes both in the morphology and in the intensity dependence of auditory evoked potentials (AEPs) when passing through the vestibular threshold as determined by vestibular evoked myogenic potentials (VEMPs). In this paper we extend this work by comparing left vs. right ear stimulation and by conducting a source analysis of the resulting evoked potentials of short and long latency. Ten healthy, right-handed subjects were recruited and evoked potentials were recorded to both left- and right-ear sound stimulation, above and below vestibular threshold. Below VEMP threshold, typical AEPs were recorded, consisting of mid-latency (MLR) waves Na and Pa followed by long latency AEPs (LAEPs) N1 and P2. In the supra-threshold condition, the expected changes in morphology were observed, consisting of: (1) short-latency vestibular evoked potentials (VsEPs) which have no auditory correlate, i.e. the ocular VEMP (OVEMP) and inion response related potentials; (2) a later deflection, labelled N42/P52, followed by the LAEPs N1 and P2. Statistical analysis of the vestibular dependent responses indicated a contralateral effect for inion related short-latency responses and a left-ear/right-hemisphere advantage for the long-latency responses. Source analysis indicated that the short-latency effects may be mediated by a contralateral projection to left cerebellum, while the long-latency effects were mediated by a contralateral projection to right cingulate cortex. In addition we found evidence of a possible vestibular contribution to the auditory T-complex in radial temporal lobe sources. These last results raise the possibility that acoustic activation of the otolith organs could potentially contribute to auditory processing.
机译:托德(Todd)等人。 (2014年)最近证明,当通过前庭阈值时,听觉诱发电位(AEP)的形态和强度相关性均存在前庭依赖性变化,前者由前庭诱发的肌源性电位(VEMP)确定。在本文中,我们通过比较左耳和右耳的刺激以及对引起的短时延和长时延诱发电位进行源分析来扩展这项工作。招募了十名健康的右撇子受试者,并记录了在前庭阈值之上和之下的左右耳声音刺激的诱发电位。低于VEMP阈值,记录了典型的AEP,包括中潜伏(MLR)波Na和Pa,然后是长潜伏期AEP(LAEP)N1和P2。在超阈值条件下,观察到了预期的形态变化,包括:(1)与听觉无关的短潜伏期前庭诱发电位(VsEPs),即眼VEMP(OVEMP)和与洋葱反应有关的电位; (2)后来的偏转,标记为N42 / P52,然后是LAEP N1和P2。对前庭依赖性反应的统计分析表明,与洋葱相关的短时延反应具有对侧效应,而长时延反应具有左耳/右半球优势。来源分析表明,短时延效应可能由对侧小脑的对侧投射介导,而长时延效应可能由对右扣带皮层的对侧投射介导。另外,我们发现了radial骨颞叶来源的前庭对听觉T复合体的可能贡献的证据。这些最后的结果增加了耳石器官的声学激活可能有助于听觉处理的可能性。

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