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临床试验/NCT07046520
NCT07046520已完成不适用

Effects of High-Intensity Interval Training on Plasma Volume, Muscle Damage, and Aerobic Performance in Overweight Adolescent Females

High Institute of Sports and Physical Education of Kef2 个研究点 分布在 1 个国家目标入组 28 人开始时间: 2024年12月9日最近更新:
适应症

试验速览

阶段
不适用
状态
已完成
发起方
入组人数
28
试验地点
2
主要终点
Erythrocytes

研究概览

简要总结

The goal of this clinical trial is to investigate the impact of high-intensity interval training (HIIT) program on body composition, hematological parameters, plasma volume variations (PVV), muscle damage markers, and aerobic capacity in overweight/obese adolescent girls. The main question it aims to answer is: Does HIIT reduce risk factors associated obesity diseases by modulating body composition and hematological parameters and increasing PVV? Researchers will compare HIIT (designed to the experimental group) to nontraining intervention (designed to the control group) to see if the training program works to enhance physiological health and reduce risk factors associated with obesity in this population. Participants in the experimental (HIIT group) group will: underwent HIIT at 90-105% maximal aerobic speed (MAS), three times a week.

Participants in control group will : not perform any physical training and maintain their usual daily activities.

详细描述

Obesity during adolescence is linked to adverse changes in body composition, aerobic fitness, and blood health. High-intensity interval training (HIIT) is a promising strategy to improve these outcomes. However, its effects on hematological markers, plasma volume, and muscle damage in overweight/obese adolescent girls remain unclear. This study aimed to investigate the effects of HIIT on body composition, hematological parameters, plasma volume variations (PVV), muscle damage markers, and aerobic capacity in this population.Twenty-eight overweight/obese girls (16.21±0.92) were randomly assigned to a HIIT group (n=14) or control group (n=14). The 10-week HIIT protocol consisted of 4×6×15s running at 90-105% maximal aerobic speed (MAS) with 15s of active recovery at 50% MAS (3 sessions/week). Pre/post assessments included body composition, hematological markers, muscle damage markers, and aerobic fitness. Plasma volume was estimated post-intervention in both group.

研究设计

研究类型
Interventional
分配方式
Randomized
干预模型
Parallel
主要目的
Prevention
盲法
Single (Participant)

入排标准

年龄范围
15 Years 至 17 Years(Child)
性别
Female
接受健康志愿者

入选标准

  • Aged between 15 and 17 years.
  • BMI greater than or equal to the 95th percentile for their age.

排除标准

  • Pharmacological treatments or medical conditions that could interact with the protocol (e.g.,hypertension, diabetes, cardiac, orthopedic, neuromuscular, or neurological disorders).
  • Hormone replacement therapy or therapies for obesity.
  • Irregular menstrual cycle.
  • Restrictive diet or use of dietary supplements or engagement in any structured physical training either currently or during the previous three months.
  • Withdrawal of consent.
  • Non-compliance with study procedures.
  • Insufficient data for analysis.

结局指标

主要结局

Erythrocytes

时间窗: At baseline and at week 11 (end of intervention period).

Blood levels of erythrocytes were collected from a blood sample (5 ml) and analyzed using a multichannel automated hematology analyzer (XN450; Sysmex, Norderstedt, Germany).

Hemoglobin

时间窗: At baseline and at week 11 (end of intervention period).

Blood levels of hemoglobin were collected from a blood sample (5 ml) and analyzed using a multichannel automated hematology analyzer (XN450; Sysmex, Norderstedt, Germany).

Hematocrit

时间窗: At baseline and at week 11 (end of intervention period).

Blood levels of hematocrit were collected from a blood sample (5 ml) and analyzed using a multichannel automated hematology analyzer (XN450; Sysmex, Norderstedt, Germany).

Mean corpuscular volume

时间窗: At baseline and at week 11 (end of intervention period).

Blood levels of mean corpuscular volume were collected from a blood sample (5 ml) and analyzed using a multichannel automated hematology analyzer (XN450; Sysmex, Norderstedt, Germany).

Mean corpuscular hemoglobin content

时间窗: At baseline and at week 11 (end of intervention period).

Blood levels of mean corpuscular hemoglobin content were collected from a blood sample (5 ml) and analyzed using a multichannel automated hematology analyzer (XN450; Sysmex, Norderstedt, Germany).

Mean hemoglobin concentration

时间窗: At baseline and at week 11 (end of intervention period)

Blood levels of mean hemoglobin concentration were collected from a blood sample (5 ml) and analyzed using a multichannel automated hematology analyzer (XN450; Sysmex, Norderstedt, Germany).

Creatine kinase

时间窗: At baseline and at week 11 (end of intervention period).

Serum concentrations of creatine kinase are measured from a blood sample (5 ml) using a Beckman Coulter AU480 Chemistry Analyzer (France).

Lactate dehydrogenase

时间窗: At baseline and at week 11 (end of intervention period).

Serum concentrations of lactate dehydrogenase are measured from a blood sample (5 ml) using a Beckman Coulter AU480 Chemistry Analyzer (France).

Plasma volume variations

时间窗: Plasma volume variations (PVV) was calculated at week 11 (end of intervention period) under two conditions (High intensity interval training and No training intervention [control group] ).

Plasma volume variations (PVV) was calculated based on measured hematocrit (Ht) and hemoglobin (Hb) values according to the method developed by Costill and Fink (1974). %PVV=100 ×\[(HbA/HbB) ×(100 - HtB) / (100 - HtA)\] - 1, where 0 is the value measured before training program and 1 is the value measured after training program.

Body weight

时间窗: At baseline and at week 11 (end of intervention period).

Body weight (kg) was recorded , with barefoot and lightly dressed subjects, using an electronic scale (Tanita BC-533, Tokyo, Japan).

Height

时间窗: At baseline

Height (m) was determined using a standard stadiometer (Holtain Ltd., UK).

Body fat

时间窗: At baseline and at week 11 (end of intervention period)

Body fat (%) was recorded using an electronic scale (Tanita BC-533, Tokyo, Japan).

Body mass index

时间窗: At baseline and at week 11 (end of intervention period).

Body mass index (kg/m²) was calculated as weight (kg) divided by height squared (m²).

Waist circumference

时间窗: At baseline and at week 11 (end of intervention period).

Waist circumference (cm) was measured to the nearest 0.1 cm using a non-deformable anthropometric tape, placed horizontally at the midpoint between the inferior margin of the last palpable rib and the superior border of the iliac crest, with the participant standing upright and breathing normally.

Maximal aerobic speed

时间窗: At baseline and at week 11 (end of intervention period).

Maximal aerobic speed was determined using the Vameval test (Cazorla,1990).

Maximal oxygen consumption (VO2max)

时间窗: At baseline and at week 11 (end of intervention period).

Maximal oxygen consumption (VO2max) were determined using the Vameval test (Cazorla,1990).

Maximal heart rate (HRmax)

时间窗: At baseline and at week 11 (end of intervention period).

Maximal heart rate maximum (HRmax) was recorded at the final stage of the Vameval test (Cazorla,1990) using a Polar heart rate monitor (Polar S810, Kempele, Finland).

Height

时间窗: At baseline

Height (m) was determined using a standard stadiometer (Holtain Ltd., UK).

次要结局

未报告次要终点

研究者

发起方
High Institute of Sports and Physical Education of Kef
申办方类型
Other
责任方
Principal Investigator
主要研究者

Wissal Abassi

Principal Investigator

High Institute of Sports and Physical Education of Kef

研究点 (2)

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