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Arrhythmogenic Mutation-Linked Defects in Ryanodine Receptor Autoregulation Reveal a Novel Mechanism of Ca2+ Release Channel Dysfunction

C.H. George, H. Jundi, N. Walters, N.L. Thomas, R.R. West, F.A. Lai, Christopher George Orcid Logo, Nia Thomas Orcid Logo

Circulation Research, Volume: 98, Issue: 1, Pages: 88 - 97

Swansea University Authors: Christopher George Orcid Logo, Nia Thomas Orcid Logo

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Published in: Circulation Research
ISSN: 0009-7330 1524-4571
Published: 2006
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URI: https://cronfa.swan.ac.uk/Record/cronfa35328
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first_indexed 2017-09-18T18:59:52Z
last_indexed 2018-02-09T05:26:22Z
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spelling 2017-09-18T13:59:41.3463674 v2 35328 2017-09-18 Arrhythmogenic Mutation-Linked Defects in Ryanodine Receptor Autoregulation Reveal a Novel Mechanism of Ca2+ Release Channel Dysfunction a2e211f7bd379c81e9c393637803a0a0 0000-0001-9852-1135 Christopher George Christopher George true false d3ec62eb68414c6d3772f2501c69f623 0000-0001-8822-8576 Nia Thomas Nia Thomas true false 2017-09-18 BMS Journal Article Circulation Research 98 1 88 97 0009-7330 1524-4571 31 12 2006 2006-12-31 10.1161/01.RES.0000199296.70534.7c http://www.scopus.com/inward/record.url?eid=2-s2.0-33644837101&amp;partnerID=MN8TOARS COLLEGE NANME Biomedical Sciences COLLEGE CODE BMS Swansea University 2017-09-18T13:59:41.3463674 2017-09-18T13:59:41.1279514 Faculty of Medicine, Health and Life Sciences Swansea University Medical School - Medicine C.H. George 1 H. Jundi 2 N. Walters 3 N.L. Thomas 4 R.R. West 5 F.A. Lai 6 Christopher George 0000-0001-9852-1135 7 Nia Thomas 0000-0001-8822-8576 8
title Arrhythmogenic Mutation-Linked Defects in Ryanodine Receptor Autoregulation Reveal a Novel Mechanism of Ca2+ Release Channel Dysfunction
spellingShingle Arrhythmogenic Mutation-Linked Defects in Ryanodine Receptor Autoregulation Reveal a Novel Mechanism of Ca2+ Release Channel Dysfunction
Christopher George
Nia Thomas
title_short Arrhythmogenic Mutation-Linked Defects in Ryanodine Receptor Autoregulation Reveal a Novel Mechanism of Ca2+ Release Channel Dysfunction
title_full Arrhythmogenic Mutation-Linked Defects in Ryanodine Receptor Autoregulation Reveal a Novel Mechanism of Ca2+ Release Channel Dysfunction
title_fullStr Arrhythmogenic Mutation-Linked Defects in Ryanodine Receptor Autoregulation Reveal a Novel Mechanism of Ca2+ Release Channel Dysfunction
title_full_unstemmed Arrhythmogenic Mutation-Linked Defects in Ryanodine Receptor Autoregulation Reveal a Novel Mechanism of Ca2+ Release Channel Dysfunction
title_sort Arrhythmogenic Mutation-Linked Defects in Ryanodine Receptor Autoregulation Reveal a Novel Mechanism of Ca2+ Release Channel Dysfunction
author_id_str_mv a2e211f7bd379c81e9c393637803a0a0
d3ec62eb68414c6d3772f2501c69f623
author_id_fullname_str_mv a2e211f7bd379c81e9c393637803a0a0_***_Christopher George
d3ec62eb68414c6d3772f2501c69f623_***_Nia Thomas
author Christopher George
Nia Thomas
author2 C.H. George
H. Jundi
N. Walters
N.L. Thomas
R.R. West
F.A. Lai
Christopher George
Nia Thomas
format Journal article
container_title Circulation Research
container_volume 98
container_issue 1
container_start_page 88
publishDate 2006
institution Swansea University
issn 0009-7330
1524-4571
doi_str_mv 10.1161/01.RES.0000199296.70534.7c
college_str Faculty of Medicine, Health and Life Sciences
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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
url http://www.scopus.com/inward/record.url?eid=2-s2.0-33644837101&amp;partnerID=MN8TOARS
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published_date 2006-12-31T03:43:55Z
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