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新皮层中内在爆发性神经元驱动的同步兴奋和抑制。

Synchronized excitation and inhibition driven by intrinsically bursting neurons in neocortex.

作者信息

Chagnac-Amitai Y, Connors B W

机构信息

Division of Biology and Medicine, Brown University, Providence, Rhode Island 02912.

出版信息

J Neurophysiol. 1989 Nov;62(5):1149-62. doi: 10.1152/jn.1989.62.5.1149.

DOI:10.1152/jn.1989.62.5.1149
PMID:2585046
Abstract
  1. The cellular mechanisms of synchronous synaptic activity were studied in isolated slices of rat SmI neocortex in which gamma-aminobutyric acid (GABA)-mediated inhibition was slightly suppressed. Intracellular measurements were made from single neurons, and extracellular recordings monitored the timing and intensity of population events. 2. Neurons in cortical layers II-VI were classified by the attributes of their single action potentials and repetitive firing patterns during injection of intracellular current pulses. Regular-spiking (RS) cells occurred in all layers and had relatively long-duration spikes and strong frequency adaptation. Intrinsically bursting (IB) cells occurred only in layers IV and V and generated bursts of greater than or equal to 3 spikes; some IB cells of lower-layer V produced repetitive bursts during long depolarizing pulses. Fast-spiking (FS) cells had brief spikes and little or no adaptation and fired at high frequencies. 3. When GABAA-mediated inhibition was slightly reduced with low doses of bicuculline methiodide (BMI, 0.8-1.0 microM), synchronous events were evoked by stimulating layer VI with single shocks. Synchronous events were characterized by prominent, often all-or-none extracellular field potentials that propagated horizontally for variable distances up to several millimeters. Large field potentials were invariably correlated with excitatory and inhibitory postsynaptic potentials (EPSPs and IPSPs) in single neurons. Both PSPs and field potentials often had long (up to 250 ms) and variable latencies, and sometimes two or more events were generated by single stimuli. In all cases the PSPs and field potentials were synchronous. Both field potentials and single cells sometimes generated short epochs (3-7 peaks) of rhythmic events at 20-50 Hz. 4. The physiological class of single neurons was correlated with the relative dominance of excitation and inhibition during each synchronous event. In phase with each synchronous event, most RS cells were very strongly inhibited with only small amounts of concurrent excitation. By contrast, IB cells were strongly and consistently excited, with relatively little inhibition. FS cells were also phasically excited. 5. Anatomic studies have identified RS and IB cells as pyramidal cells and FS cells as GABAergic nonpyramidal cells. This implies that, during the synchronous events of the present study, the majority of pyramidal cells were dominated by IPSPs. Synchronous excitation of FS cells, the presumed inhibitory interneurons, is consistent with this. Only a subset of the pyramidal neurons, almost all of them IB cells of the middle layers, displayed strong, synchronous excitation and clusters of action potentials.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 在大鼠初级体感皮层(SmI)的离体脑片中研究了同步突触活动的细胞机制,其中γ-氨基丁酸(GABA)介导的抑制作用被轻微抑制。对单个神经元进行细胞内测量,细胞外记录监测群体事件的时间和强度。2. 根据皮层II-VI层神经元在注入细胞内电流脉冲期间单个动作电位的特征和重复放电模式进行分类。规则放电(RS)细胞出现在所有层,具有相对较长持续时间的动作电位和较强的频率适应性。内在爆发性(IB)细胞仅出现在IV层和V层,产生大于或等于3个动作电位的爆发;下层V的一些IB细胞在长去极化脉冲期间产生重复爆发。快速放电(FS)细胞具有短暂的动作电位,几乎没有或没有适应性,并且高频放电。3. 当用低剂量的荷包牡丹碱甲碘化物(BMI,0.8-1.0 microM)轻微降低GABAA介导的抑制作用时,通过单次电击刺激VI层可诱发同步事件。同步事件的特征是突出的、通常是全或无的细胞外场电位,其水平传播可达数毫米的可变距离。大的场电位总是与单个神经元中的兴奋性和抑制性突触后电位(EPSP和IPSP)相关。PSP和场电位通常都具有长(长达250毫秒)且可变的潜伏期,有时单个刺激会产生两个或更多事件。在所有情况下,PSP和场电位都是同步的。场电位和单个细胞有时会在20-50Hz产生短暂(3-7个峰值)的节律性事件。4. 单个神经元的生理类别与每个同步事件期间兴奋和抑制的相对优势相关。与每个同步事件同步,大多数RS细胞受到非常强烈的抑制,同时只有少量的兴奋。相比之下,IB细胞受到强烈且持续的兴奋,抑制相对较少。FS细胞也有相位性兴奋。5. 解剖学研究已将RS和IB细胞鉴定为锥体细胞,FS细胞鉴定为GABA能非锥体细胞。这意味着,在本研究的同步事件期间,大多数锥体细胞由IPSP主导。FS细胞(推测为抑制性中间神经元)的同步兴奋与此一致。只有一部分锥体细胞,几乎全部是中层的IB细胞,表现出强烈的同步兴奋和动作电位簇。(摘要截断于400字)

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