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首页> 外文期刊>Neuroscience Research: The Official Journal of the Japan Neuroscience Society >Intracellularly labeled pyramidal neurons in the cortical areas projecting to the spinal cord. I. Electrophysiological properties of pyramidal neurons.
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Intracellularly labeled pyramidal neurons in the cortical areas projecting to the spinal cord. I. Electrophysiological properties of pyramidal neurons.

机译:皮质区域内向脊髓突出的细胞内标记的锥体神经元。 I.锥体神经元的电生理特性。

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摘要

To study cortical motor control, we examined electrical characteristics of pyramidal neurons in the present report, and intra- or juxta-columnar connections of the pyramidal neurons to corticospinal neurons in the accompanying report. Pyramidal neurons were intracellularly recorded and stained in slices of rat motorsensory cortices (areas FL, HL and M1) where many corticospinal neurons were labeled retrogradely. They were morphologically classified into classical, star and other modified pyramidal neurons, and electrophysiologically into regular-spiking (RS), intrinsic bursting (IB) and irregular-spiking (IS) neurons on the basis of spiking pattern in response to 500 ms depolarizing current pulses. RS responses were further divided into RS with slow adaptation (RS-SA) and RS with fast adaptation (RS-FA). The electrical properties were associated with the laminar location of the neurons; RS-SA responses were observed frequently in layer II/III and less frequently in layers IV-VI, and IB and IS responses were exclusively found in layers V and VI, respectively. Interestingly, all layer IV neurons in area FL/HL were RS-FA star-pyramidal neurons, whereas layer IV neurons in area M1 were RS-SA classical pyramidal neurons. Although weak stimulation of areas FL/HL and M1 is known to elicit movement, these results suggest different information processings between the two areas.
机译:为了研究皮质运动控制,我们在本报告中检查了锥体神经元的电特性,并在随附的报告中检查了锥体神经元与皮质脊髓神经元的内或近列连接。金字塔形神经元被细胞内记录,并在大鼠运动感觉皮层(区域FL,HL和M1)的切片中染色,其中许多皮质脊髓神经元被逆行标记。根据响应于500 ms去极化电流的尖峰模式,将它们在形态上分为经典,星形和其他修饰的锥体神经元,并将其在电生理上分为规则尖峰(RS),固有突发(IB)和不规则尖峰(IS)神经元。脉冲。 RS响应进一步分为慢适应性RS(RS-SA)和快速适应性RS(RS-FA)。电学性质与神经元的层状位置有关。在II / III层中经常观察到RS-SA响应,而在IV-VI层中观察到的频率较低,而IB和IS响应分别在V层和VI层中发现。有趣的是,FL / HL区域中的所有第IV层神经元都是RS-FA星状锥体神经元,而M1区域中的第IV层神经元是RS-SA经典锥体神经元。尽管已知对FL / HL和M1区域的弱刺激会引起运动,但这些结果表明两个区域之间的信息处理不同。

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