Journal article 1293 views 166 downloads
Interstitial Glucose and Physical Exercise in Type 1 Diabetes: Integrative Physiology, Technology, and the Gap In-Between
Nutrients, Volume: 10, Issue: 1, Start page: 93
Swansea University Author: Richard Bracken
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DOI (Published version): 10.3390/nu10010093
Abstract
Continuous and flash glucose monitoring systems measure interstitial fluid glucose concentrations within a body compartment that is dramatically altered by posture and is responsive to the physiological and metabolic changes that enable exercise performance in individuals with type 1 diabetes. Body...
Published in: | Nutrients |
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ISSN: | 2072-6643 |
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2018
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URI: | https://cronfa.swan.ac.uk/Record/cronfa38098 |
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2018-03-06T12:45:01.8411211 v2 38098 2018-01-15 Interstitial Glucose and Physical Exercise in Type 1 Diabetes: Integrative Physiology, Technology, and the Gap In-Between f5da81cd18adfdedb2ccb845bddc12f7 0000-0002-6986-6449 Richard Bracken Richard Bracken true false 2018-01-15 STSC Continuous and flash glucose monitoring systems measure interstitial fluid glucose concentrations within a body compartment that is dramatically altered by posture and is responsive to the physiological and metabolic changes that enable exercise performance in individuals with type 1 diabetes. Body fluid redistribution within the interstitial compartment, alterations in interstitial fluid volume, changes in rate and direction of fluid flow between the vasculature, interstitium and lymphatics, as well as alterations in the rate of glucose production and uptake by exercising tissues, make for caution when interpreting device read-outs in a rapidly changing internal environment during acute exercise. We present an understanding of the physiological and metabolic changes taking place with acute exercise and detail the blood and interstitial glucose responses with different forms of exercise, namely sustained endurance, high-intensity, and strength exercises in individuals with type 1 diabetes. Further, we detail novel technical information on currently available patient devices. As more health services and insurance companies advocate their use, understanding continuous and flash glucose monitoring for its strengths and limitations may offer more confidence for patients aiming to manage glycemia around exercise. Journal Article Nutrients 10 1 93 2072-6643 continuous glucose monitoring; flash glucose monitoring; exercise; interstitium 15 1 2018 2018-01-15 10.3390/nu10010093 COLLEGE NANME Sport and Exercise Sciences COLLEGE CODE STSC Swansea University 2018-03-06T12:45:01.8411211 2018-01-15T09:11:05.9878430 Faculty of Science and Engineering School of Aerospace, Civil, Electrical, General and Mechanical Engineering - Sport and Exercise Sciences Othmar Moser 1 Jane E. Yardley 2 Richard Bracken 0000-0002-6986-6449 3 0038098-15012018091354.pdf moser2018.pdf 2018-01-15T09:13:54.8430000 Output 475347 application/pdf Version of Record true 2018-01-15T00:00:00.0000000 true eng |
title |
Interstitial Glucose and Physical Exercise in Type 1 Diabetes: Integrative Physiology, Technology, and the Gap In-Between |
spellingShingle |
Interstitial Glucose and Physical Exercise in Type 1 Diabetes: Integrative Physiology, Technology, and the Gap In-Between Richard Bracken |
title_short |
Interstitial Glucose and Physical Exercise in Type 1 Diabetes: Integrative Physiology, Technology, and the Gap In-Between |
title_full |
Interstitial Glucose and Physical Exercise in Type 1 Diabetes: Integrative Physiology, Technology, and the Gap In-Between |
title_fullStr |
Interstitial Glucose and Physical Exercise in Type 1 Diabetes: Integrative Physiology, Technology, and the Gap In-Between |
title_full_unstemmed |
Interstitial Glucose and Physical Exercise in Type 1 Diabetes: Integrative Physiology, Technology, and the Gap In-Between |
title_sort |
Interstitial Glucose and Physical Exercise in Type 1 Diabetes: Integrative Physiology, Technology, and the Gap In-Between |
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f5da81cd18adfdedb2ccb845bddc12f7 |
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f5da81cd18adfdedb2ccb845bddc12f7_***_Richard Bracken |
author |
Richard Bracken |
author2 |
Othmar Moser Jane E. Yardley Richard Bracken |
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Nutrients |
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description |
Continuous and flash glucose monitoring systems measure interstitial fluid glucose concentrations within a body compartment that is dramatically altered by posture and is responsive to the physiological and metabolic changes that enable exercise performance in individuals with type 1 diabetes. Body fluid redistribution within the interstitial compartment, alterations in interstitial fluid volume, changes in rate and direction of fluid flow between the vasculature, interstitium and lymphatics, as well as alterations in the rate of glucose production and uptake by exercising tissues, make for caution when interpreting device read-outs in a rapidly changing internal environment during acute exercise. We present an understanding of the physiological and metabolic changes taking place with acute exercise and detail the blood and interstitial glucose responses with different forms of exercise, namely sustained endurance, high-intensity, and strength exercises in individuals with type 1 diabetes. Further, we detail novel technical information on currently available patient devices. As more health services and insurance companies advocate their use, understanding continuous and flash glucose monitoring for its strengths and limitations may offer more confidence for patients aiming to manage glycemia around exercise. |
published_date |
2018-01-15T03:48:08Z |
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11.037581 |