Shepherd Gordon M G, Pologruto Thomas A, Svoboda Karel
Howard Hughes Medical Institute, Cold Spring Harbor Laboratory, 1 Bungtown Road, Cold Spring Harbor, NY 11724, USA.
Neuron. 2003 Apr 24;38(2):277-89. doi: 10.1016/s0896-6273(03)00152-1.
Sensory deprivation during a critical period reduces spine motility and disrupts receptive field structure of layer 2/3 neurons in rat barrel cortex. To determine the locus of plasticity, we used laser scanning photostimulation, allowing us to rapidly map intracortical synaptic connectivity in brain slices. Layer 2/3 neurons differed in their spatial distributions of presynaptic partners: neurons directly above barrels received, on average, significantly more layer 4 input than those above the septa separating barrels. Complementary connectivity was found in deprived cortex: neurons above septa were now strongly coupled to septal regions, while connectivity between barrel regions and layer 2/3 was reduced. These results reveal competitive interactions between barrel and septal circuits in the establishment of precise intracortical circuits.
关键期的感觉剥夺会降低大鼠桶状皮层第2/3层神经元的树突棘活性,并破坏其感受野结构。为了确定可塑性位点,我们使用激光扫描光刺激,从而能够快速绘制脑片内的皮质内突触连接。第2/3层神经元在突触前伙伴的空间分布上存在差异:平均而言,位于桶状结构正上方的神经元比位于分隔桶状结构的隔区上方的神经元接收的第4层输入显著更多。在剥夺的皮层中发现了互补性连接:隔区上方的神经元现在与隔区区域强烈耦合,而桶状区域与第2/3层之间的连接减少。这些结果揭示了桶状和隔区回路在精确皮质内回路建立过程中的竞争性相互作用。