Shepherd Gordon M G
Department of Physiology, Feinberg School of Medicine, Northwestern University Chicago, IL, USA.
Front Neurosci. 2009 Dec 15;3(3):337-43. doi: 10.3389/neuro.01.030.2009. eCollection 2009.
A well-defined granular layer 4 is a defining cytoarchitectonic feature associated with sensory areas of mammalian cerebral cortex, and one with hodological significance: the local axons ascending from cells in thalamorecipient layer 4 and connecting to layer 2/3 pyramidal neurons form a major feedforward excitatory interlaminar projection. Conversely, agranular cortical areas, lacking a distinct layer 4, pose a hodological conundrum: without a laminar basis for the canonical layer 4-->2/3 pathway, what is the basic circuit organization? This review highlights current challenges and prospects for local-circuit electroanatomy and electrophysiology in agranular cortex, focusing on the mouse. Different lines of evidence, drawn primarily from studies of motor areas in frontal cortex in rodents, support the view that synaptic circuits in agranular cortex are organized around prominent descending excitatory layer 2/3-->5 pathways targeting multiple classes of projection neurons.
界限清晰的颗粒层4是与哺乳动物大脑皮层感觉区域相关的一个明确的细胞构筑特征,并且是一个具有通路学意义的特征:从丘脑接受层4中的细胞发出并连接到第2/3层锥体神经元的局部轴突形成了一个主要的前馈兴奋性层间投射。相反,无颗粒皮质区域缺乏明显的第4层,这带来了一个通路学难题:没有了规范的第4层到第2/3层通路的分层基础,其基本的电路组织是什么?这篇综述着重介绍了无颗粒皮质中局部回路电解剖学和电生理学的当前挑战与前景,重点是小鼠。主要来自对啮齿动物额叶皮质运动区域研究的不同证据支持了这样一种观点:无颗粒皮质中的突触回路围绕着针对多类投射神经元的突出的下行兴奋性第2/3层到第5层通路进行组织。