Literature DB >> 8544123

Spatial profile of dendritic calcium transients evoked by action potentials in rat neocortical pyramidal neurones.

J Schiller1, F Helmchen, B Sakmann.   

Abstract

1. Simultaneous measurements of intracellular free calcium concentration ([Ca2+]i) and intrasomatic and intradendritic membrane potential (Vm) were performed using fura-2 fluorimetry and whole-cell recording in neocortical layer V pyramidal neurones in rat brain slices. 2. Back-propagating action potentials (APs) evoked [Ca2+]i transients in the entire neurone including the soma, the axon initial segment, the apical dendrite up to the distal tuft branches, and the oblique and basal dendrites, indicating that following suprathreshold activation the entire dendritic tree is depolarized sufficiently to open voltage-dependent calcium channels (VDCCs). 3. The [Ca2+]i transient peak evoked by APs showed large differences between various compartments of the neurone. Following a single AP, up to 6-fold differences were measured, ranging from 43 +/- 14 nM in the soma to 267 +/- 109 nM in the basal dendrites. 4. Along the main apical dendrite, the [Ca2+]i transients evoked by single APs or trains of APs had the largest amplitude and the fastest decay in the proximal region; the [Ca2+]i transient peak and decay time constant following a single AP were 128 +/- 25 nM and 420 +/- 150 ms, respectively, and following a train of five APs (at 10-12 Hz), 710 +/- 214 nM and 390 +/- 150 ms, respectively. The [Ca2+]i transients gradually decreased in amplitude and broadened in more distal portions of the apical dendrite up to the main bifurcation. 5. In the apical tuft branches, the profile of the [Ca2+]i transients was dependent on AP frequency.(ABSTRACT TRUNCATED AT 250 WORDS)

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Year:  1995        PMID: 8544123      PMCID: PMC1156647          DOI: 10.1113/jphysiol.1995.sp020902

Source DB:  PubMed          Journal:  J Physiol        ISSN: 0022-3751            Impact factor:   5.182


  39 in total

1.  Spatially resolved calcium dynamics of mammalian Purkinje cells in cerebellar slice.

Authors:  D W Tank; M Sugimori; J A Connor; R R Llinás
Journal:  Science       Date:  1988-11-04       Impact factor: 47.728

2.  Postsynaptic calcium is sufficient for potentiation of hippocampal synaptic transmission.

Authors:  R C Malenka; J A Kauer; R S Zucker; R A Nicoll
Journal:  Science       Date:  1988-10-07       Impact factor: 47.728

3.  Properties of two calcium-activated hyperpolarizations in rat hippocampal neurones.

Authors:  B Lancaster; R A Nicoll
Journal:  J Physiol       Date:  1987-08       Impact factor: 5.182

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Authors:  M L Mayer; A B MacDermott; G L Westbrook; S J Smith; J L Barker
Journal:  J Neurosci       Date:  1987-10       Impact factor: 6.167

5.  Spontaneous and GABA-evoked chloride channels on pituitary intermediate lobe cells and their internal Ca requirements.

Authors:  O Taleb; J Trouslard; B A Demeneix; P Feltz; J L Bossu; J L Dupont; A Feltz
Journal:  Pflugers Arch       Date:  1987-08       Impact factor: 3.657

6.  Distinguishing theoretical synaptic potentials computed for different soma-dendritic distributions of synaptic input.

Authors:  W Rall
Journal:  J Neurophysiol       Date:  1967-09       Impact factor: 2.714

7.  Mapping calcium transients in the dendrites of Purkinje cells from the guinea-pig cerebellum in vitro.

Authors:  W N Ross; R Werman
Journal:  J Physiol       Date:  1987-08       Impact factor: 5.182

8.  Dendritic calcium transients evoked by single back-propagating action potentials in rat neocortical pyramidal neurons.

Authors:  H Markram; P J Helm; B Sakmann
Journal:  J Physiol       Date:  1995-05-15       Impact factor: 5.182

9.  Intracellular calcium ions decrease the affinity of the GABA receptor.

Authors:  M Inoue; Y Oomura; T Yakushiji; N Akaike
Journal:  Nature       Date:  1986 Nov 13-19       Impact factor: 49.962

10.  Optical imaging of calcium accumulation in hippocampal pyramidal cells during synaptic activation.

Authors:  W G Regehr; J A Connor; D W Tank
Journal:  Nature       Date:  1989-10-12       Impact factor: 49.962

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  89 in total

1.  Dendritic Ca(2+)-activated K(+) conductances regulate electrical signal propagation in an invertebrate neuron.

Authors:  R Wessel; W B Kristan; D Kleinfeld
Journal:  J Neurosci       Date:  1999-10-01       Impact factor: 6.167

2.  Role of calcium electrogenesis in apical dendrites: generation of intrinsic oscillations by an axial current.

Authors:  A Elaagouby; R Yuste
Journal:  J Comput Neurosci       Date:  1999 Jul-Aug       Impact factor: 1.621

3.  Distinct temporal profiles of activity-dependent calcium increase in pyramidal neurons of the rat visual cortex.

Authors:  N Kato; T Tanaka; K Yamamoto; Y Isomura
Journal:  J Physiol       Date:  1999-09-01       Impact factor: 5.182

4.  Estimating intracellular calcium concentrations and buffering without wavelength ratioing.

Authors:  M Maravall; Z F Mainen; B L Sabatini; K Svoboda
Journal:  Biophys J       Date:  2000-05       Impact factor: 4.033

5.  Novel action of BAPTA series chelators on intrinsic K+ currents in rat hippocampal neurones.

Authors:  B Lancaster; A M Batchelor
Journal:  J Physiol       Date:  2000-01-15       Impact factor: 5.182

6.  Photolytic manipulation of [Ca2+]i reveals slow kinetics of potassium channels underlying the afterhyperpolarization in hippocampal pyramidal neurons.

Authors:  P Sah; J D Clements
Journal:  J Neurosci       Date:  1999-05-15       Impact factor: 6.167

7.  Elevated postsynaptic [Ca2+]i and L-type calcium channel activity in aged hippocampal neurons: relationship to impaired synaptic plasticity.

Authors:  O Thibault; R Hadley; P W Landfield
Journal:  J Neurosci       Date:  2001-12-15       Impact factor: 6.167

8.  Dendritic calcium encodes striatal neuron output during up-states.

Authors:  Jason N D Kerr; Dietmar Plenz
Journal:  J Neurosci       Date:  2002-03-01       Impact factor: 6.167

9.  Nuclear calcium signaling evoked by cholinergic stimulation in hippocampal CA1 pyramidal neurons.

Authors:  John M Power; Pankaj Sah
Journal:  J Neurosci       Date:  2002-05-01       Impact factor: 6.167

10.  Apical tuft input efficacy in layer 5 pyramidal cells from rat visual cortex.

Authors:  P A Rhodes; R R Llinás
Journal:  J Physiol       Date:  2001-10-01       Impact factor: 5.182

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