Yamawaki Naoki, Borges Katharine, Suter Benjamin A, Harris Kenneth D, Shepherd Gordon M G
Department of Physiology, Feinberg School of Medicine, Northwestern University, Chicago, United States.
Institute of Neurology, University College London, London, United Kingdom.
Elife. 2014 Dec 19;3:e05422. doi: 10.7554/eLife.05422.
The motor cortex (M1) is classically considered an agranular area, lacking a distinct layer 4 (L4). Here, we tested the idea that M1, despite lacking a cytoarchitecturally visible L4, nevertheless possesses its equivalent in the form of excitatory neurons with input-output circuits like those of the L4 neurons in sensory areas. Consistent with this idea, we found that neurons located in a thin laminar zone at the L3/5A border in the forelimb area of mouse M1 have multiple L4-like synaptic connections: excitatory input from thalamus, largely unidirectional excitatory outputs to L2/3 pyramidal neurons, and relatively weak long-range corticocortical inputs and outputs. M1-L4 neurons were electrophysiologically diverse but morphologically uniform, with pyramidal-type dendritic arbors and locally ramifying axons, including branches extending into L2/3. Our findings therefore identify pyramidal neurons in M1 with the expected prototypical circuit properties of excitatory L4 neurons, and question the traditional assumption that motor cortex lacks this layer.
传统上,运动皮层(M1)被认为是一个无颗粒区,缺乏明显的第4层(L4)。在此,我们验证了这样一种观点:尽管M1在细胞结构上没有可见的L4层,但它仍具有等同于L4层的结构,其形式为具有输入-输出回路的兴奋性神经元,类似于感觉区域中的L4神经元。与这一观点一致,我们发现,位于小鼠M1前肢区域L3/5A边界的一个薄的层状区域中的神经元具有多个类似L4的突触连接:来自丘脑的兴奋性输入、主要单向输出到L2/3锥体神经元的兴奋性输出,以及相对较弱的长距离皮质-皮质输入和输出。M1-L4神经元在电生理上具有多样性,但在形态上是一致的,具有锥体型树突分支和局部分支的轴突,包括延伸到L2/3的分支。因此,我们的研究结果确定了M1中的锥体神经元具有兴奋性L4神经元预期的典型回路特性,并对运动皮层缺乏这一层的传统假设提出了质疑。