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本文引用的文献

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NMDA receptors amplify calcium influx into dendritic spines during associative pre- and postsynaptic activation.N-甲基-D-天冬氨酸(NMDA)受体在突触前和突触后联合激活期间会放大钙离子流入树突棘的过程。
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Calcium dynamics in thorny excrescences of CA3 pyramidal neurons.CA3锥体神经元棘状突起中的钙动力学
J Neurophysiol. 1997 Jul;78(1):10-8. doi: 10.1152/jn.1997.78.1.10.
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Physiology and anatomy of synaptic connections between thick tufted pyramidal neurones in the developing rat neocortex.发育中大鼠新皮质厚簇状锥体神经元之间突触连接的生理学与解剖学
J Physiol. 1997 Apr 15;500 ( Pt 2)(Pt 2):409-40. doi: 10.1113/jphysiol.1997.sp022031.
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Comparison of two-photon excitation laser scanning microscopy with UV-confocal laser scanning microscopy in three-dimensional calcium imaging using the fluorescence indicator Indo-1.使用荧光指示剂Indo-1在三维钙成像中比较双光子激发激光扫描显微镜与紫外共聚焦激光扫描显微镜。
J Microsc. 1997 Jan;185(Pt 1):9-20. doi: 10.1046/j.1365-2818.1997.1480707.x.
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Regulation of synaptic efficacy by coincidence of postsynaptic APs and EPSPs.通过突触后动作电位(APs)和兴奋性突触后电位(EPSPs)的同步来调节突触效能。
Science. 1997 Jan 10;275(5297):213-5. doi: 10.1126/science.275.5297.213.
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A synaptically controlled, associative signal for Hebbian plasticity in hippocampal neurons.海马神经元中一种用于赫布可塑性的突触控制的联合信号。
Science. 1997 Jan 10;275(5297):209-13. doi: 10.1126/science.275.5297.209.
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Calcium-induced inactivation of NMDA receptor-channels evolves independently of run-down in cultured rat brain neurones.钙诱导的NMDA受体通道失活在培养的大鼠脑神经元中独立于电流衰减而演变。
J Physiol. 1996 Sep 1;495 ( Pt 2)(Pt 2):411-27. doi: 10.1113/jphysiol.1996.sp021603.
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Imaging calcium dynamics in dendritic spines.对树突棘中的钙动力学进行成像。
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Ca2+ buffering and action potential-evoked Ca2+ signaling in dendrites of pyramidal neurons.锥体神经元树突中的钙离子缓冲及动作电位诱发的钙离子信号传导
Biophys J. 1996 Feb;70(2):1069-81. doi: 10.1016/S0006-3495(96)79653-4.
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Redistribution of synaptic efficacy between neocortical pyramidal neurons.新皮层锥体神经元之间突触效能的重新分配。
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在突触前和突触后活动同时发生时,单个棘突中的钙动力学取决于反向传播动作电位和阈下兴奋性突触后电位的相对时间。

Calcium dynamics in single spines during coincident pre- and postsynaptic activity depend on relative timing of back-propagating action potentials and subthreshold excitatory postsynaptic potentials.

作者信息

Koester H J, Sakmann B

机构信息

Abteilung Zellphysiologie, Max-Planck-Institut für medizinische Forschung, Jahnstrasse 29, D-69120 Heidelberg, Germany.

出版信息

Proc Natl Acad Sci U S A. 1998 Aug 4;95(16):9596-601. doi: 10.1073/pnas.95.16.9596.

DOI:10.1073/pnas.95.16.9596
PMID:9689126
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC21384/
Abstract

We compared the transient increase of Ca2+ in single spines on basal dendrites of rat neocortical layer 5 pyramidal neurons evoked by subthreshold excitatory postsynaptic potentials (EPSPs) and back-propagating action potentials (APs) by using calcium fluorescence imaging. AP-evoked Ca2+ transients were detected in both the spines and in the adjacent dendritic shaft, whereas Ca2+ transients evoked by single EPSPs were largely restricted to a single active spine head. Calcium transients elicited in the active spines by a single AP or EPSP, in spines up to 80 micro(m) for the soma, were of comparable amplitude. The Ca2+ transient in an active spine evoked by pairing an EPSP and a back-propagating AP separated by a time interval of 50 ms was larger if the AP followed the EPSP than if it preceded it. This difference reflected supra- and sublinear summation of Ca2+ transients, respectively. A comparable dependence of spinous Ca2+ transients on relative timing was observed also when short bursts of APs and EPSPs were paired. These results indicate that the amplitude of the spinous Ca2+ transients during coincident pre- and postsynaptic activity depended critically on the relative order of subthreshold EPSPs and back-propagating APs. Thus, in neocortical neurons the amplitude of spinous Ca2+ transients could encode small time differences between pre- and postsynaptic activity.

摘要

我们通过钙荧光成像技术,比较了阈下兴奋性突触后电位(EPSP)和反向传播动作电位(AP)诱发的大鼠新皮层第5层锥体神经元基底树突上单根棘突内Ca2+的瞬时增加。在棘突和相邻的树突干中均检测到AP诱发的Ca2+瞬变,而单个EPSP诱发的Ca2+瞬变主要局限于单个活跃的棘突头部。对于距离胞体80微米以内的棘突,单个AP或EPSP在活跃棘突中引发的钙瞬变幅度相当。如果AP跟随EPSP,那么由间隔50毫秒的EPSP和反向传播AP配对诱发的活跃棘突中的Ca2+瞬变,要比AP先于EPSP时更大。这种差异分别反映了Ca2+瞬变的超线性和亚线性总和。当AP和EPSP的短串脉冲配对时,也观察到了棘突Ca2+瞬变对相对时间的类似依赖性。这些结果表明,突触前和突触后活动同时发生时,棘突Ca2+瞬变的幅度关键取决于阈下EPSP和反向传播AP的相对顺序。因此,在新皮层神经元中,棘突Ca2+瞬变的幅度可以编码突触前和突触后活动之间的微小时间差异。