Dendritic mechanisms underlying the coupling of the dendritic with the axonal action potential initiation zone of adult rat layer 5 pyramidal neurons

被引:287
作者
Larkum, ME [1 ]
Zhu, JJ [1 ]
Sakmann, B [1 ]
机构
[1] Max Planck Inst Med Res, Zellphysiol Abt, D-69120 Heidelberg, Germany
来源
JOURNAL OF PHYSIOLOGY-LONDON | 2001年 / 533卷 / 02期
关键词
D O I
10.1111/j.1469-7793.2001.0447a.x
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
1. Double, triple and quadruple whole-cell voltage recordings were made simultaneously from different parts of the apical dendritic arbor and the soma of adult layer 5 (L5) pyramidal neurons. We investigated the membrane mechanisms that support the conduction of dendritic action potentials (APs) between the dendritic and axonal AP initiation zones and their influence on the subsequent AP pattern. 2. The duration of the current injection to the distal dendritic initiation zone controlled the degree of coupling with the axonal initiation zone and the AP pattern. 3. Two components of the distally evoked regenerative potential were pharmacologically distinguished: a rapidly rising peak potential that was TTS sensitive and a slowly rising plateau-like potential that was Cd2+ and Ni2+ sensitive and present only with longer-duration current injection. 4. The amplitude of the faster forward-propagating Na+-dependent component and the amplitude of the back-propagating AP fell into two classes (more distinctly in the forward-propagating case). Current injection into the dendrite altered propagation in both directions. 5. Somatic current injections that elicited single Na+ APs evoked bursts of Na+ APs when current was injected simultaneously into the proximal apical dendrite. The mechanism did not depend on dendritic Na+-Ca2+ APs. 6. A three-compartment model of a L5 pyramidal neuron is proposed. It comprises the distal dendritic and axonal AP initiation zones and the proximal apical dendrite. Each compartment contributes to the initiation and to the pattern of AP discharge in a distinct manner. Input to the three main dendritic arbors (tuft dendrites, apical oblique dendrites and basal dendrites) has a dominant influence on only one of these compartments. Thus, the AP pattern of L5 pyramids reflects the laminar distribution of synaptic activity in a cortical column.
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收藏
页码:447 / 466
页数:20
相关论文
共 52 条
[1]   Properties of voltage-gated potassium currents in nucleated patches from large layer 5 cortical pyramidal neurons of the rat [J].
Bekkers, JM .
JOURNAL OF PHYSIOLOGY-LONDON, 2000, 525 (03) :593-609
[2]   Pattern and inhibition-dependent invasion of pyramidal cell dendrites by fast spikes in the hippocampus in vivo [J].
Buzsaki, G ;
Penttonen, M ;
Nadasdy, Z ;
Bragin, A .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1996, 93 (18) :9921-9925
[3]   Somadendritic backpropagation of action potentials in cortical pyramidal cells of the awake rat [J].
Buzsáki, G ;
Kandel, A .
JOURNAL OF NEUROPHYSIOLOGY, 1998, 79 (03) :1587-1591
[4]   Layer I of primary sensory neocortex: Where top-down converges upon bottom-up [J].
Cauller, L .
BEHAVIOURAL BRAIN RESEARCH, 1995, 71 (1-2) :163-170
[5]   EFFECTS OF NEUROPEPTIDE-Y ON THE ELECTRICAL-PROPERTIES OF NEURONS [J].
COLMERS, WF ;
BLEAKMAN, D .
TRENDS IN NEUROSCIENCES, 1994, 17 (09) :373-379
[6]   ANATOMICAL AND FUNCTIONAL IMAGING OF NEURONS USING 2-PHOTON LASER-SCANNING MICROSCOPY [J].
DENK, W ;
DELANEY, KR ;
GELPERIN, A ;
KLEINFELD, D ;
STROWBRIDGE, BW ;
TANK, DW ;
YUSTE, R .
JOURNAL OF NEUROSCIENCE METHODS, 1994, 54 (02) :151-162
[7]   Dendritic sodium spikes are variable triggers of axonal action potentials in hippocampal CA1 pyramidal neurons [J].
Golding, NL ;
Spruston, N .
NEURON, 1998, 21 (05) :1189-1200
[8]  
HAUSSER M, 1998, SOC NEUR ABSTR, V24, P1813
[9]   In vivo dendritic calcium dynamics in deep-layer cortical pyramidal neurons [J].
Helmchen, F ;
Svoboda, K ;
Denk, W ;
Tank, DW .
NATURE NEUROSCIENCE, 1999, 2 (11) :989-996
[10]   K+ channel regulation of signal propagation in dendrites of hippocampal pyramidal neurons [J].
Hoffman, DA ;
Magee, JC ;
Colbert, CM ;
Johnston, D .
NATURE, 1997, 387 (6636) :869-875