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大鼠岛叶皮质尾部听觉区的传出连接:听觉处理皮质流和跨模态感觉相互作用的解剖节点。

Efferent connections of an auditory area in the caudal insular cortex of the rat: anatomical nodes for cortical streams of auditory processing and cross-modal sensory interactions.

机构信息

Department of Physiology, Wakayama Medical University, Wakayama Kimiidera, Wakayama, Japan.

出版信息

Neuroscience. 2010 Apr 14;166(4):1140-57. doi: 10.1016/j.neuroscience.2010.01.032. Epub 2010 Jan 25.

Abstract

In the rat cortex, the two non-primary auditory areas, posterodorsal and ventral auditory areas, may constitute the two streams of auditory processing in their distinct projections to the posterior parietal and insular cortices. The posterior parietal cortex is considered crucial for auditory spatial processing and directed attention, while possible auditory function of the insular cortex is largely unclear. In this study, we electrophysiologically delineated an auditory area in the caudal part of the granular insular cortex (insular auditory area, IA) and examined efferent connections of IA with anterograde tracer biocytin to deduce the functional significance of IA. IA projected to the rostral agranular insular cortex, a component of the lateral prefrontal cortex. IA also projected to the adjacent dysgranular insular cortex and the caudal agranular insular cortex and sent feedback projections to cortical layer I of the primary and secondary somatosensory areas. Corticofugal projections terminated in auditory, somatosensory and visceral thalamic nuclei, and the bottom of the thalamic reticular nucleus that could overlap the visceral sector. The ventral part of the caudate putamen, the external cortex of the inferior colliculus and the central amygdaloid nucleus were also the main targets. IA exhibited neural response to transcutaneous electrical stimulation of the forepaw in addition to acoustic stimulation (noise bursts and pure tones). The results suggest that IA subserves diverse functions associated with somatosensory, nociceptive and visceral processing that may underlie sound-driven emotional and autonomic responses. IA, being potentially involved in such extensive cross-modal sensory interactions, could also be an important anatomical node of auditory processing linked to higher neural processing in the prefrontal cortex.

摘要

在大鼠皮层中,两个非初级听觉区域,后背侧和腹侧听觉区域,可能通过其对后顶叶和岛叶皮层的不同投射构成听觉处理的两个流。后顶叶皮层被认为对听觉空间处理和定向注意力至关重要,而岛叶皮层的可能听觉功能在很大程度上尚不清楚。在这项研究中,我们用电生理学方法在颗粒状岛叶的尾部区分出一个听觉区域(岛叶听觉区,IA),并通过顺行示踪生物胞素检查 IA 与外侧前额叶皮层的前颗粒状岛叶的传出连接,以推断 IA 的功能意义。IA 投射到前颗粒状岛叶的回返投射区,后者是外侧前额叶皮层的一部分。IA 还投射到相邻的颗粒状岛叶和后颗粒状岛叶,并向初级和次级体感区域的皮质 I 层发送反馈投射。皮质传出投射终止于听觉、体感和内脏丘脑核,以及丘脑网状核的底部,可能与内脏区重叠。尾状核的腹侧部、下丘外侧皮质和中央杏仁核也是主要的靶区。IA 除了对声刺激(噪声爆发和纯音)有神经反应外,还对前爪的经皮电刺激有反应。结果表明,IA 参与了与体感、伤害感受和内脏处理相关的多种功能,这些功能可能是声音驱动的情绪和自主反应的基础。IA 可能参与了如此广泛的跨模态感觉相互作用,也可能是与前额叶皮层更高的神经处理相关的听觉处理的重要解剖节点。

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