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Lateralized auditory spatial perception and the contralaterality of cortical processing as studied with functional magnetic resonance imaging and magnetoencephalography

机译:功能性磁共振成像和脑磁图研究横向听觉空间知觉和皮质处理的对侧

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摘要

Functional magnetic resonance imaging (fMRI) and magnetoencephalography (MEG) were used to study the relationships between lateralized auditory perception in humans and the contralaterality of processing in auditory cortex. Subjects listened to rapidly presented streams of short FM‐sweep tone bursts to detect infrequent, slightly deviant tone bursts. The stimulus streams consisted of either monaural stimuli to one ear or the other or binaural stimuli with brief interaural onset delays. The onset delay gives the binaural sounds a lateralized auditory perception and is thought to be a key component of how our brains localize sounds in space. For the monaural stimuli, fMRI revealed a clear contralaterality in auditory cortex, with a contralaterality index (contralateral activity divided by the sum of contralateral and ipsilateral activity) of 67%. In contrast, the fMRI activations from the laterally perceived binaural stimuli indicated little or no contralaterality (index of 51%). The MEG recordings from the same subjects performing the same task converged qualitatively with the fMRI data, confirming a clear monaural contralaterality, with no contralaterality for the laterally perceived binaurals. However, the MEG monaural contralaterality (55%) was less than the fMRI and decreased across the several hundred millisecond poststimulus time period, going from 57% in the M50 latency range (20–70 ms) to 53% in the M200 range (170–250 ms). These data sets provide both quantification of the degree of contralaterality in the auditory pathways and insight into the locus and mechanism of the lateralized perception of spatially lateralized sounds. Hum. Brain Mapping 7:49–66, 1999. © 1999 Wiley‐Liss, Inc.
机译:功能磁共振成像(fMRI)和脑磁图(MEG)用于研究人类侧听觉与听觉皮层处理的对侧关系。受试者聆听快速呈现的短FM扫频脉冲串流,以检测不常见,稍有偏差的脉冲串。刺激流由对一只耳朵的单声道刺激或另一只耳朵或双耳刺激组成,并伴有短暂的耳间发作延迟。发作延迟使双耳声音具有侧向听觉,并且被认为是我们大脑如何在空间中定位声音的关键组成部分。对于单声道刺激,fMRI显示听觉皮层有明显的对侧性,对侧指数(对侧活动度除以对侧和同侧活动度之和)。相反,从侧面感知到的双耳刺激进行的功能磁共振成像激活表明对侧几乎没有或没有对侧(指数为51%)。来自执行相同任务的同一受试者的MEG记录与fMRI数据定性地融合,确认了清楚的单耳对侧性,而对于侧向感知的双耳无对侧性。但是,MEG单侧对侧(55%)小于功能磁共振成像,并在刺激后几百毫秒的时间内下降,从M50潜伏期(20-70 ms)的57%降至M200潜伏期(170的53%) –250毫秒)。这些数据集既可以量化听觉通路中对侧的程度,又可以洞察空间侧向声音的侧向感知的位置和机制。哼。 Brain Mapping 7:49-66,1999.©1999 Wiley-Liss,Inc.

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