Tarczy-Hornoch K, Martin K A, Stratford K J, Jack J J
University Laboratory of Physiology, Oxford, UK.
Cereb Cortex. 1999 Dec;9(8):833-43. doi: 10.1093/cercor/9.8.833.
Recordings were made from pairs of neurons in cat striate visual cortex in vitro to study the AMPA-channel-mediated components of intracortical excitatory synaptic connections between layer 4 spiny neurons and between layer 6 and layer 4 spiny neurons. Forty-six of the 72 cells recorded were identified morphologically. They consisted of spiny stellate and pyramidal cells in layer 4, and pyramidal cells in layer 6. Connections between layer 4 excitatory cells involve excitatory postsynaptic potentials (EPSPs) averaging 949 microV, with an average coefficient of variation of 0.21 (n = 30). The synapses operate at very high release probabilities (0.69-0.98). With repetitive stimulation these EPSPs show varying degrees of depression, largely mediated by presynaptic changes in release probability. Four pairs of layer 4 cells were reciprocally connected. The connections from layer 6 to layer 4 involve smaller, more variable EPSPs, with an average amplitude of 214 microV, and average coefficient of variation 0.72 (n = 7). These synapses operate at moderately high release probabilities (0.37-0.56). They show facilitation with repetitive stimulation, mediated largely by presynaptic changes in release probability. One excitatory connection from a layer 4 neuron to a layer 6 pyramidal cell was also detected. Thus, layer 4 spiny neurons receive effective excitation from two intracortical sources that have different synaptic dynamics and are likely to contribute significantly to the temporal properties of these cells in vivo.
在体外对猫纹状视觉皮层中的神经元对进行记录,以研究4层棘状神经元之间以及6层和4层棘状神经元之间皮质内兴奋性突触连接的AMPA通道介导成分。在记录的72个细胞中,有46个在形态上得到了识别。它们包括4层中的棘状星型细胞和锥体细胞,以及6层中的锥体细胞。4层兴奋性细胞之间的连接涉及平均为949微伏的兴奋性突触后电位(EPSP),平均变异系数为0.21(n = 30)。这些突触以非常高的释放概率(0.69 - 0.98)运作。在重复刺激下,这些EPSP表现出不同程度的抑制,主要由释放概率的突触前变化介导。4对4层细胞相互连接。从6层到4层的连接涉及较小、更可变的EPSP,平均幅度为214微伏,平均变异系数为0.72(n = 7)。这些突触以中等偏高的释放概率(0.37 - 0.56)运作。它们在重复刺激下表现出易化作用,主要由释放概率的突触前变化介导。还检测到一个从4层神经元到6层锥体细胞的兴奋性连接。因此,4层棘状神经元从两个具有不同突触动力学的皮质内来源接受有效兴奋,这可能对这些细胞在体内的时间特性有显著贡献。