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啮齿动物前额叶皮层不同区域间解剖学连接的差异。

Differences in anatomical connections across distinct areas in the rodent prefrontal cortex.

作者信息

Bedwell Stacey A, Billett E Ellen, Crofts Jonathan J, Tinsley Chris J

机构信息

School of Science and Technology, Nottingham Trent University, Clifton Lane, Nottingham, NG11 8NS, UK.

出版信息

Eur J Neurosci. 2017 Mar;45(6):859-873. doi: 10.1111/ejn.13521. Epub 2017 Feb 16.

Abstract

Prefrontal cortex (PFC) network structure is implicated in a number of complex higher-order functions and with a range of neurological disorders. It is therefore vital to our understanding of PFC function to gain an understanding of its underlying anatomical connectivity. Here, we injected Fluoro-Gold and Fluoro-Ruby into the same sites throughout rat PFC. Tracer injections were applied to two coronal levels within the PFC (anterior +4.7 mm to bregma and posterior +3.7 mm to bregma). Within each coronal level, tracers were deposited at sites separated by approximately 1 mm and located parallel to the medial and orbital surface of the cortex. We found that both Fluoro-Gold and Fluoro-Ruby injections produced prominent labelling in temporal and sensory-motor cortex. Fluoro-Gold produced retrograde labelling and Fluoro-Ruby largely produced anterograde labelling. Analysis of the location of these connections within temporal and sensory-motor cortex revealed a consistent topology (as the sequence of injections was followed mediolaterally along the orbital surface of each coronal level). At the anterior coronal level, injections produced a similar topology to that seen in central PFC in earlier studies from our laboratory (i.e. comparing equivalently located injections employing the same tracer), this was particularly prominent within temporal cortex. However, at the posterior coronal level this pattern of connections differed significantly, revealing higher levels of reciprocity, in both temporal cortex and sensory-motor cortex. Our findings indicate changes in the relative organization of connections arising from posterior in comparison to anterior regions of PFC, which may provide a basis to determine how complex processes are organized.

摘要

前额叶皮层(PFC)网络结构与许多复杂的高级功能以及一系列神经疾病有关。因此,了解其潜在的解剖学连接对于我们理解PFC功能至关重要。在这里,我们将荧光金和荧光红宝石注射到大鼠PFC的相同部位。示踪剂注射应用于PFC内的两个冠状层面(前囟前方+4.7毫米和前囟后方+3.7毫米)。在每个冠状层面内,示踪剂沉积在相距约1毫米且与皮质内侧和眶面平行的部位。我们发现,荧光金和荧光红宝石注射在颞叶和感觉运动皮层中均产生了明显的标记。荧光金产生逆行标记,而荧光红宝石主要产生顺行标记。对颞叶和感觉运动皮层内这些连接位置的分析揭示了一种一致的拓扑结构(随着沿着每个冠状层面的眶面从内侧向外侧遵循注射顺序)。在冠状层面的前部,注射产生的拓扑结构与我们实验室早期研究中在中央PFC中看到的类似(即比较使用相同示踪剂的等效位置注射),这在颞叶皮层中尤为突出。然而,在冠状层面的后部,这种连接模式有显著差异,在颞叶皮层和感觉运动皮层中都显示出更高程度的相互性。我们的研究结果表明,与PFC的前部区域相比,后部区域连接的相对组织发生了变化,这可能为确定复杂过程是如何组织的提供基础。

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