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单个锥体细胞在猫视觉皮层无棘中间神经元上形成的突触的效应、数量及位置。

Effect, number and location of synapses made by single pyramidal cells onto aspiny interneurones of cat visual cortex.

作者信息

Buhl E H, Tamás G, Szilágyi T, Stricker C, Paulsen O, Somogyi P

机构信息

Department of Pharmacology, University of Oxford, UK.

出版信息

J Physiol. 1997 May 1;500 ( Pt 3)(Pt 3):689-713. doi: 10.1113/jphysiol.1997.sp022053.

DOI:10.1113/jphysiol.1997.sp022053
PMID:9161986
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1159419/
Abstract
  1. Dual intracellular recordings were made from synaptically coupled pyramidal cell-to-interneurone pairs (n = 5) of the cat visual cortex in vitro. Pre- and postsynaptic neurones were labelled with biocytin, followed by correlated light and electron microscopic analysis to determine all sites of synaptic interaction. 2. Pyramidal neurones in layers II-III elicited monosynaptic EPSPs in three distinct classes of smooth dendritic local-circuit neurones, namely basket cells (n = 3), a dendrite-targeting cell (n = 1) and a double bouquet cell (n = 1). Unitary EPSPs in basket cells were mediated by one, two, and two synaptic junctions, whereas the pyramid-to-dendrite-targeting cell and pyramid-to-double bouquet cell interaction were mediated by five and seven synaptic junctions, respectively. Recurrent synaptic junctions were found on all somato-dendritic compartments, with a tendency to be clustered close to the soma on the double bouquet and dendrite-targeting cells. The latter interneurones were reciprocally connected with pyramidal cells. 3. Unitary EPSPs had an average peak amplitude of 1005 +/- 518 microV, fast rise times (10-90%; 0.67 +/- 0.25 ms) and were of short duration (at half-amplitude, 4.7 +/- 1.0 ms). Their decay was monoexponential (tau = 7.8 +/- 4.3 ms) at hyperpolarized membrane potentials and appeared to be shaped by passive membrane properties (tau = 9.2 +/- 8.5 ms). All parameters of concomitantly recorded spontaneous EPSPs were remarkably similar (mean amplitude, 981 +/- 433 microV; mean rise time, 0.68 +/- 0.18 ms; mean duration, 4.7 +/- 1.7 ms). 4. In all three pyramidal-to-basket cell pairs, closely timed (10-50 ms) pairs of presynaptic action potentials resulted in statistically significant paired-pulse depression, the mean of the averaged second EPSPs being 80 +/- 11% of the averaged conditioning event. The overall degree of paired-pulse modulation was relatively little affected by either the amplitude of the preceding event or the inter-event interval. 5. The probability density function of the peak amplitudes of the unitary EPSPs could be adequately fitted with a quantal model. Without quantal variance, however, the minimum number of components in the model, excluding the failures, exceeded the number of electron microscopically determined synaptic junctions for all five connections. In contrast, incorporating quantal variance gave a minimum number of components which was compatible with the number of synaptic junctions, and which fitted the data equally well as models incorporating additional components but no quantal variance. For this model with quantal variance with the minimum number of components the estimate of the quantal coefficient of variation ranged between 0.33 and 0.46, and the corresponding quantal sizes ranged between 260 and 657 microV. The peak EPSP amplitudes in two of the four connections with more than one synaptic junction could be adequately described by a uniform binomial model for transmitter release. 6. In conclusion, at least three distinct interneurone classes receive local excitatory pyramidal cell input which they relay to different compartments on their postsynaptic target neurones. The reliability of transmission is high, but the fast time course of the EPSPs constrains their temporal summation. Due to the relatively small amplitude of unitary EPSPs several convergent inputs will therefore be required to elicit suprathreshold responses.
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/481c/1159419/c52bbe73587c/jphysiol00281-0155-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/481c/1159419/6eb183f7ed27/jphysiol00281-0147-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/481c/1159419/eeb4237fb2f5/jphysiol00281-0149-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/481c/1159419/02ab39b55084/jphysiol00281-0151-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/481c/1159419/226eb4fba3de/jphysiol00281-0153-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/481c/1159419/2e682e55fc0b/jphysiol00281-0154-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/481c/1159419/c52bbe73587c/jphysiol00281-0155-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/481c/1159419/6eb183f7ed27/jphysiol00281-0147-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/481c/1159419/eeb4237fb2f5/jphysiol00281-0149-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/481c/1159419/02ab39b55084/jphysiol00281-0151-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/481c/1159419/226eb4fba3de/jphysiol00281-0153-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/481c/1159419/2e682e55fc0b/jphysiol00281-0154-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/481c/1159419/c52bbe73587c/jphysiol00281-0155-a.jpg
摘要
  1. 在体外对猫视觉皮层中通过突触连接的锥体细胞与中间神经元对(n = 5)进行了双细胞内记录。用生物素标记突触前和突触后神经元,随后进行相关的光镜和电镜分析,以确定所有突触相互作用位点。2. 位于第II - III层的锥体细胞在三类不同的平滑树突状局部回路神经元中引发单突触兴奋性突触后电位(EPSP),即篮状细胞(n = 3)、一个树突靶向细胞(n = 1)和一个双花束细胞(n = 1)。篮状细胞中的单突触EPSP由一个、两个和两个突触连接介导,而锥体细胞与树突靶向细胞以及锥体细胞与双花束细胞之间的相互作用分别由五个和七个突触连接介导。在所有体 - 树突区室均发现了回返性突触连接,在双花束细胞和树突靶向细胞上有聚集在胞体附近的趋势。后两种中间神经元与锥体细胞相互连接。3. 单突触EPSP的平均峰值幅度为1005±518微伏,上升时间快(10 - 90%;0.67±0.25毫秒),持续时间短(半幅度时为4.7±1.0毫秒)。在超极化膜电位下其衰减呈单指数形式(时间常数τ = 7.8±4.3毫秒),且似乎由被动膜特性决定(时间常数τ = 9.2±8.5毫秒)。同时记录的自发EPSP的所有参数非常相似(平均幅度,981±433微伏;平均上升时间,0.68±0.18毫秒;平均持续时间,4.7±1.7毫秒)。4. 在所有三对锥体细胞与篮状细胞中,紧密间隔(10 - 50毫秒)的突触前动作电位对导致了具有统计学意义的双脉冲抑制,平均第二个EPSP为平均条件刺激事件的80±11%。双脉冲调制的总体程度受前一事件的幅度或事件间隔的影响相对较小。5. 单突触EPSP峰值幅度的概率密度函数可以用一个量子模型充分拟合。然而,在没有量子方差的情况下,该模型中除失败情况外的最小成分数超过了所有五个连接的电镜确定的突触连接数。相比之下,纳入量子方差得到的最小成分数与突触连接数相符,并且与包含更多成分但没有量子方差的模型一样能很好地拟合数据。对于这个具有最小成分数的含量子方差的模型,量子变异系数的估计值在0.33至0.46之间,相应的量子大小在260至657微伏之间。在四个具有多个突触连接的连接中的两个中,峰值EPSP幅度可以用一个均匀二项式递质释放模型充分描述。6. 总之,至少三类不同的中间神经元接受局部兴奋性锥体细胞输入,并将其传递到突触后靶神经元的不同区室。传递的可靠性很高,但EPSP的快速时间进程限制了它们的时间总和。由于单突触EPSP的幅度相对较小,因此需要几个汇聚输入才能引发阈上反应。

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