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Functional cortical mapping of auditory illusion: An fMRI investigation of “Scale Illusion”

机译:听觉错觉的功能皮层标测:“鳞片假象”的功能磁共振成像研究

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We studied cortical activation using 1.5 T fMRI during "Scale Illusion", a kind of auditory illusion, in which eighteen subjects (20±1.3 years old) perceived smooth melodies while listening to dichotic irregular pitch sequences consisting of scale tones, in repeated phrases composed of eight tones. Twelve male and six female subjects listened to different stimuli that included an illusion-inducing tone sequence (I), monaural tone sequence (S) and perceived pitch sequence (P) with a control of white noises (N) delivered to the left and right ears in random order. Thirty two scans (TR 3 sec.) with a between 3 second interval for each type of the four stimuli were performed. BOLD signals were analyzed by the standard procedure using SPM8 software. In group analysis, activation of the P-N contrast was observed in the left motor area and premotor area. Activations common to both P-N and I-N were observed in the superior temporal gyrus (primary auditory cortex), and these activations showed strong left-hemisphere dominance. Activation of the I-N contrast extended to the anterior part of the superior temporal gyrus, and in the other case (I-N) the activated area extended into the posterior direction from the communal activating area. These findings are consistent with the notion that the hemispheres are differentially specialized for processing auditory stimuli even in the absence of linguistic information and also identifying an acoustic stimulus and its spatial location are processed in separate streams in the auditory cortex.
机译:我们在“规模错觉”(一种听觉错觉)期间使用1.5 T fMRI研究了皮质激活,其中十八名受试者(20±1.3岁)在聆听由比例音组成的不规则音调序列时,感觉到旋律优美,并重复了短语八种音色十二名男性和六名女性受试者聆听不同的刺激,包括幻觉诱导音调序列(I),单声道音调序列(S)和感知音高序列(P),并控制左右的白噪声(N)耳朵以随机顺序排列。对四种刺激的每种类型进行了32次扫描(TR 3秒),间隔为3秒。使用SPM8软件通过标准程序分析了粗体信号。在小组分析中,在左运动区和运动前区观察到P-N对比的激活。在颞上回(初级听觉皮层)中观察到了P-N和I-N共同的激活,这些激活显示出强大的左半球优势。 I-N对比的激活扩展到颞上回的前部,在其他情况下(I-N),激活区域从公共激活区域向后延伸。这些发现与以下观念相符:即使在没有语言信息的情况下,半球也不同地专门用于处理听觉刺激,并且还确定了听觉皮层中单独的流中处理了声刺激及其空间位置。

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