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Metabolic and Nutritional Responses to Acute High-intensity Interval Exercise Performed Under Hypoxic vs. Normoxic Conditions at Matched External Workload in Adults With Overweight and Obesity. (HYPOXHIIT)

Comparison of HIIT Exercise Under Hypoxic and Normoxic Conditions in Adults With Overweight or Obesity: Impact on Oxygen Consumption, Carbohydrate and Lipid Substrate Utilization, and Appetite During Recovery.

Obesity management involves lifestyle and dietary measures that include appropriate nutrition and increased physical activity (PA). Among the various PA options available, HIIT (High-Intensity Interval Training) workouts are now recognized as fun and effective programs for promoting fat loss. To date, in overweight or obese individuals, only two studies mention the benefits of HIIT performed under hypoxia for modulating body composition, and more specifically, reducing the amount of adipose tissue. These studies hypothesize an increased energy expenditure under hypoxia associated with a transient loss of appetite. In order, to further investigate the adaptations following HIIT under hypoxia versus normoxia, we propose to compare, in acute conditions, two HIIT sessions (simulated hypoxia-normobaric vs. normoxia) in overweight or obese subjects. The objective of this assessment is to compare, during exercise and recovery (+2h), oxygen consumption, corresponding energy expenditure, and carbohydrate and lipid utilization in hypoxic versus normoxic conditions. Given the potential influence of hypoxia on appetite, spontaneous food intake and energy expenditure post-24h will also be measured. Finally, since pleasure and perceived exertion are key parameters in adherence to an adapted physical activity (APA) program, these two concepts will also be evaluated through the subjects' experiences.

調査の概要

詳細な説明

Obesity management involves lifestyle and dietary measures that include appropriate nutrition and increased physical activity (PA). Among the various PA options available, High-intensity interval training (HIIT) is now recognized as a well-tolerated, safe, and effective exercise modality for improving body composition. In 2016, our pioneering study demonstrated that HIIT is more effective than moderate-intensity continuous training (MICT) in inducing abdominal fat loss in postmenopausal women. A subsequent meta-analysis, conducted by our team in 2018 and encompassing 39 articles involving 617 participants, confirmed the significant effects of HIIT on reducing total and abdominal fat mass in overweight or obese individuals More recently, our work has shown significant results from HIIT + resistance training or HIIT cycling vs. running on improving body composition, and more specifically on reducing abdominal and visceral fat mass, in overweight or obese subjects.

With a focus on performance, HIIT has been combined with simulated hypoxia to maximize training adaptations, particularly to improve cardiovascular, respiratory, circulatory, hematological, and metabolic capacities at the muscular level. Live Low Train High (LLTH) allows athletes to maintain normoxia while being exposed to acute periods of hypoxia during training via hypoxic chambers (simulated altitude). More recently, research has explored the effects of HIIT under hypoxic conditions in patients with metabolic disorders and/or physical deconditioning, focusing primarily on cardiovascular and ventilatory adaptations. To date, in overweight or obese individuals, only three studies investigated the benefit of HIIT under simulated hypoxia for modulating body composition, and more specifically for reducing total or abdominal fat. These studies generally hypothesize a higher energy expenditure during hypoxia, associated with a transient loss of appetite that may be linked to hormonal disturbances, central nervous system adaptability, or metabolic flexibility altering hunger and satiety signals.

In parallel with these hypotheses, hypoxia stimulates HIF-1 production, thus promoting a shift from oxidative metabolism to glycolysis. At the same external mechanical load, the increased use of carbohydrates via glycolysis, combined with increased cardiovascular stress, should promote, during the recovery phase, greater oxygen consumption and lipid oxidation following a hypoxic session. To date, no study has yet evaluated these hypotheses by comparing these parameters following two acute HIIT sessions performed under normoxia or hypoxia.

The aim is to compare the influence of these two sessions on oxygen consumption, the corresponding energy expenditure, and carbohydrate and lipid utilization during recovery (+2h). Given the potential influence of hypoxia on appetite, food intake and spontaneous energy expenditure post-24h will also be measured. Finally, since enjoyment and perceived exertion are crucial parameters for adherence to an adapted physical activity (APA) program, these two concepts will also be assessed through the participants' experiences.

The authors propose the following hypotheses:

Main hypothesis:

  1. Lipid oxidation (g/min) during recovery (+2h) will be higher post-hypoxic session.

    Secondary hypotheses:

  2. Oxygen consumption and energy expenditure will be increased during post-hypoxic session recovery.

4/ Energy intake from the post-exercise meal may be lower post-hypoxic condition.

5/ The effort will be perceived as slightly more difficult in hypoxia due to increased cardiovascular demand.

研究の種類

介入

入学 (実際)

18

段階

  • 適用できない

連絡先と場所

このセクションには、調査を実施する担当者の連絡先の詳細と、この調査が実施されている場所に関する情報が記載されています。

研究場所

    • Allier
      • Bellerive-sur-Allier、Allier、フランス、03321
        • CREPS Auvergne Rhône-Alpes / Vichy

参加基準

研究者は、適格基準と呼ばれる特定の説明に適合する人を探します。これらの基準のいくつかの例は、人の一般的な健康状態または以前の治療です。

適格基準

就学可能な年齢

  • 大人
  • 高齢者

健康ボランティアの受け入れ

いいえ

説明

Inclusion Criteria:

- overweight or obesity (BMI between 25 kg/m2 and 35 kg/m2)

Exclusion Criteria:

  • medical contraindications to intense physical activity
  • taking ß-blocker
  • diabete
  • women taking hormonal replacement therapy

研究計画

このセクションでは、研究がどのように設計され、研究が何を測定しているかなど、研究計画の詳細を提供します。

研究はどのように設計されていますか?

デザインの詳細

  • 主な目的:防止
  • 割り当て:非ランダム化
  • 介入モデル:クロスオーバー割り当て
  • マスキング:独身

武器と介入

参加者グループ / アーム
介入・治療
実験的:High Intensity Interval Exercise - Normoxia
HIIE in normoxia
Cycling HIIE in Normoxia: 60 x [8 seconds at a power equivalent to 80-85% of HRmax followed by 12 seconds of active recovery at a power equivalent to 40% of HRmax]
実験的:High Intensity Interval Exercise - Hypoxia
HIIE in hypoxia
Cycling HIIE in Hypoxia (FiO2: 15%): 60 x [8 seconds at a power equivalent to 80-85% of HRmax followed by 12 seconds of active recovery at a power equivalent to 40% of HRmax]

この研究は何を測定していますか?

主要な結果の測定

結果測定
メジャーの説明
時間枠
Lipid oxidation after the exercise session (nromoxia and hypoxia).
時間枠:Measurement during two hours after the end of the exercise
Determination of lipid and carbohydrate oxidation after the exercise (HIIE normoxia and hypoxia). Lipid aoxidation is measured from oxygen and carbon dioxide consumption (Metamax 3D Cortex).
Measurement during two hours after the end of the exercise

二次結果の測定

結果測定
メジャーの説明
時間枠
Oxygen consumption during the recovery period
時間枠:Two hours after the end of the exercise
Determination of oxygen consumption 2 hours after the exercise session (HIIE normoxia and hypoxia). Determination from Metamax (3D Cortex).
Two hours after the end of the exercise
Energy intakes 24 hours after the exercise
時間枠:24 hours post exercise
Evaluation of energy intakes after the exercise session (HIIE normoxia and HIIE hypoxia) during 24 hours (from questionnaires)
24 hours post exercise
Appetite
時間枠:Before exercise and after exercise (+0 min, +60 min, and +120 min).
Feelings of appetite are measured using a visual appetite scale immediately before and after exercise (+0 min, +60 min, and +120 min).
Before exercise and after exercise (+0 min, +60 min, and +120 min).

協力者と研究者

ここでは、この調査に関係する人々や組織を見つけることができます。

研究記録日

これらの日付は、ClinicalTrials.gov への研究記録と要約結果の提出の進捗状況を追跡します。研究記録と報告された結果は、国立医学図書館 (NLM) によって審査され、公開 Web サイトに掲載される前に、特定の品質管理基準を満たしていることが確認されます。

主要日程の研究

研究開始 (実際)

2024年11月1日

一次修了 (実際)

2026年9月1日

研究の完了 (実際)

2026年9月1日

試験登録日

最初に提出

2026年9月5日

QC基準を満たした最初の提出物

2026年9月5日

最初の投稿 (実際)

2026年9月11日

学習記録の更新

投稿された最後の更新 (実際)

2026年9月11日

QC基準を満たした最後の更新が送信されました

2026年9月5日

最終確認日

2026年9月1日

詳しくは

本研究に関する用語

個々の参加者データ (IPD) の計画

個々の参加者データ (IPD) を共有する予定はありますか?

未定

医薬品およびデバイス情報、研究文書

米国FDA規制医薬品の研究

いいえ

米国FDA規制機器製品の研究

いいえ

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