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Sound identification in human auditory cortex: Differential contribution of local field potentials and high gamma power as revealed by direct intracranial recordings

机译:在人类听觉皮层中的声音识别:颅内直接记录显示的局部场电位和高伽马能的不同贡献

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摘要

High gamma power has become the principal means of assessing auditory cortical activation in human intracranial studies, albeit at the expense of low frequency local field potentials (LFPs). It is unclear whether limiting analyses to high gamma impedes ability of clarifying auditory cortical organization. We compared the two measures obtained from posterolateral superior temporal gyrus (PLST) and evaluated their relative utility in sound categorization. Subjects were neurosurgical patients undergoing invasive monitoring for medically refractory epilepsy. Stimuli (consonant-vowel syllables varying in voicing and place of articulation and control tones) elicited robust evoked potentials and high gamma activity on PLST. LFPs had greater across-subject variability, yet yielded higher classification accuracy, relative to high gamma power. Classification was enhanced by including temporal detail of LFPs and combining LFP and high gamma. We conclude that future studies should consider utilizing both LFP and high gamma when investigating the functional organization of human auditory cortex.
机译:高伽马强度已成为评估人类颅内研究中听觉皮层激活的主要手段,尽管以低频局部场电位(LFP)为代价。目前尚不清楚将分析限制在较高的伽玛值是否会妨碍澄清听觉皮层组织的能力。我们比较了从后外侧上颞回(PLST)获得的两种测量,并评估了它们在声音分类中的相对效用。受试者为接受侵入性监测以治疗难治性癫痫的神经外科患者。刺激(在发音,发音和控制音的位置变化的辅音元音节)在PLST上引起了强烈的诱发电位和高伽马活性。相对于高伽马强度,LFP具有更大的跨主体变异性,但产生了更高的分类精度。通过包括LFP的时间细节并结合LFP和高伽玛来增强分类。我们得出结论,在研究人类听觉皮层的功能组织时,未来的研究应考虑同时使用LFP和高伽马。

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