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首页> 外文期刊>Cerebral cortex >FMRI evidence for activation of multiple cortical regions in the primary auditory cortex of deaf subjects users of multichannel cochlear implants.
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FMRI evidence for activation of multiple cortical regions in the primary auditory cortex of deaf subjects users of multichannel cochlear implants.

机译:FMRI证据表明,多通道人工耳蜗的聋人使用者听觉皮层中的多个皮质区域均被激活。

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摘要

To investigate the activation of the auditory cortex by fMRI, three deaf subjects users of the Ineraid cochlear implant participated in our study. Possible interference between fMRI acquisition and the implanted electrodes was controlled and safe experimental conditions were obtained. For each subject, electrical stimuli were applied on different intracochlear electrodes, in monopolar mode. Stimulation of each electrode was actually producing auditory sensations of different pitches, as demonstrated by psychophysical pitch-ranking measurements in the same subjects. Because deaf subjects did not hear scanner noise, the data were collected in 'silent background' conditions, i.e. as a result of pure auditory sensations. Functional maps showed activation of the primary auditory cortex, predominantly in the left hemisphere. Stimulation of each different intracochlear electrode revealed different clusters of activation. After cluster grouping, at least three regions have been identified in the auditory cortex of each subject, and comparisons with previous architectonic and functional studies are proposed. However, a tonotopic organization could not be clearly identified within each region. These arguments, obtained without interference with unwanted scanner noise, plead in favor of a functional subdivision of the primary auditory cortex into multiple cortical regions in cochlear implant users.
机译:为了研究功能磁共振成像对听觉皮层的激活作用,Ineraid人工耳蜗植入的三个聋人使用者参加了我们的研究。控制了功能磁共振成像采集和植入电极之间的可能干扰,并获得了安全的实验条件。对于每个受试者,将电刺激以单极模式施加到不同的耳蜗内电极上。每个电极的刺激实际上会产生不同音高的听觉,如同一受试者的心理音高等级测量所显示的。因为聋的受试者没有听到扫描仪的噪音,所以数据是在“无声背景”条件下收集的,即纯听觉的结果。功能图显示主要在左半球的主要听觉皮层的激活。每个不同的耳蜗内电极的刺激揭示了不同的激活簇。聚类分组后,每个受试者的听觉皮层中至少确定了三个区域,并提出了与以前的建筑和功能研究的比较。然而,不能在每个区域内清楚地识别出一个音调组织。在不干扰不必要的扫描仪噪声的情况下获得的这些论点表明,在人工耳蜗植入用户中,主要听觉皮层的功能细分为多个皮层区域。

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