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Glucose management for exercise using continuous glucose monitoring (CGM) and intermittently scanned CGM (isCGM) systems in type 1 diabetes: position statement of the European Association for the Study of Diabetes (EASD) and of the International Society for Pediatric and Adolescent Diabetes (ISPAD) endorsed by JDRF and supported by the American Diabetes Association (ADA)

Physical exercise is an important component in the management of type 1 diabetes across the lifespan. Yet, acute exercise increases the risk of dysglycaemia, and the direction of glycaemic excursions depends, to some extent, on the intensity and duration of the type of exercise. Understandably, fear...

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Autores principales: Moser, Othmar, Riddell, Michael C., Eckstein, Max L., Adolfsson, Peter, Rabasa‐Lhoret, Rémi, van den Boom, Louisa, Gillard, Pieter, Nørgaard, Kirsten, Oliver, Nick S., Zaharieva, Dessi P., Battelino, Tadej, de Beaufort, Carine, Bergenstal, Richard M., Buckingham, Bruce, Cengiz, Eda, Deeb, Asma, Heise, Tim, Heller, Simon, Kowalski, Aaron J., Leelarathna, Lalantha, Mathieu, Chantal, Stettler, Christoph, Tauschmann, Martin, Thabit, Hood, Wilmot, Emma G., Sourij, Harald, Smart, Carmel E., Jacobs, Peter G., Bracken, Richard M., Mader, Julia K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley & Sons A/S 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7702152/
https://www.ncbi.nlm.nih.gov/pubmed/33047481
http://dx.doi.org/10.1111/pedi.13105
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author Moser, Othmar
Riddell, Michael C.
Eckstein, Max L.
Adolfsson, Peter
Rabasa‐Lhoret, Rémi
van den Boom, Louisa
Gillard, Pieter
Nørgaard, Kirsten
Oliver, Nick S.
Zaharieva, Dessi P.
Battelino, Tadej
de Beaufort, Carine
Bergenstal, Richard M.
Buckingham, Bruce
Cengiz, Eda
Deeb, Asma
Heise, Tim
Heller, Simon
Kowalski, Aaron J.
Leelarathna, Lalantha
Mathieu, Chantal
Stettler, Christoph
Tauschmann, Martin
Thabit, Hood
Wilmot, Emma G.
Sourij, Harald
Smart, Carmel E.
Jacobs, Peter G.
Bracken, Richard M.
Mader, Julia K.
author_facet Moser, Othmar
Riddell, Michael C.
Eckstein, Max L.
Adolfsson, Peter
Rabasa‐Lhoret, Rémi
van den Boom, Louisa
Gillard, Pieter
Nørgaard, Kirsten
Oliver, Nick S.
Zaharieva, Dessi P.
Battelino, Tadej
de Beaufort, Carine
Bergenstal, Richard M.
Buckingham, Bruce
Cengiz, Eda
Deeb, Asma
Heise, Tim
Heller, Simon
Kowalski, Aaron J.
Leelarathna, Lalantha
Mathieu, Chantal
Stettler, Christoph
Tauschmann, Martin
Thabit, Hood
Wilmot, Emma G.
Sourij, Harald
Smart, Carmel E.
Jacobs, Peter G.
Bracken, Richard M.
Mader, Julia K.
author_sort Moser, Othmar
collection PubMed
description Physical exercise is an important component in the management of type 1 diabetes across the lifespan. Yet, acute exercise increases the risk of dysglycaemia, and the direction of glycaemic excursions depends, to some extent, on the intensity and duration of the type of exercise. Understandably, fear of hypoglycaemia is one of the strongest barriers to incorporating exercise into daily life. Risk of hypoglycaemia during and after exercise can be lowered when insulin‐dose adjustments are made and/or additional carbohydrates are consumed. Glycaemic management during exercise has been made easier with continuous glucose monitoring (CGM) and intermittently scanned continuous glucose monitoring (isCGM) systems; however, because of the complexity of CGM and isCGM systems, both individuals with type 1 diabetes and their healthcare professionals may struggle with the interpretation of given information to maximise the technological potential for effective use around exercise (ie, before, during and after). This position statement highlights the recent advancements in CGM and isCGM technology, with a focus on the evidence base for their efficacy to sense glucose around exercise and adaptations in the use of these emerging tools, and updates the guidance for exercise in adults, children and adolescents with type 1 diabetes.
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spelling pubmed-77021522020-12-14 Glucose management for exercise using continuous glucose monitoring (CGM) and intermittently scanned CGM (isCGM) systems in type 1 diabetes: position statement of the European Association for the Study of Diabetes (EASD) and of the International Society for Pediatric and Adolescent Diabetes (ISPAD) endorsed by JDRF and supported by the American Diabetes Association (ADA) Moser, Othmar Riddell, Michael C. Eckstein, Max L. Adolfsson, Peter Rabasa‐Lhoret, Rémi van den Boom, Louisa Gillard, Pieter Nørgaard, Kirsten Oliver, Nick S. Zaharieva, Dessi P. Battelino, Tadej de Beaufort, Carine Bergenstal, Richard M. Buckingham, Bruce Cengiz, Eda Deeb, Asma Heise, Tim Heller, Simon Kowalski, Aaron J. Leelarathna, Lalantha Mathieu, Chantal Stettler, Christoph Tauschmann, Martin Thabit, Hood Wilmot, Emma G. Sourij, Harald Smart, Carmel E. Jacobs, Peter G. Bracken, Richard M. Mader, Julia K. Pediatr Diabetes Ispad Guidelines Physical exercise is an important component in the management of type 1 diabetes across the lifespan. Yet, acute exercise increases the risk of dysglycaemia, and the direction of glycaemic excursions depends, to some extent, on the intensity and duration of the type of exercise. Understandably, fear of hypoglycaemia is one of the strongest barriers to incorporating exercise into daily life. Risk of hypoglycaemia during and after exercise can be lowered when insulin‐dose adjustments are made and/or additional carbohydrates are consumed. Glycaemic management during exercise has been made easier with continuous glucose monitoring (CGM) and intermittently scanned continuous glucose monitoring (isCGM) systems; however, because of the complexity of CGM and isCGM systems, both individuals with type 1 diabetes and their healthcare professionals may struggle with the interpretation of given information to maximise the technological potential for effective use around exercise (ie, before, during and after). This position statement highlights the recent advancements in CGM and isCGM technology, with a focus on the evidence base for their efficacy to sense glucose around exercise and adaptations in the use of these emerging tools, and updates the guidance for exercise in adults, children and adolescents with type 1 diabetes. John Wiley & Sons A/S 2020-10-13 2020-12 /pmc/articles/PMC7702152/ /pubmed/33047481 http://dx.doi.org/10.1111/pedi.13105 Text en © 2020 The Authors. Pediatric Diabetes published by John Wiley & Sons Ltd. This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
spellingShingle Ispad Guidelines
Moser, Othmar
Riddell, Michael C.
Eckstein, Max L.
Adolfsson, Peter
Rabasa‐Lhoret, Rémi
van den Boom, Louisa
Gillard, Pieter
Nørgaard, Kirsten
Oliver, Nick S.
Zaharieva, Dessi P.
Battelino, Tadej
de Beaufort, Carine
Bergenstal, Richard M.
Buckingham, Bruce
Cengiz, Eda
Deeb, Asma
Heise, Tim
Heller, Simon
Kowalski, Aaron J.
Leelarathna, Lalantha
Mathieu, Chantal
Stettler, Christoph
Tauschmann, Martin
Thabit, Hood
Wilmot, Emma G.
Sourij, Harald
Smart, Carmel E.
Jacobs, Peter G.
Bracken, Richard M.
Mader, Julia K.
Glucose management for exercise using continuous glucose monitoring (CGM) and intermittently scanned CGM (isCGM) systems in type 1 diabetes: position statement of the European Association for the Study of Diabetes (EASD) and of the International Society for Pediatric and Adolescent Diabetes (ISPAD) endorsed by JDRF and supported by the American Diabetes Association (ADA)
title Glucose management for exercise using continuous glucose monitoring (CGM) and intermittently scanned CGM (isCGM) systems in type 1 diabetes: position statement of the European Association for the Study of Diabetes (EASD) and of the International Society for Pediatric and Adolescent Diabetes (ISPAD) endorsed by JDRF and supported by the American Diabetes Association (ADA)
title_full Glucose management for exercise using continuous glucose monitoring (CGM) and intermittently scanned CGM (isCGM) systems in type 1 diabetes: position statement of the European Association for the Study of Diabetes (EASD) and of the International Society for Pediatric and Adolescent Diabetes (ISPAD) endorsed by JDRF and supported by the American Diabetes Association (ADA)
title_fullStr Glucose management for exercise using continuous glucose monitoring (CGM) and intermittently scanned CGM (isCGM) systems in type 1 diabetes: position statement of the European Association for the Study of Diabetes (EASD) and of the International Society for Pediatric and Adolescent Diabetes (ISPAD) endorsed by JDRF and supported by the American Diabetes Association (ADA)
title_full_unstemmed Glucose management for exercise using continuous glucose monitoring (CGM) and intermittently scanned CGM (isCGM) systems in type 1 diabetes: position statement of the European Association for the Study of Diabetes (EASD) and of the International Society for Pediatric and Adolescent Diabetes (ISPAD) endorsed by JDRF and supported by the American Diabetes Association (ADA)
title_short Glucose management for exercise using continuous glucose monitoring (CGM) and intermittently scanned CGM (isCGM) systems in type 1 diabetes: position statement of the European Association for the Study of Diabetes (EASD) and of the International Society for Pediatric and Adolescent Diabetes (ISPAD) endorsed by JDRF and supported by the American Diabetes Association (ADA)
title_sort glucose management for exercise using continuous glucose monitoring (cgm) and intermittently scanned cgm (iscgm) systems in type 1 diabetes: position statement of the european association for the study of diabetes (easd) and of the international society for pediatric and adolescent diabetes (ispad) endorsed by jdrf and supported by the american diabetes association (ada)
topic Ispad Guidelines
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7702152/
https://www.ncbi.nlm.nih.gov/pubmed/33047481
http://dx.doi.org/10.1111/pedi.13105
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