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Circuitry of rat barrel cortex investigated by infrared-guided laser stimulation.

机译:通过红外激光诱导的大鼠桶状皮层电路。

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Infrared-guided laser stimulation was used to examine the synaptic connectivity of neurons in rat barrel cortex. Layer V pyramidal neurons were visualized by infrared videomicroscopy and their membrane potential was recorded with patch pipettes. Presumptive presynaptic neurons were activated by uncaging glutamate with the light of a uv laser directed onto these neurons superfused with medium containing caged glutamate. Synaptic connections were identified by postsynaptic potentials following laser stimulation. The most frequent synaptic connections were found between layer V pyramidal neurons. The probability of this intralaminar input declined monotonically with the lateral distance between stimulated and recorded neuron. In contrast, input from layer II/III onto lamina V neurons showed a periodic organization. Synaptic connections originating from this lamina clearly reflected the barrel structure, with more input originating from the barrel column side, and less input from the barrel column centre. Thus, a barrel-specific organization seems to be especially pronounced for synaptic input from layer II/III to neurons of layer V.
机译:红外引导激光刺激被用来检查大鼠桶皮质中神经元的突触连接性。 V层锥体神经元通过红外显微镜观察,并用移液管记录其膜电位。假定的突触前神经元通过用紫外激光的光解开谷氨酸盐来激活,该紫外激光对准与含有笼状谷氨酸盐的培养基融合的这些神经元。通过激光刺激后的突触后电位来识别突触连接。在V层锥体神经元之间发现了最频繁的突触连接。层内输入的概率随受激和记录的神经元之间的横向距离单调下降。相反,从第II / III层到层状V神经元的输入显示出周期性的组织。源自该薄片的突触连接清楚地反映了枪管的结构,其中更多的输入来自枪管柱侧,而更少的输入来自枪管柱中心。因此,对于从第II / III层到第V层神经元的突触输入,桶状组织似乎尤为突出。

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