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异常整流激活对体外猫感觉运动皮层神经元超极化后电位的影响。

Influence of anomalous rectifier activation on afterhyperpolarizations of neurons from cat sensorimotor cortex in vitro.

作者信息

Schwindt P C, Spain W J, Crill W E

机构信息

Department of Physiology and Biophysics, University of Washington School of Medicine, Seattle 98195.

出版信息

J Neurophysiol. 1988 Feb;59(2):468-81. doi: 10.1152/jn.1988.59.2.468.

Abstract
  1. Large neurons from layer V of cat sensorimotor cortex (Betz cells) were studied to determine the influence of the anomalous rectifier current (IAR) on slow afterhyperpolarizations (AHPs). The neurons were examined using intracellular recording and single-microelectrode voltage clamp in an in vitro brain slice preparation. 2. A faster medium-duration AHP (mAHP) and slower AHP (sAHP) followed repetitive firing (22, 23). The amplitude of the mAHP often increased or remained constant during membrane potential hyperpolarization. The membrane potential trajectory resulting solely from IAR activation was similar to the mAHP. 3. Postrepetitive firing voltage clamp was used to measure directly slowly decaying K+ currents (IK) and IAR at different membrane potentials. IK exhibited both a fast and slow decay. The time constants of the fast decay of IK and IAR activation were similar. IAR increased with hyperpolarization or raised extracellular K+ concentration [( K+]o), whereas both the fast and slow components of IK reversed or nulled near -100 mV and behaved as pure K+ currents in response to raised [K+]o. 4. To determine the precise contribution of IK and IAR to the AHP waveform, theoretical AHPs were computed using a quantitative model based on voltage-clamp measurements. The calculated AHPs were qualitatively similar to measured AHPs. The amplitude of the mAHP showed little change with hyperpolarization because of the increasing dominance of IAR at more negative membrane potentials. The sAHP was little affected by IAR activation. 5. Several model parameters subject to biological variation among Betz cells were varied in the calculations to determine their importance in the AHP waveform. With IK parameters held constant, the amplitude and time course of the mAHP depended on resting potential, membrane time constant, the kinetics of the anomalous rectifier conductance (GAR), and the maximum value of GAR. IAR activation could result in a biphasic AHP even when the fast decay of IK was omitted from the calculations. 6. A wider variation of model parameters revealed behavior that may be relevant to other neurons. Certain values of membrane or IAR activation time constants resulted in a monophasic AHP even when the fast decay of IK was present. The decay of a biphasic AHP could reflect either the onset of IAR or the fast decay of IK, depending on the relative value of their time constants. Procedures are outlined to discriminate between these possibilities using current clamp methods.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 研究了猫感觉运动皮层V层的大神经元(贝茨细胞),以确定反常整流电流(IAR)对慢后超极化(AHP)的影响。在体外脑片制备中,使用细胞内记录和单微电极电压钳对这些神经元进行检测。2. 重复放电后会出现更快的中等时程AHP(mAHP)和更慢的AHP(sAHP)(22, 23)。在膜电位超极化期间,mAHP的幅度通常会增加或保持不变。仅由IAR激活产生的膜电位轨迹与mAHP相似。3. 使用重复放电后电压钳在不同膜电位下直接测量缓慢衰减的钾电流(IK)和IAR。IK表现出快速和缓慢的衰减。IK快速衰减和IAR激活的时间常数相似。IAR随着超极化或细胞外钾离子浓度[(K +)o]的升高而增加,而IK的快速和慢速成分在接近 -100 mV时反转或消失,并在[(K +)o]升高时表现为纯钾电流。4. 为了确定IK和IAR对AHP波形的精确贡献,使用基于电压钳测量的定量模型计算理论AHP。计算出的AHP在质量上与测量的AHP相似。由于在更负的膜电位下IAR的主导作用增加,mAHP的幅度随超极化变化不大。sAHP受IAR激活的影响很小。5. 在计算中改变了几个在贝茨细胞之间存在生物学差异的模型参数,以确定它们在AHP波形中的重要性。在IK参数保持不变的情况下,mAHP的幅度和时间进程取决于静息电位、膜时间常数、反常整流电导(GAR)的动力学以及GAR的最大值。即使在计算中省略了IK的快速衰减,IAR激活也可能导致双相AHP。6. 更广泛的模型参数变化揭示了可能与其他神经元相关的行为。即使存在IK的快速衰减,某些膜或IAR激活时间常数的值也会导致单相AHP。双相AHP的衰减可能反映IAR的开始或IK的快速衰减,这取决于它们时间常数的相对值。概述了使用电流钳方法区分这些可能性的程序。(摘要截断于400字)

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