The Experts below are selected from a list of 228 Experts worldwide ranked by ideXlab platform
Thomas Reilly - One of the best experts on this subject based on the ideXlab platform.
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rectal temperature distal sweat rate and Forearm Blood Flow following mild exercise at two phases of the circadian cycle
Chronobiology International, 2007Co-Authors: Jim Waterhouse, Seika Aizawa, Alan M Nevill, Benjamin Edwards, Dietmar Weinert, Greg Atkinson, Thomas ReillyAbstract:Changes in rectal temperature during mild exercise in the middle of the rising (11:00 h) and falling (23:00 h) phases of the circadian rhythm of resting core temperature have been compared. Seven healthy males were studied at rest, while exercising on a cycle ergometer (60 min at 80 W), and during the first 30 min of recovery. Rectal temperature, Forearm Blood Flow, and Forearm sweat rate were measured at 1 min intervals throughout. During exercise, there were significant time‐of‐day differences in the profiles of all three variables, and in the thresholds for increases in Forearm Blood Flow and sweating. Forearm Blood Flow and sweat rate were recruited more rapidly and to a greater extent with evening exercise, and rectal temperature rose less. Analysis of covariance, with rectal temperature as the covariate, indicated the associations between it and Forearm Blood Flow or sweating were significantly different (p<0.05) between the two times of day. There were also significant (p<0.05) time‐of‐day effects ...
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Rectal temperature, distal sweat rate, and Forearm Blood Flow following mild exercise at two phases of the circadian cycle
Chronobiology international, 2007Co-Authors: Jim Waterhouse, Seika Aizawa, Alan M Nevill, Benjamin Edwards, Dietmar Weinert, Greg Atkinson, Thomas ReillyAbstract:Changes in rectal temperature during mild exercise in the middle of the rising (11:00 h) and falling (23:00 h) phases of the circadian rhythm of resting core temperature have been compared. Seven healthy males were studied at rest, while exercising on a cycle ergometer (60 min at 80 W), and during the first 30 min of recovery. Rectal temperature, Forearm Blood Flow, and Forearm sweat rate were measured at 1 min intervals throughout. During exercise, there were significant time‐of‐day differences in the profiles of all three variables, and in the thresholds for increases in Forearm Blood Flow and sweating. Forearm Blood Flow and sweat rate were recruited more rapidly and to a greater extent with evening exercise, and rectal temperature rose less. Analysis of covariance, with rectal temperature as the covariate, indicated the associations between it and Forearm Blood Flow or sweating were significantly different (p
Jim Waterhouse - One of the best experts on this subject based on the ideXlab platform.
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rectal temperature distal sweat rate and Forearm Blood Flow following mild exercise at two phases of the circadian cycle
Chronobiology International, 2007Co-Authors: Jim Waterhouse, Seika Aizawa, Alan M Nevill, Benjamin Edwards, Dietmar Weinert, Greg Atkinson, Thomas ReillyAbstract:Changes in rectal temperature during mild exercise in the middle of the rising (11:00 h) and falling (23:00 h) phases of the circadian rhythm of resting core temperature have been compared. Seven healthy males were studied at rest, while exercising on a cycle ergometer (60 min at 80 W), and during the first 30 min of recovery. Rectal temperature, Forearm Blood Flow, and Forearm sweat rate were measured at 1 min intervals throughout. During exercise, there were significant time‐of‐day differences in the profiles of all three variables, and in the thresholds for increases in Forearm Blood Flow and sweating. Forearm Blood Flow and sweat rate were recruited more rapidly and to a greater extent with evening exercise, and rectal temperature rose less. Analysis of covariance, with rectal temperature as the covariate, indicated the associations between it and Forearm Blood Flow or sweating were significantly different (p<0.05) between the two times of day. There were also significant (p<0.05) time‐of‐day effects ...
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Rectal temperature, distal sweat rate, and Forearm Blood Flow following mild exercise at two phases of the circadian cycle
Chronobiology international, 2007Co-Authors: Jim Waterhouse, Seika Aizawa, Alan M Nevill, Benjamin Edwards, Dietmar Weinert, Greg Atkinson, Thomas ReillyAbstract:Changes in rectal temperature during mild exercise in the middle of the rising (11:00 h) and falling (23:00 h) phases of the circadian rhythm of resting core temperature have been compared. Seven healthy males were studied at rest, while exercising on a cycle ergometer (60 min at 80 W), and during the first 30 min of recovery. Rectal temperature, Forearm Blood Flow, and Forearm sweat rate were measured at 1 min intervals throughout. During exercise, there were significant time‐of‐day differences in the profiles of all three variables, and in the thresholds for increases in Forearm Blood Flow and sweating. Forearm Blood Flow and sweat rate were recruited more rapidly and to a greater extent with evening exercise, and rectal temperature rose less. Analysis of covariance, with rectal temperature as the covariate, indicated the associations between it and Forearm Blood Flow or sweating were significantly different (p
Greg Atkinson - One of the best experts on this subject based on the ideXlab platform.
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rectal temperature distal sweat rate and Forearm Blood Flow following mild exercise at two phases of the circadian cycle
Chronobiology International, 2007Co-Authors: Jim Waterhouse, Seika Aizawa, Alan M Nevill, Benjamin Edwards, Dietmar Weinert, Greg Atkinson, Thomas ReillyAbstract:Changes in rectal temperature during mild exercise in the middle of the rising (11:00 h) and falling (23:00 h) phases of the circadian rhythm of resting core temperature have been compared. Seven healthy males were studied at rest, while exercising on a cycle ergometer (60 min at 80 W), and during the first 30 min of recovery. Rectal temperature, Forearm Blood Flow, and Forearm sweat rate were measured at 1 min intervals throughout. During exercise, there were significant time‐of‐day differences in the profiles of all three variables, and in the thresholds for increases in Forearm Blood Flow and sweating. Forearm Blood Flow and sweat rate were recruited more rapidly and to a greater extent with evening exercise, and rectal temperature rose less. Analysis of covariance, with rectal temperature as the covariate, indicated the associations between it and Forearm Blood Flow or sweating were significantly different (p<0.05) between the two times of day. There were also significant (p<0.05) time‐of‐day effects ...
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Rectal temperature, distal sweat rate, and Forearm Blood Flow following mild exercise at two phases of the circadian cycle
Chronobiology international, 2007Co-Authors: Jim Waterhouse, Seika Aizawa, Alan M Nevill, Benjamin Edwards, Dietmar Weinert, Greg Atkinson, Thomas ReillyAbstract:Changes in rectal temperature during mild exercise in the middle of the rising (11:00 h) and falling (23:00 h) phases of the circadian rhythm of resting core temperature have been compared. Seven healthy males were studied at rest, while exercising on a cycle ergometer (60 min at 80 W), and during the first 30 min of recovery. Rectal temperature, Forearm Blood Flow, and Forearm sweat rate were measured at 1 min intervals throughout. During exercise, there were significant time‐of‐day differences in the profiles of all three variables, and in the thresholds for increases in Forearm Blood Flow and sweating. Forearm Blood Flow and sweat rate were recruited more rapidly and to a greater extent with evening exercise, and rectal temperature rose less. Analysis of covariance, with rectal temperature as the covariate, indicated the associations between it and Forearm Blood Flow or sweating were significantly different (p
Seika Aizawa - One of the best experts on this subject based on the ideXlab platform.
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rectal temperature distal sweat rate and Forearm Blood Flow following mild exercise at two phases of the circadian cycle
Chronobiology International, 2007Co-Authors: Jim Waterhouse, Seika Aizawa, Alan M Nevill, Benjamin Edwards, Dietmar Weinert, Greg Atkinson, Thomas ReillyAbstract:Changes in rectal temperature during mild exercise in the middle of the rising (11:00 h) and falling (23:00 h) phases of the circadian rhythm of resting core temperature have been compared. Seven healthy males were studied at rest, while exercising on a cycle ergometer (60 min at 80 W), and during the first 30 min of recovery. Rectal temperature, Forearm Blood Flow, and Forearm sweat rate were measured at 1 min intervals throughout. During exercise, there were significant time‐of‐day differences in the profiles of all three variables, and in the thresholds for increases in Forearm Blood Flow and sweating. Forearm Blood Flow and sweat rate were recruited more rapidly and to a greater extent with evening exercise, and rectal temperature rose less. Analysis of covariance, with rectal temperature as the covariate, indicated the associations between it and Forearm Blood Flow or sweating were significantly different (p<0.05) between the two times of day. There were also significant (p<0.05) time‐of‐day effects ...
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Rectal temperature, distal sweat rate, and Forearm Blood Flow following mild exercise at two phases of the circadian cycle
Chronobiology international, 2007Co-Authors: Jim Waterhouse, Seika Aizawa, Alan M Nevill, Benjamin Edwards, Dietmar Weinert, Greg Atkinson, Thomas ReillyAbstract:Changes in rectal temperature during mild exercise in the middle of the rising (11:00 h) and falling (23:00 h) phases of the circadian rhythm of resting core temperature have been compared. Seven healthy males were studied at rest, while exercising on a cycle ergometer (60 min at 80 W), and during the first 30 min of recovery. Rectal temperature, Forearm Blood Flow, and Forearm sweat rate were measured at 1 min intervals throughout. During exercise, there were significant time‐of‐day differences in the profiles of all three variables, and in the thresholds for increases in Forearm Blood Flow and sweating. Forearm Blood Flow and sweat rate were recruited more rapidly and to a greater extent with evening exercise, and rectal temperature rose less. Analysis of covariance, with rectal temperature as the covariate, indicated the associations between it and Forearm Blood Flow or sweating were significantly different (p
Alan M Nevill - One of the best experts on this subject based on the ideXlab platform.
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rectal temperature distal sweat rate and Forearm Blood Flow following mild exercise at two phases of the circadian cycle
Chronobiology International, 2007Co-Authors: Jim Waterhouse, Seika Aizawa, Alan M Nevill, Benjamin Edwards, Dietmar Weinert, Greg Atkinson, Thomas ReillyAbstract:Changes in rectal temperature during mild exercise in the middle of the rising (11:00 h) and falling (23:00 h) phases of the circadian rhythm of resting core temperature have been compared. Seven healthy males were studied at rest, while exercising on a cycle ergometer (60 min at 80 W), and during the first 30 min of recovery. Rectal temperature, Forearm Blood Flow, and Forearm sweat rate were measured at 1 min intervals throughout. During exercise, there were significant time‐of‐day differences in the profiles of all three variables, and in the thresholds for increases in Forearm Blood Flow and sweating. Forearm Blood Flow and sweat rate were recruited more rapidly and to a greater extent with evening exercise, and rectal temperature rose less. Analysis of covariance, with rectal temperature as the covariate, indicated the associations between it and Forearm Blood Flow or sweating were significantly different (p<0.05) between the two times of day. There were also significant (p<0.05) time‐of‐day effects ...
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Rectal temperature, distal sweat rate, and Forearm Blood Flow following mild exercise at two phases of the circadian cycle
Chronobiology international, 2007Co-Authors: Jim Waterhouse, Seika Aizawa, Alan M Nevill, Benjamin Edwards, Dietmar Weinert, Greg Atkinson, Thomas ReillyAbstract:Changes in rectal temperature during mild exercise in the middle of the rising (11:00 h) and falling (23:00 h) phases of the circadian rhythm of resting core temperature have been compared. Seven healthy males were studied at rest, while exercising on a cycle ergometer (60 min at 80 W), and during the first 30 min of recovery. Rectal temperature, Forearm Blood Flow, and Forearm sweat rate were measured at 1 min intervals throughout. During exercise, there were significant time‐of‐day differences in the profiles of all three variables, and in the thresholds for increases in Forearm Blood Flow and sweating. Forearm Blood Flow and sweat rate were recruited more rapidly and to a greater extent with evening exercise, and rectal temperature rose less. Analysis of covariance, with rectal temperature as the covariate, indicated the associations between it and Forearm Blood Flow or sweating were significantly different (p