用多通道脑电图测量和分析听觉稳态反应时的方法学考虑

Hao Lu, Anahita H. Mehta, Andrew J. Oxenham
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引用次数: 1

摘要

听觉稳态反应(ASSR)传统上是用很少的电极记录的,通常用乳突电极和顶点电极之间的电压差(垂直蒙太奇)来测量。随着高密度脑电图记录系统的普及,多通道分析方法被开发出来以整合跨通道的ASSR信号。电极间ASSR的相位受刺激调制率和再参考策略等因素的影响,而这些因素又会影响ASSR的估计强度。为了探索经典的垂直蒙太奇ASSR和全头皮ASSR之间的关系,我们将这两种技术应用于相同的数据,以估计正弦调幅率约为40、100和200 Hz的音调所诱发的ASSR强度。在我们的研究中评估的全头皮方法,无论是链接乳突还是共同平均参考,包括在所有通道中假设相等相位的方法,以及允许不同相位关系的方法。将简单平均的性能与包含主成分分析的更复杂的方法进行了比较。总的来说,所有通道的锁相值(plv)的均方根提供了最有效的方法来检测这里测试的调制速率范围内的ASSR。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Methodological considerations when measuring and analyzing auditory steady-state responses with multi-channel EEG

Methodological considerations when measuring and analyzing auditory steady-state responses with multi-channel EEG

The auditory steady-state response (ASSR) has been traditionally recorded with few electrodes and is often measured as the voltage difference between mastoid and vertex electrodes (vertical montage). As high-density EEG recording systems have gained popularity, multi-channel analysis methods have been developed to integrate the ASSR signal across channels. The phases of ASSR across electrodes can be affected by factors including the stimulus modulation rate and re-referencing strategy, which will in turn affect the estimated ASSR strength. To explore the relationship between the classical vertical-montage ASSR and whole-scalp ASSR, we applied these two techniques to the same data to estimate the strength of ASSRs evoked by tones with sinusoidal amplitude modulation rates of around 40, 100, and 200 Hz. The whole-scalp methods evaluated in our study, with either linked-mastoid or common-average reference, included ones that assume equal phase across all channels, as well as ones that allow for different phase relationships. The performance of simple averaging was compared to that of more complex methods involving principal component analysis. Overall, the root-mean-square of the phase locking values (PLVs) across all channels provided the most efficient method to detect ASSR across the range of modulation rates tested here.

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