首页> 外文期刊>Journal of Neurophysiology >Hyperpolarization-activated current Ih disconnects somatic and dendritic spike initiation zones in layer V pyramidal neurons.
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Hyperpolarization-activated current Ih disconnects somatic and dendritic spike initiation zones in layer V pyramidal neurons.

机译:超极化激活电流Ih断开了V层锥体神经元中的体细胞和树突状棘突起始区。

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Layer V pyramidal cells of the somatosensory cortex operate with two spike initiation zones. Subthreshold depolarizations are strongly attenuated along the apical dendrite linking the somatic and distal dendritic spike initiation zones. Sodium action potentials, on the other hand, are actively back-propagating from the axon hillock into the apical tuft. There they can interact with local excitatory input leading to the generation of calcium action potentials. We investigated if and how back-propagating sodium action potentials alone, without concomitant excitatory dendritic input, can initiate calcium action potentials in the distal dendrite. In acute slices of the rat somatosensory cortex, layer V pyramidal cells were studied under current-clamp with simultaneous recordings from the soma and the apical dendrite. A train of four somatic action potentials had to reach high frequencies to induce calcium action potentials in the dendrite ("critical frequency," CF approximately 100 Hz). Depolarization in the dendrite reduced the CF, while hyperpolarization increased it. The CF depended on the presence of the hyperpolarization-activated current Ih: blockade with 20 microM 4-(N-ethyl-N-phenylamino)-1,2-dimethyl-6-(methylamino) pyridinium chloride (ZD7288) reduced the CF to 68% of control. If the neurons were stimulated with noisy current injections, leading to in-vivo-like irregular spiking, no calcium action potentials were induced in the dendrite. However, after Ih channel blockade, calcium action potentials were frequently seen. These data suggest that Ih prevents initiation of the dendritic calcium action potential by proximal input alone. Dendritic calcium action potentials may therefore represent a unique signature for coincident somatic and dendritic activation.
机译:体感皮层的V层锥体细胞具有两个刺突起始区。亚阈值去极化沿连接体细胞和远端树突棘起始区的顶端树突强烈衰减。另一方面,钠动作电位正从轴突岗向根尖簇中反向传播。它们在那里可以与局部兴奋性输入相互作用,从而导致钙动作电位的产生。我们调查了是否以及如何单独使用逆向传播的钠动作电位,而没有伴随的兴奋性树突状输入,可以在远端树突中引发钙动作电位。在大鼠体感皮层的急性切片中,在电流钳下研究了V层锥体细胞,并同时记录了来自体细胞和顶端树突的记录。一列四个体细胞动作电位必须达到高频才能在枝晶中诱发钙动作电位(“临界频率”,CF约为100 Hz)。枝晶中的去极化会降低CF,而超极化会增加CF。 CF取决于超极化激活电流Ih的存在:用20 microM 4-(N-乙基-N-苯基氨基)-1,2-二甲基-6-(甲基氨基)氯化吡啶鎓(ZD7288)阻断可将CF降低至控制68%。如果通过有噪声的电流注射刺激神经元,导致体内样不规则突刺,则在树突中不会诱导钙动作电位。但是,在Ih通道阻滞后,经常会看到钙动作电位。这些数据表明,Ih只能通过近端输入阻止树突钙动作电位的启动。树突钙动作电位因此可以代表同时发生的体细胞和树突活化的独特特征。

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