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Dihydropyridine Receptors and Type 1 Ryanodine Receptors Constitute the Molecular Machinery for Voltage-Induced Ca2+ Release in Nerve Terminals

V. De Crescenzo, K. E. Fogarty, R. ZhuGe, R. A. Tuft, L. M. Lifshitz, J. Carmichael, K. D. Bellve, S. P. Baker, S. Zissimopoulos, F. A. Lai, J. R. Lemos, J. V. Walsh, Spyridon Zisimopoulos Orcid Logo

Journal of Neuroscience, Volume: 26, Issue: 29, Pages: 7565 - 7574

Swansea University Author: Spyridon Zisimopoulos Orcid Logo

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Published in: Journal of Neuroscience
ISSN: 1529-2401
Published: 2006
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URI: https://cronfa.swan.ac.uk/Record/cronfa36647
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first_indexed 2017-11-07T19:56:45Z
last_indexed 2018-02-09T05:29:11Z
id cronfa36647
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spelling 2017-11-07T13:42:45.4671720 v2 36647 2017-11-07 Dihydropyridine Receptors and Type 1 Ryanodine Receptors Constitute the Molecular Machinery for Voltage-Induced Ca2+ Release in Nerve Terminals ca878036edb37b3dafff6de7e9faa5e4 0000-0001-5196-9450 Spyridon Zisimopoulos Spyridon Zisimopoulos true false 2017-11-07 BMS Journal Article Journal of Neuroscience 26 29 7565 7574 1529-2401 31 12 2006 2006-12-31 10.1523/JNEUROSCI.1512-06.2006 COLLEGE NANME Biomedical Sciences COLLEGE CODE BMS Swansea University 2017-11-07T13:42:45.4671720 2017-11-07T13:42:45.4827673 Faculty of Medicine, Health and Life Sciences Swansea University Medical School - Medicine V. De Crescenzo 1 K. E. Fogarty 2 R. ZhuGe 3 R. A. Tuft 4 L. M. Lifshitz 5 J. Carmichael 6 K. D. Bellve 7 S. P. Baker 8 S. Zissimopoulos 9 F. A. Lai 10 J. R. Lemos 11 J. V. Walsh 12 Spyridon Zisimopoulos 0000-0001-5196-9450 13
title Dihydropyridine Receptors and Type 1 Ryanodine Receptors Constitute the Molecular Machinery for Voltage-Induced Ca2+ Release in Nerve Terminals
spellingShingle Dihydropyridine Receptors and Type 1 Ryanodine Receptors Constitute the Molecular Machinery for Voltage-Induced Ca2+ Release in Nerve Terminals
Spyridon Zisimopoulos
title_short Dihydropyridine Receptors and Type 1 Ryanodine Receptors Constitute the Molecular Machinery for Voltage-Induced Ca2+ Release in Nerve Terminals
title_full Dihydropyridine Receptors and Type 1 Ryanodine Receptors Constitute the Molecular Machinery for Voltage-Induced Ca2+ Release in Nerve Terminals
title_fullStr Dihydropyridine Receptors and Type 1 Ryanodine Receptors Constitute the Molecular Machinery for Voltage-Induced Ca2+ Release in Nerve Terminals
title_full_unstemmed Dihydropyridine Receptors and Type 1 Ryanodine Receptors Constitute the Molecular Machinery for Voltage-Induced Ca2+ Release in Nerve Terminals
title_sort Dihydropyridine Receptors and Type 1 Ryanodine Receptors Constitute the Molecular Machinery for Voltage-Induced Ca2+ Release in Nerve Terminals
author_id_str_mv ca878036edb37b3dafff6de7e9faa5e4
author_id_fullname_str_mv ca878036edb37b3dafff6de7e9faa5e4_***_Spyridon Zisimopoulos
author Spyridon Zisimopoulos
author2 V. De Crescenzo
K. E. Fogarty
R. ZhuGe
R. A. Tuft
L. M. Lifshitz
J. Carmichael
K. D. Bellve
S. P. Baker
S. Zissimopoulos
F. A. Lai
J. R. Lemos
J. V. Walsh
Spyridon Zisimopoulos
format Journal article
container_title Journal of Neuroscience
container_volume 26
container_issue 29
container_start_page 7565
publishDate 2006
institution Swansea University
issn 1529-2401
doi_str_mv 10.1523/JNEUROSCI.1512-06.2006
college_str Faculty of Medicine, Health and Life Sciences
hierarchytype
hierarchy_top_id facultyofmedicinehealthandlifesciences
hierarchy_top_title Faculty of Medicine, Health and Life Sciences
hierarchy_parent_id facultyofmedicinehealthandlifesciences
hierarchy_parent_title Faculty of Medicine, Health and Life Sciences
department_str Swansea University Medical School - Medicine{{{_:::_}}}Faculty of Medicine, Health and Life Sciences{{{_:::_}}}Swansea University Medical School - Medicine
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published_date 2006-12-31T03:45:57Z
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