Ca2+-dependent K+-channels and endothelium dependent hyperpolarization in rat isolated cerebral arteries; Possible regulation by NO?

Bibliographic Details
Main Authors: McNeish, A, Dora, K, Garland, C
Format: Conference item
Published: 2005
_version_ 1797055393836302336
author McNeish, A
Dora, K
Garland, C
author_facet McNeish, A
Dora, K
Garland, C
author_sort McNeish, A
collection OXFORD
description
first_indexed 2024-03-06T19:10:05Z
format Conference item
id oxford-uuid:16768443-d9d2-4345-b811-67912d09ceb2
institution University of Oxford
last_indexed 2024-03-06T19:10:05Z
publishDate 2005
record_format dspace
spelling oxford-uuid:16768443-d9d2-4345-b811-67912d09ceb22022-03-26T10:31:32ZCa2+-dependent K+-channels and endothelium dependent hyperpolarization in rat isolated cerebral arteries; Possible regulation by NO?Conference itemhttp://purl.org/coar/resource_type/c_5794uuid:16768443-d9d2-4345-b811-67912d09ceb2Symplectic Elements at Oxford2005McNeish, ADora, KGarland, C
spellingShingle McNeish, A
Dora, K
Garland, C
Ca2+-dependent K+-channels and endothelium dependent hyperpolarization in rat isolated cerebral arteries; Possible regulation by NO?
title Ca2+-dependent K+-channels and endothelium dependent hyperpolarization in rat isolated cerebral arteries; Possible regulation by NO?
title_full Ca2+-dependent K+-channels and endothelium dependent hyperpolarization in rat isolated cerebral arteries; Possible regulation by NO?
title_fullStr Ca2+-dependent K+-channels and endothelium dependent hyperpolarization in rat isolated cerebral arteries; Possible regulation by NO?
title_full_unstemmed Ca2+-dependent K+-channels and endothelium dependent hyperpolarization in rat isolated cerebral arteries; Possible regulation by NO?
title_short Ca2+-dependent K+-channels and endothelium dependent hyperpolarization in rat isolated cerebral arteries; Possible regulation by NO?
title_sort ca2 dependent k channels and endothelium dependent hyperpolarization in rat isolated cerebral arteries possible regulation by no
work_keys_str_mv AT mcneisha ca2dependentkchannelsandendotheliumdependenthyperpolarizationinratisolatedcerebralarteriespossibleregulationbyno
AT dorak ca2dependentkchannelsandendotheliumdependenthyperpolarizationinratisolatedcerebralarteriespossibleregulationbyno
AT garlandc ca2dependentkchannelsandendotheliumdependenthyperpolarizationinratisolatedcerebralarteriespossibleregulationbyno