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首页> 外文期刊>The Journal of Comparative Neurology >The insular auditory field receives input from the lemniscal subdivision of the auditory thalamus in mice
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The insular auditory field receives input from the lemniscal subdivision of the auditory thalamus in mice

机译:岛状听觉场从小鼠的听觉丘脑的lemniscal细分接收输入

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The insular cortex plays important roles in vocal communication, but the origin of auditory input to the insular cortex has not been fully clarified. Here we studied the auditory thalamic input to the insular cortex using mice as a model system. An insular auditory field (IAF) has recently been identified in mice. By using retrograde neuronal tracing, we identified auditory thalamic neurons projecting to the IAF, primary auditory cortex (AI), and anterior auditory field (AAF). After mapping the IAF, AAF, and AI by using optical imaging, we injected a distinct fluorescent tracer into each of the three fields at frequency-matched locations. Tracer injection into the IAF resulted in retrogradely labeled cells localized ventromedially in the lemniscal division, i.e., the ventral subdivision of the medial geniculate body (MGv). Cells retrogradely labeled by injections into the AAF were primarily found in the medial half of the MGv, whereas those from AI injections were located in the lateral half, although some of these two subsets were intermingled within the MGv. Interestingly, retrogradely labeled cells projecting to the IAF showed virtually no overlap with those projecting to the AAF or the AI. Dual tracer injections into two sites responding to low- and high-frequency tones within each of the three auditory fields demonstrated topographic organizations in all three thalamocortical projections. These results indicate that the IAF receives thalamic input from the MGv in a topographic manner, and that the MGv-IAF projection is parallel to the MGv-AAF and MGv-AI projections.
机译:岛叶皮层在人声交流中起着重要作用,但听觉输入到岛叶皮层的起源尚未完全阐明。在这里,我们使用小鼠作为模型系统研究了听觉丘脑向岛状皮层的输入。最近在小鼠中发现了一个岛状听觉场(IAF)。通过使用逆行神经元追踪,我们确定了投射到IAF,主要听觉皮层(AI)和前听觉场(AAF)的听性丘脑神经元。在使用光学成像对IAF,AAF和AI进行地图绘制之后,我们在频率匹配的位置向三个场中的每个场注入了不同的荧光示踪剂。示踪剂注射到IAF中会导致逆行标记的细胞定位在腹膜分裂中,即内侧膝状肌体(MGv)的腹腔细分。通过注射入AAF进行逆行标记的细胞主要位于MGv的内侧一半,而来自AI注射的细胞位于外侧的一半,尽管这两个子集中的一些混杂在MGv内。有趣的是,投射到IAF的逆向标记细胞与投射到AAF或AI的细胞几乎没有重叠。在三个听觉场中的每一个中,向两个位置响应低频和高频音调的双重示踪剂注入显示了所有三个丘脑皮层投影中的地形组织。这些结果表明,IAF以地形方式从MGv接收丘脑输入,并且MGv-IAF投影与MGv-AAF和MGv-AI投影平行。

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