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Best Frequency-Shift of Collicular Neurons Induced by Real-Time Interaction between Inferior Colliculi via Intercollicular Commissural Projections

机译:通过Intercolliculululi undliculi unitsultuli unitscoliculi units undoliculli诱导诱导的细胞神经元的最佳变频

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The left and right inferior colliculus (IC) are interconnected with each other by the commissure of inferior colliculus (CoIC). So far, little has been known about its role in the auditory information processing and integration between the two ICs in real time. In this study, we examined the changes in the best frequency (BF) of neurons in one side IC (ICRec) during activation of CoIC by focal electrical stimulation (ES) of the opposite IC (ICES). Results showed that during ES of ICES, the BFs of 38 (38/70, 54.3 %) ICRec neurons were changed and the range of BF shift in 31 among 38 (31/38, 81.6%) ICRec neurons was between 0~2 kHz. In addition, the BF shift of ICRec neurons evoked by ES of ICES increased with the increasing of BF difference between the ICRec and ICES neurons. These suggested that intercollicular interaction played perhaps a role in the sound processing and integration between ICs.
机译:左右较差的较差的较差(IC)通过劣质小集(COIC)彼此相互连接。到目前为止,目前对其在听觉信息处理中的作用很少知道,实时两个ICS之间的集成。在这项研究中,在通过相对的IC(ICES)的焦点电刺激激活期间,在一个侧面IC(ICREC)中,检查了一侧IC(ICREC)中最佳频率(BF)的变化。结果表明,在谢谢中,BFS为38(38/70,54.3%)ICREC神经元的ICREC神经元和31例(31 / 38,81.6%)ICREC神经元的31个(31 / 38,81.6%)的BF偏移范围在0〜2 kHz之间。此外,ICREC神经元的BF偏移随着ICREC和ICE神经元之间的BF差异的增加而增加。这些建议,在ICS之间的声音处理和集成中,播放的间互动可能是一个角色。

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