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猴脑中 TE 区的皮质连接:混合模块和分布式组织。

Cortical connections to area TE in monkey: hybrid modular and distributed organization.

机构信息

Dipartimento di Neuroscienze, Sezione di Fisiologia, Università di Parma, Parma, Italy.

出版信息

Cereb Cortex. 2010 Feb;20(2):257-70. doi: 10.1093/cercor/bhp096. Epub 2009 May 14.

Abstract

To investigate the fine anatomical organization of cortical inputs to visual association area TE, 2-3 small injections of retrograde tracers were made in macaque monkeys. Injections were made as a terminal procedure, after optical imaging and electrophysiological recording, and targeted to patches physiologically identified as object-selective. Retrogradely labeled neurons occurred in several unimodal visual areas, the superior temporal sulcus, intraparietal sulcus (IPS), and prefrontal cortex (PFC), consistent with previous studies. Despite the small injection size (<0.5 mm wide), the projection foci in visual areas, but not in IPS or PFC, were spatially widespread (4-6 mm in extent), and predominantly consisted of neurons labeled by only one of the injections. This can be seen as a quasi-modular organization. In addition, within each projection focus, there were scattered neurons projecting to one of the other injections, together with some double-labeled (DL) neurons, in a more distributed pattern. Finally, projection foci included smaller "hotspots," consisting of intermixed neurons, single-labeled by the different injections, and DL neurons. DL neurons are likely the result of axons having extended, spatially separated terminal arbors, as demonstrated by anterograde experiments. These results suggest a complex, hybrid connectivity architecture, with both modular and distributed components.

摘要

为了研究视觉联合区 TE 的皮质输入的精细解剖组织,我们在猕猴身上进行了 2-3 次逆行示踪剂小注射。注射是在光学成像和电生理记录之后作为终末程序进行的,靶向的是在生理学上被鉴定为物体选择性的斑块。逆行标记神经元出现在几个单模态视觉区域、颞上沟、顶内沟(IPS)和前额叶皮层(PFC)中,这与以前的研究一致。尽管注射体积很小(<0.5 毫米宽),但在视觉区域而非 IPS 或 PFC 中的投射焦点在空间上广泛分布(范围为 4-6 毫米),并且主要由仅由一个注射标记的神经元组成。这可以被视为一种准模块化组织。此外,在每个投射焦点内,有一些散在的神经元投射到其他注射中的一个,还有一些双标记(DL)神经元,呈更分散的模式。最后,投射焦点包括较小的“热点”,由不同注射单标记的混合神经元和 DL 神经元组成。DL 神经元可能是由于轴突的延伸,空间分离的终末树突,正如逆行实验所证明的那样。这些结果表明存在一种复杂的混合连接结构,具有模块化和分布式成分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f408/2803728/dfb4f6de2547/cercorbhp096f01_4c.jpg

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