Real Time, in vivo Observation of Oxidative Carbohydrate Metabolism Reveals the Key Regulatory Role of Acetyl-Carnitine as a Substrate Buffer in the Heart

Bibliographic Details
Main Authors: Schroeder, M, Atherton, H, Dodd, M, Clarke, K, Radda, G, Tyler, D
Format: Conference item
Published: 2009
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author Schroeder, M
Atherton, H
Dodd, M
Clarke, K
Radda, G
Tyler, D
author_facet Schroeder, M
Atherton, H
Dodd, M
Clarke, K
Radda, G
Tyler, D
author_sort Schroeder, M
collection OXFORD
description
first_indexed 2024-03-07T03:27:12Z
format Conference item
id oxford-uuid:b97659df-26ec-4cd0-9ad3-39910d06dd65
institution University of Oxford
last_indexed 2024-03-07T03:27:12Z
publishDate 2009
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spelling oxford-uuid:b97659df-26ec-4cd0-9ad3-39910d06dd652022-03-27T05:02:59ZReal Time, in vivo Observation of Oxidative Carbohydrate Metabolism Reveals the Key Regulatory Role of Acetyl-Carnitine as a Substrate Buffer in the HeartConference itemhttp://purl.org/coar/resource_type/c_5794uuid:b97659df-26ec-4cd0-9ad3-39910d06dd65Symplectic Elements at Oxford2009Schroeder, MAtherton, HDodd, MClarke, KRadda, GTyler, D
spellingShingle Schroeder, M
Atherton, H
Dodd, M
Clarke, K
Radda, G
Tyler, D
Real Time, in vivo Observation of Oxidative Carbohydrate Metabolism Reveals the Key Regulatory Role of Acetyl-Carnitine as a Substrate Buffer in the Heart
title Real Time, in vivo Observation of Oxidative Carbohydrate Metabolism Reveals the Key Regulatory Role of Acetyl-Carnitine as a Substrate Buffer in the Heart
title_full Real Time, in vivo Observation of Oxidative Carbohydrate Metabolism Reveals the Key Regulatory Role of Acetyl-Carnitine as a Substrate Buffer in the Heart
title_fullStr Real Time, in vivo Observation of Oxidative Carbohydrate Metabolism Reveals the Key Regulatory Role of Acetyl-Carnitine as a Substrate Buffer in the Heart
title_full_unstemmed Real Time, in vivo Observation of Oxidative Carbohydrate Metabolism Reveals the Key Regulatory Role of Acetyl-Carnitine as a Substrate Buffer in the Heart
title_short Real Time, in vivo Observation of Oxidative Carbohydrate Metabolism Reveals the Key Regulatory Role of Acetyl-Carnitine as a Substrate Buffer in the Heart
title_sort real time in vivo observation of oxidative carbohydrate metabolism reveals the key regulatory role of acetyl carnitine as a substrate buffer in the heart
work_keys_str_mv AT schroederm realtimeinvivoobservationofoxidativecarbohydratemetabolismrevealsthekeyregulatoryroleofacetylcarnitineasasubstratebufferintheheart
AT athertonh realtimeinvivoobservationofoxidativecarbohydratemetabolismrevealsthekeyregulatoryroleofacetylcarnitineasasubstratebufferintheheart
AT doddm realtimeinvivoobservationofoxidativecarbohydratemetabolismrevealsthekeyregulatoryroleofacetylcarnitineasasubstratebufferintheheart
AT clarkek realtimeinvivoobservationofoxidativecarbohydratemetabolismrevealsthekeyregulatoryroleofacetylcarnitineasasubstratebufferintheheart
AT raddag realtimeinvivoobservationofoxidativecarbohydratemetabolismrevealsthekeyregulatoryroleofacetylcarnitineasasubstratebufferintheheart
AT tylerd realtimeinvivoobservationofoxidativecarbohydratemetabolismrevealsthekeyregulatoryroleofacetylcarnitineasasubstratebufferintheheart