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膜电压对猫外侧膝状体神经元感受野特性的影响:低阈值Ca2+电导的作用。

Effects of membrane voltage on receptive field properties of lateral geniculate neurons in the cat: contributions of the low-threshold Ca2+ conductance.

作者信息

Lu S M, Guido W, Sherman S M

机构信息

Department of Neurobiology, State University of New York, Stony Brook 11794-5230.

出版信息

J Neurophysiol. 1992 Dec;68(6):2185-98. doi: 10.1152/jn.1992.68.6.2185.

Abstract
  1. Thalamic relay cells, including those of the lateral geniculate nucleus, display a low-threshold spike (LT spike), which is a large depolarization due to an increased Ca2+ conductance. Typically riding the crest of each LT spike is a burst of from two to seven action potentials, which we refer to as the LT burst. The LT spike is voltage dependent, because if the cell's resting membrane potential is more depolarized than roughly -60 mV, the LT spike is inactivated, but if more hyperpolarized, the spike is deinactivated and can be activated by a depolarization, such as from an afferent excitatory postsynaptic potential (EPSP). Thalamic relay cells thus display two response modes: a relay or tonic mode, when the cell is depolarized and LT spikes are inactivated, leading to tonic firing of action potentials; and a burst mode, when the cell is hyperpolarized and tends to respond with LT spikes and their associated bursts of action potentials. 2. We were interested in the contribution of the LT spike on the transmission of visually evoked signals through geniculate relay cells to visual cortex. We recorded intracellularly from geniculate cells in an anesthetized, paralyzed, in vivo cat preparation to study the effects of membrane voltage, and thus the presence or absence of LT spikes, on responses to drifting sine-wave gratings. We monitored the visually evoked responses of 14 geniculate neurons (6 X, 7 Y, and 1 unclassified) at different membrane potentials at which LT spikes were inactivated or deinactivated. 3. Changing membrane voltage during visual stimulation switched the response mode of every cell between the relay and burst modes. In the burst mode, LT spikes occurred in phase with the visual stimulus and not at rhythmic intervals uncorrelated to visual stimuli. To any given stimulus cycle, the cell responded usually with an LT burst or a tonic response, and rarely was more than one LT burst evoked by a stimulus cycle. Occasionally a single cycle evoked both an LT burst and tonic response, but always the LT burst occurred first. 4. The spatial tuning characteristics of the cells did not differ dramatically as a function of membrane potential, because the tuning of the LT bursts was quite similar to that of the tonic response component. Although we did not obtain complete temporal tuning properties, we did note that hyperpolarized cells responded reliably with LT bursts at several temporal frequencies. 5. A consistent difference was seen between the LT burst and tonic response components in terms of response linearity.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 丘脑中继细胞,包括外侧膝状体核的细胞,会表现出低阈值尖峰(LT尖峰),这是由于Ca2+电导增加而产生的大幅去极化。通常在每个LT尖峰的波峰上会有一串两到七个动作电位,我们将其称为LT爆发。LT尖峰是电压依赖性的,因为如果细胞的静息膜电位比大约 -60 mV更去极化,LT尖峰就会失活,但如果更超极化,尖峰就会去失活并可被去极化激活,比如来自传入兴奋性突触后电位(EPSP)的去极化。因此,丘脑中继细胞表现出两种反应模式:一种是中继或紧张性模式,当细胞去极化且LT尖峰失活时,导致动作电位的紧张性发放;另一种是爆发模式,当细胞超极化且倾向于以LT尖峰及其相关的动作电位爆发来做出反应时。2. 我们感兴趣的是LT尖峰在视觉诱发信号通过膝状体中继细胞向视觉皮层的传递过程中的作用。我们在麻醉、麻痹的活体猫标本中对膝状体细胞进行细胞内记录,以研究膜电压以及因此LT尖峰的有无对漂移正弦波光栅反应的影响。我们在LT尖峰失活或去失活的不同膜电位下监测了14个膝状体神经元(6个X型、7个Y型和1个未分类)的视觉诱发反应。3. 在视觉刺激期间改变膜电压会使每个细胞的反应模式在中继模式和爆发模式之间切换。在爆发模式下,LT尖峰与视觉刺激同步出现,而不是以与视觉刺激无关的有节奏的间隔出现。对于任何给定的刺激周期,细胞通常以LT爆发或紧张性反应做出反应,并且很少有一个刺激周期能诱发不止一次LT爆发。偶尔一个单一周期会同时诱发LT爆发和紧张性反应,但LT爆发总是先出现。4. 细胞的空间调谐特性并不会因膜电位而有显著差异,因为LT爆发的调谐与紧张性反应成分非常相似。尽管我们没有获得完整的时间调谐特性,但我们确实注意到超极化细胞在几个时间频率下能可靠地以LT爆发做出反应。5. 在反应线性方面,LT爆发和紧张性反应成分之间存在一致的差异。(摘要截断于400字)

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