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豚鼠海马体CA1锥体神经元的树突和胞体中产生的不同放电模式。

Different firing patterns generated in dendrites and somata of CA1 pyramidal neurones in guinea-pig hippocampus.

作者信息

Wong R K, Stewart M

机构信息

Department of Pharmacology, State University of New York Health Science Center, Brooklyn.

出版信息

J Physiol. 1992 Nov;457:675-87. doi: 10.1113/jphysiol.1992.sp019401.

DOI:10.1113/jphysiol.1992.sp019401
PMID:1297848
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1175754/
Abstract
  1. Intracellular recordings, taken from CA1 pyramidal cells in guinea-pig hippocampal slices, were used to examine the origins of repetitive and burst firing in these cells. Single action potentials were elicited by depolarizing current injection at somatic recording sites. In contrast, current injection during intradendritic recordings initiated burst firing in the dendrites. Burst firing could be elicited in the soma by direct depolarization of distal apical dendrites (> 150 microns from the cell body layer) with large extracellular polarizing electrodes. 2. Intracellular recordings were taken simultaneously from the apical dendrites and pyramidal cell somata with the intention of impaling the same neurone with both electrodes. Paired dendrite-soma recordings confirmed that rhythmic single action potentials were generated at the cell soma, whereas bursts of action potentials were initiated in the distal apical dendrites (> 150 microns from the cell body layer). Fast spikes in the dendrite often triggered fast spikes in the soma, but not all fast spikes in the dendritic burst were 'relayed' to the soma. 3. In paired recordings, when a dendritic action potential failed to elicit a full somatic action potential, a 'd-spike' was commonly recorded in the soma. Somatic d-spikes were uniform all-or-none responses that could be shown, in some cases, to trigger the full somatic action potentials. 4. Attenuated spikes could be recorded in the dendrites, triggered by action potentials initiated at the cell soma. Dendritic responses to somatic stimulation sometimes varied in amplitude, but always showed a direct correspondence with somatic action potentials. 5. Dendritic recordings taken closer to the pyramidal cell bodies (< 150 microns from the cell body layer) showed a 'transitional' region where single action potentials rather than burst discharges could be evoked. After-potentials of these single spikes differed from those associated with somatic spikes in that proximal dendritic spikes had depolarizing after-potentials. The observed shift from after-hyperpolarization to depolarizing after-potentials in intradendritic recordings taken progressively further from the cell body corresponds to the change from repetitive to burst firing. 6. The results indicate that activity of the CA1 pyramidal cell soma, presumably a reflection of its output, can be either burst or repetitive firing. Somatic 'bursts,' unlike the burst discharges seen in the apical dendrites or the burst discharges reported in CA3 cells, are not initiated locally. Rather, they appear to be simply a rapid spike-for-spike response by the soma to the fast spikes that form part of the apical dendritic burst.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 采用细胞内记录法,从豚鼠海马切片的CA1锥体细胞中获取数据,以研究这些细胞中重复放电和爆发式放电的起源。在体细胞记录部位通过注入去极化电流诱发单个动作电位。相比之下,在树突内记录过程中注入电流会引发树突中的爆发式放电。使用大型细胞外极化电极直接使距细胞体层超过150微米的顶端远端树突去极化,可在体细胞中诱发爆发式放电。2. 同时从顶端树突和锥体细胞体进行细胞内记录,目的是用两个电极刺入同一个神经元。树突 - 体细胞配对记录证实,有节律的单个动作电位在细胞体产生,而动作电位的爆发则在距细胞体层超过150微米的顶端远端树突起始。树突中的快速尖峰常常触发细胞体中的快速尖峰,但并非树突爆发中的所有快速尖峰都“传递”到细胞体。3. 在配对记录中,当树突动作电位未能诱发完整的体细胞动作电位时,通常会在细胞体中记录到一个“d波峰”。体细胞d波峰是全或无的一致反应,在某些情况下,可被证明能触发完整的体细胞动作电位。4. 由细胞体起始的动作电位可触发树突中记录到的衰减尖峰。树突对体细胞刺激的反应有时在幅度上有所不同,但始终与体细胞动作电位直接对应。5. 在距锥体细胞体较近(距细胞体层小于150微米)处进行的树突记录显示出一个“过渡”区域,在此区域可诱发单个动作电位而非爆发式放电。这些单个尖峰的后电位与体细胞尖峰相关的后电位不同,因为近端树突尖峰具有去极化后电位。在逐渐远离细胞体的树突内记录中观察到的从超极化后电位到去极化后电位的转变,与从重复放电到爆发式放电的变化相对应。6. 结果表明,CA1锥体细胞体的活动,大概反映了其输出,既可以是爆发式放电,也可以是重复放电。体细胞“爆发”与在顶端树突中看到的爆发式放电或CA3细胞中报道的爆发式放电不同,不是在局部起始的。相反,它们似乎只是细胞体对构成顶端树突爆发一部分的快速尖峰的快速逐峰反应。(摘要截选至400字)

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