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通过细胞外施加电脉冲对神经细胞进行直接和间接激活。

Direct and indirect activation of nerve cells by electrical pulses applied extracellularly.

作者信息

Gustafsson B, Jankowska E

出版信息

J Physiol. 1976 Jun;258(1):33-61. doi: 10.1113/jphysiol.1976.sp011405.

Abstract
  1. The mode of activation of nerve cells by extracellular stimuli was investigated while recording from a selected cell with one electrode, and applying current pulses around this cell with another electrode. The analysis was done on motoneurones and on spinal border cells from lower lumbar segments in the cat. 2. Directly evoked action potentials were defined by their appearance in an all-or-none fashion with stable latencies of less than 0-5 ms. The lowest thresholds for their generation were 0-15-0-20 muA in the spinal border cells and 0-35-0-40 muA in the motoneurones. In the main series on motoneurones a correlation has been established between different positions of the extracellular stimulating electrode in relation to the cells and the thresholds for the direct excitation of these cells. The position of the electrode were defined on the basis of an analysis of the IS and SD components of the action potentials recorded extracellularly around the cell when evoked by current pulses applied through the intracellular electrode; both the amplitudes of these IS and SD components and their timing with the IS and SD spikes, which were simultaneously recorded with the intracellular electrode, were then taken into account. The lowest thresholds (less than 2 muA) for the direct activation of cells were found nearest the initial segment of the axon. Their values increased to about 5 mu A at near-soma positions and to greater than 10 muA at near-dendrites positions about 150 mum away. 3. Transsynaptically evoked action potentials which were clearly set up by the preceding e.p.s.p.s appeared with latencies greater than 0-7 ms. When single current pulses were used, the lowest thresholds for transsynaptic spike activation were usually greater than 5-10 muA but they considerably decreased with repetitive stimuli. These thresholds were higher than the thresholds for the direct activation of cells within the region of the initial segment, of the same order of magnitude near the soma, and lower when the stimulating electrode was nearer the dendrites than the soma and generally at all larger distances from the cells. 4. All the observations on direct excitation of cells by extracellular stimuli (generation of the IS spike before the SD spike, lowest thresholds near the region of the initial segment of the axon, similar rates of increase in these thresholds with distance as for fibres) lead to the conclusion that the effects of the extracellular stimuli are exerted primarily via spread of current to the initial segment of the axon and its depolarization. 5. Late extracellular negativities presumably related to dendritic activation were observed in a few cells. These negativities were synchronous with late components of the intracellulary recorded action potentials.
摘要
  1. 在使用一个电极记录选定细胞的同时,用另一个电极在该细胞周围施加电流脉冲,以此研究细胞外刺激激活神经细胞的方式。分析对象为猫的运动神经元和下腰段的脊髓边界细胞。2. 直接诱发的动作电位以全或无的方式出现,潜伏期稳定且小于0 - 5毫秒,以此来定义。在脊髓边界细胞中,其产生的最低阈值为0 - 15 - 0 - 20微安,在运动神经元中为0 - 35 - 0 - 40微安。在关于运动神经元的主要系列实验中,已确定细胞外刺激电极相对于细胞的不同位置与这些细胞直接兴奋阈值之间的相关性。电极位置是根据对通过细胞内电极施加电流脉冲诱发细胞周围细胞外记录的动作电位的IS和SD成分的分析来确定的;然后考虑这些IS和SD成分的幅度以及它们与同时用细胞内电极记录的IS和SD尖峰的时间关系。发现细胞直接激活的最低阈值(小于2微安)出现在最靠近轴突起始段的位置。在靠近胞体位置时,其值增加到约5微安,在距离胞体约150微米的靠近树突位置时增加到大于10微安。3. 由先前的兴奋性突触后电位(e.p.s.p.s)明显引发的经突触诱发的动作电位,潜伏期大于0 - 7毫秒。当使用单个电流脉冲时,经突触尖峰激活的最低阈值通常大于5 - 10微安,但在重复刺激时会大幅降低。这些阈值高于轴突起始段区域内细胞直接激活的阈值,在胞体附近处于相同数量级,当刺激电极比胞体更靠近树突时阈值更低,并且通常在离细胞所有更大距离处也是如此。4. 关于细胞外刺激对细胞的直接兴奋的所有观察结果(IS尖峰在SD尖峰之前产生,轴突起始段区域附近的最低阈值,这些阈值随距离增加的速率与纤维相似)得出结论,细胞外刺激的作用主要是通过电流扩散到轴突的起始段及其去极化来实现的。5. 在少数细胞中观察到可能与树突激活有关的晚期细胞外负电位。这些负电位与细胞内记录的动作电位的晚期成分同步。

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