Kimura A, Imbe H, Donishi T, Tamai Y
Department of Physiology, Wakayama Medical University, Wakayama Kimiidera 811-1, 641-8509, Japan.
Eur J Neurosci. 2007 Dec;26(12):3524-35. doi: 10.1111/j.1460-9568.2007.05925.x. Epub 2007 Dec 4.
Tonotopically comparable subfields of the primary auditory area (AI) and nonprimary auditory areas (non-AI), i.e. posterodorsal area (PD) and ventral auditory area (VA), in the rat cortex have similar topographies in the projection to the ventral division of the medial geniculate nucleus (MGV), but reverse topographies in the projection to the thalamic reticular nucleus (TRN). In this study, we examined axonal projections of single auditory TRN cells, using juxtacellular recording and labeling techniques, to determine features of TRN projections and estimate how the TRN mediates corticofugal inhibition along with the reverse topographies of cortical projections to the TRN. Auditory TRN cells sent topographic projections to limited parts of the MGV in a manner that relays cortical inputs from tonotopically comparable subfields of the AI and non-AI (PD and VA) to different parts of the MGV. The results suggest that corticofugal excitations from the AI and non-AI modulate thalamic cell activity in the same part of the MGV, whereas corticofugal inhibitions via the TRN modulate cell activity in different parts of the MGV with regard to tonotopic organization. The AI and non-AI could serve distinctive gating functions for auditory attention through the differential topography of inhibitory modulation. In addition, we obtained an intriguing finding that a subset of auditory TRN cells projected to the somatosensory but not to the auditory thalamic nuclei. There was also a cell projecting to the MGV and somatosensory nuclei. These findings extend the previously suggested possibility that TRN has a cross-modal as well as an intramodal gating function in the thalamus.
大鼠皮层中初级听觉区(AI)和非初级听觉区(非AI),即后背部区域(PD)和腹侧听觉区(VA)的音频拓扑可比子区域,在投射到内侧膝状体核(MGV)腹侧部分时具有相似的拓扑结构,但在投射到丘脑网状核(TRN)时拓扑结构相反。在本研究中,我们使用细胞旁记录和标记技术检查了单个听觉TRN细胞的轴突投射,以确定TRN投射的特征,并估计TRN如何与皮层向TRN的反向拓扑结构一起介导皮质离心抑制。听觉TRN细胞以一种将来自AI和非AI(PD和VA)的音频拓扑可比子区域的皮质输入中继到MGV不同部分的方式,向MGV的有限部分发送拓扑投射。结果表明,来自AI和非AI的皮质离心兴奋调节MGV同一部分的丘脑细胞活动,而通过TRN的皮质离心抑制在音频拓扑组织方面调节MGV不同部分的细胞活动。AI和非AI可以通过抑制性调制的差异拓扑为听觉注意力发挥独特的门控功能。此外,我们还获得了一个有趣的发现,即一部分听觉TRN细胞投射到体感丘脑核而不是听觉丘脑核。也有一个细胞投射到MGV和体感核。这些发现扩展了之前提出的TRN在丘脑中具有跨模态以及模态内门控功能的可能性。