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首页> 外文期刊>NeuroImage >Representations of the temporal envelope of sounds in human auditory cortex: Can the results from invasive intracortical 'depth' electrode recordings be replicated using non-invasive MEG 'virtual electrodes'?
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Representations of the temporal envelope of sounds in human auditory cortex: Can the results from invasive intracortical 'depth' electrode recordings be replicated using non-invasive MEG 'virtual electrodes'?

机译:人类听觉皮层中声音的时间包络的表示:侵入性皮层内“深度”电极记录的结果是否可以使用非侵入性MEG“虚拟电极”复制?

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Magnetoencephalography (MEG) beamformer analyses use spatial filters to estimate neuronal activity underlying the magnetic fields measured by the MEG sensors. MEG "virtual electrodes" are the outputs of beamformer spatial filters. The present study aimed to test the hypothesis that MEG virtual electrodes can replicate the findings from intracortical "depth" electrode studies relevant to the processing of the temporal envelopes of sounds [e.g. Nourski et al. (2009) "Temporal envelope of time-compressed speech represented in the human auditory cortex," J. Neurosci. 29:15564-15574]. Specifically we aimed to determine whether it is possible to use non-invasive MEG virtual electrodes to characterise the representation of temporal envelopes of 6-Hz sinusoidal amplitude modulation (SAM) and speech using both auditory evoked fields (AEFs) and patterns of power changes in high-frequency (> 70. Hz) bands. MEG signals were analysed using a location of interest (LOI) approach by seeding virtual electrodes in the left and right posteromedial Heschl's gyri. AEFs showed phase-locking to the temporal envelope of SAM and speech stimuli. Time-frequency analyses revealed no clear differences in high gamma power between the pre-stimulus baseline and the post-stimulus presentation periods. Nevertheless the patterns of changes in high gamma power were significantly correlated with the temporal envelopes of 6-Hz SAM and speech in the majority of participants. The present study reveals difficulties in replicating clear augmentations in high gamma power changes using MEG virtual electrodes cf. intracortical "depth" electrode studies (Nourski et al., 2009).
机译:磁脑图(MEG)波束形成器分析使用空间滤波器来估计由MEG传感器测量的磁场背后的神经元活动。 MEG“虚拟电极”是波束形成器空间滤波器的输出。本研究旨在检验以下假设:MEG虚拟电极可以复制皮质内“深度”电极研究中与声音的时间包络处理相关的发现。 Nourski等。 (2009)“时间压缩的语音的时间包络在人类听觉皮层中代表”,J。Neurosci。 29:15564-15574]。具体来说,我们旨在确定是否有可能使用非侵入式MEG虚拟电极来表征6 Hz正弦振幅调制(SAM)和语音的时间包络,同时使用听觉诱发电场(AEF)和功率变化模式高频(> 70. Hz)频段。使用感兴趣的位置(LOI)方法分析MEG信号,方法是在左右后内侧Heschl的回旋中植入虚拟电极。 AEFs显示了对SAM和语音刺激的时间包络的锁相。时频分析显示,刺激前的基线和刺激后的呈现时间段之间的高伽马强度无明显差异。然而,在大多数参与者中,高伽马放大率的变化模式与6 Hz SAM和语音的时间包络显着相关。本研究揭示了使用MEG虚拟电极比较高伽马功率变化中的清晰增强时难以复制。皮质内“深度”电极研究(Nourski等,2009)。

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