Altmann Christian F, Nakata Hiroki, Noguchi Yasuki, Inui Koji, Hoshiyama Minoru, Kaneoke Yoshiki, Kakigi Ryusuke
Department of Integrative Physiology, National Institute for Physiological Sciences, Okazaki 444-8585, Japan.
Cereb Cortex. 2008 Jun;18(6):1350-60. doi: 10.1093/cercor/bhm166. Epub 2007 Sep 24.
We aimed at testing the cortical representation of complex natural sounds within auditory cortex by conducting 2 human magnetoencephalography experiments. To this end, we employed an adaptation paradigm and presented subjects with pairs of complex stimuli, namely, animal vocalizations and spectrally matched noise. In Experiment 1, we presented stimulus pairs of same or different animal vocalizations and same or different noise. Our results suggest a 2-step process of adaptation effects: first, we observed a general item-unspecific reduction of the N1m peak amplitude at 100 ms, followed by an item-specific amplitude reduction of the P2m component at 200 ms after stimulus onset for both animal vocalizations and noise. Multiple dipole source modeling revealed the right lateral Heschl's gyrus and the bilateral superior temporal gyrus as sites of adaptation. In Experiment 2, we tested for cross-adaptation between animal vocalizations and spectrally matched noise sounds, by presenting pairs of an animal vocalization and its corresponding or a different noise sound. We observed cross-adaptation effects for the P2m component within bilateral superior temporal gyrus. Thus, our results suggest selectivity of the evoked magnetic field at 200 ms after stimulus onset in nonprimary auditory cortex for the spectral fine structure of complex sounds rather than their temporal dynamics.
我们旨在通过进行两项人类脑磁图实验来测试听觉皮层内复杂自然声音的皮层表征。为此,我们采用了适应范式,并向受试者呈现成对的复杂刺激,即动物叫声和频谱匹配的噪声。在实验1中,我们呈现了相同或不同动物叫声以及相同或不同噪声的刺激对。我们的结果表明适应效应有两个步骤:首先,我们观察到在100毫秒时N1m峰值幅度普遍出现与项目无关的降低,随后在刺激开始后200毫秒时,动物叫声和噪声的P2m成分都出现了与项目相关的幅度降低。多偶极子源模型显示右侧颞横回和双侧颞上回是适应位点。在实验2中,我们通过呈现动物叫声与其相应或不同噪声的配对来测试动物叫声和频谱匹配的噪声之间的交叉适应。我们在双侧颞上回内观察到了P2m成分的交叉适应效应。因此,我们的结果表明,在刺激开始后200毫秒时,非初级听觉皮层中诱发磁场对复杂声音的频谱精细结构而非其时间动态具有选择性。