2023 International Olympic Committee’s (IOC) consensus statement on Relative Energy Deficiency in Sport (REDs)

Консенсусное заявление Всемирного антидопингового агентства 2023 года (IOC) по относительной энергетической недостаточности в спорте (REDs)
Evert Verhagen, Lars Engebretsen, Richard Budgett, Uğur Erdener, Margo Mountjoy, Kathryn E. Ackerman, Louise M. Burke, David M. Bailey, Anne Marte Pensgaard, Jorunn Sundgot‐Borgen, Ida A. Heikura, Naama Constantini, Anthony C. Hackney, Anna Melin, Trent Stellingwerff, Monica Klungland Torstveit, Astrid Uhrenholdt Jacobsen
2023-09-01

Physiological Model of LEAREDs Clinical Assessment Tool-Version 2Relative Energy Deficiency in Sport (REDs)body composition assessment guidelineslow energy availability (LEA)
Relative Energy Deficiency in Sport (REDs) was first introduced in 2014 by the International Olympic Committee's expert writing panel, identifying a syndrome of deleterious health and performance outcomes experienced by female and male athletes exposed to low energy availability (LEA; inadequate energy intake in relation to exercise energy expenditure). Since the 2018 REDs consensus, there have been >170 original research publications advancing the field of REDs science, including emerging data demonstrating the growing role of low carbohydrate availability, further evidence of the interplay between mental health and REDs and more data elucidating the impact of LEA in males. Our knowledge of REDs signs and symptoms has resulted in updated Health and Performance Conceptual Models and the development of a novel Physiological Model. This Physiological Model is designed to demonstrate the complexity of either problematic or adaptable LEA exposure, coupled with individual moderating factors, leading to changes in health and performance outcomes. Guidelines for safe and effective body composition assessment to help prevent REDs are also outlined. A new REDs Clinical Assessment Tool-Version 2 is introduced to facilitate the detection and clinical diagnosis of REDs based on accumulated severity and risk stratification, with associated training and competition recommendations. Prevention and treatment principles of REDs are presented to encourage best practices for sports organisations and clinicians. Finally, methodological best practices for REDs research are outlined to stimulate future high-quality research to address important knowledge gaps.
1
A REDs Clinical Assessment Tool-Version 2 is introduced for detection and clinical diagnosis using accumulated severity and risk stratification, with training and competition recommendations
2
Emerging evidence highlights a growing role of low carbohydrate availability as a contributor to REDs
3
Guidelines for safe and effective body composition assessment are provided to help prevent REDs
4
Methodological best practices for REDs research are outlined to stimulate future high-quality studies and address knowledge gaps
5
New data further elucidate the impact of LEA in male athletes, expanding REDs beyond female populations
6
Prevention and treatment principles for REDs are presented to guide sports organisations and clinicians
7
REDs concept expanded since 2018 with >170 original research publications advancing understanding of Low Energy Availability (LEA)
8
Updated Health and Performance Conceptual Models and a novel Physiological Model describe how problematic or adaptable LEA and individual moderators lead to health and performance changes

Relative Energy Deficiency in Sport (REDs) syndrome in athletes exposed to low energy availability

Health and performance consequences, physiological mechanisms, assessment, prevention, clinical diagnosis, and methodological research best practices related to REDs and low energy availability

Publication Details
Publication Date
2023-09-01
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Authors
Evert Verhagen
Lars Engebretsen
Richard Budgett
Uğur Erdener
Margo Mountjoy
Kathryn E. Ackerman
Louise M. Burke
David M. Bailey
Anne Marte Pensgaard
Jorunn Sundgot‐Borgen
Ida A. Heikura
Naama Constantini
Anthony C. Hackney
Anna Melin
Trent Stellingwerff
Monica Klungland Torstveit
Astrid Uhrenholdt Jacobsen
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