Weiler Nicholas, Wood Lydia, Yu Jianing, Solla Sara A, Shepherd Gordon M G
Department of Physiology, Feinberg School of Medicine, Northwestern University, Chicago, Illinois 60611, USA.
Nat Neurosci. 2008 Mar;11(3):360-6. doi: 10.1038/nn2049. Epub 2008 Feb 3.
Cortical layering is a hallmark of the mammalian neocortex and a major determinant of local synaptic circuit organization in sensory systems. In motor cortex, the laminar organization of cortical circuits has not been resolved, although their input-output operations are crucial for motor control. Here, we developed a general approach for estimating layer-specific connectivity in cortical circuits and applied it to mouse motor cortex. From these data we computed a laminar presynaptic --> postsynaptic connectivity matrix, W(post,pre), revealing a complement of stereotypic pathways dominated by layer 2 outflow to deeper layers. Network modeling predicted, and experiments with disinhibited slices confirmed, that stimuli targeting upper, but not lower, cortical layers effectively evoked network-wide events. Thus, in motor cortex, descending excitation from a preamplifier-like network of upper-layer neurons drives output neurons in lower layers. Our analysis provides a quantitative wiring-diagram framework for further investigation of the excitatory networks mediating cortical mechanisms of motor control.
皮质分层是哺乳动物新皮质的一个标志,也是感觉系统中局部突触回路组织的主要决定因素。在运动皮层中,尽管其输入 - 输出操作对运动控制至关重要,但皮质回路的层状组织尚未明确。在这里,我们开发了一种估计皮质回路中特定层连接性的通用方法,并将其应用于小鼠运动皮层。根据这些数据,我们计算了一个层状的突触前→突触后连接矩阵W(post,pre),揭示了以第2层向更深层流出为主的一组刻板通路。网络建模预测,并且对去抑制切片的实验证实,针对皮质上层而非下层的刺激能有效诱发全网络事件。因此,在运动皮层中,来自上层神经元类似前置放大器网络的下行兴奋性驱动下层的输出神经元。我们的分析为进一步研究介导运动控制皮质机制的兴奋性网络提供了一个定量布线图框架。