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临床试验/NCT06538467
NCT06538467已完成不适用

Comparison of Architectural and Performance Adaptations of Hip Extension Exercise Under Gravitational or Inertial Loading Conditions

University of Valencia1 个研究点 分布在 1 个国家目标入组 32 人开始时间: 2019年9月1日最近更新:
适应症
干预措施

试验速览

阶段
不适用
状态
已完成
入组人数
32
试验地点
1
主要终点
Power

研究概览

简要总结

The main objective of this study is to investigate training-induced adaptations in Biceps femoris long head (BFlh) architecture and performance measures such as muscle strength, jumping, and power variables after following 6 weeks of resistance training program with gravitational or inertial hip extension (HE) exercise and a subsequent detraining period, comparing those adaptations with a control group. In addition, this study aims to determine the time course of BFlh architectural adaptations throughout a 6-week training intervention.

研究设计

研究类型
Interventional
分配方式
Randomized
干预模型
Parallel
主要目的
Treatment
盲法
Double (Care Provider, Outcomes Assessor)

入排标准

年龄范围
18 Years 至 —(Adult, Older Adult)
性别
Male
接受健康志愿者
是

入选标准

  • •at least two years of resistance training experience
  • •not have any injury, disease or pain that could reduce their maximal effort

排除标准

  • •history of injury to the lower limbs (including the hamstrings), wrist, or back in the past 18 months

研究组 & 干预措施

Inertial

Experimental

Hip extension exercise performed under inertial loading conditions using the EPTE Inertial Concept (Ionclinics SL, L'Alcudia, Spain) during six weeks with two sessions per week. The EPTE Inertial Concept is an inertial device that combines a series of output pulleys and telescopic arms, capable of implementing 6 disks of different weights and radii.

干预措施: Hip extension exercise with inertial load (Other)

Gravitational

Experimental

Hip extension exercise performed under gravitational loading conditions using free-weight equipment during six weeks with two sessions per week.

干预措施: Hip extension exercise with gravitational load (Other)

Control

No Intervention

Participans was advised to continue their regular levels of physical activity but not to perform any lower body resistance training

结局指标

主要结局

Power

时间窗: Baseline, at the end of the 6 weeks of training and 4 weeks after this (detraining period)

Power was calculated in both modalities (i.e., HE gravitational and inertial) as the product of velocity and force. The velocity was calculated using the MuscleLab 4020e linear encoder (Ergotest Technology AS, Porsgrunn, Norway). For gravitational loading (i.e. constant mass), the force was calculated as the product of mass and acceleration. For inertial loading, the force was calculated using a force gauge that was anchored along the rope, between a pulley and the proximal end of the second rope.

Muscle Strength Assessment

时间窗: Baseline, at the end of the 6 weeks of training and 4 weeks after this (detraining period)

Knee flexion was assessed with subjects in prone position performing knee flexor maximal isometrics contractions with a knee angle of approximately 15 degrees. For hip extension, a resisted hip extension was requested with the subjects lying in the prone position with their legs straight. Hip adduction was evaluated in a supine position with the hips at 45º flexion, requesting an maximal isometrics contraction adduction with a resistance in the internal condyle.

Jump performance

时间窗: Baseline, at the end of the 6 weeks of training and 4 weeks after this (detraining period)

CMJ and SJ, utilizing the MyJump 2 application on an iPad Pro (at 240 frames per second, high-definition video resolution). In the CMJ, participants initiated the jump from a standing position, performed a preparatory movement by bending their knees to 90° flexion, and then jumped upward as high as possible without pausing between movements. Similarly, for the SJ, participants began from a standardized position with knees flexed at 90°, and then jumped as high as possible with hands on their hips. Throughout both tests, participants were instructed to maintain their hands on their hips to minimize lateral and horizontal displacement, ensuring accurate vertical jump measurement.

Fascicle length

时间窗: Baseline, at weeks 2 and 3 of the intervention, at the end of the 6 weeks of training and 4 weeks after this (detraining period)

Two-dimensional images of the Biceps femoris long head (BFlh) architecture were captured using B-mode ultrasonography. All imaging was conducted with participants lying prone with their hips and knees in a neutral and fully extended position.Three ultrasound images were taken and stored for analysis through the ImageJ software (National Institutes of Health, USA). The most visible fascicle in each image was used for measurement of fascicle pennation angle (i.e., angle between the fascicle and the intermediate aponeurosis) and estimation of fascicle length using a validated equation: FL = sin (AA + 90°) × MT ÷ sin (180° - (AA + 180° - PA))

Soreness

时间窗: From session 1 (the beginning of week 1) to session 12 (the end of week 6), at the beginning and end of each session.

Participants were asked "How sore do you feel in your hamstrings?" and rated their soreness on a 10-point Likert Scale (1 = No Soreness, 3 = Minimal Soreness, 5 = Moderate Soreness, 8 = Very Sore, 10 = Extremely Sore)

次要结局

未报告次要终点

研究者

申办方类型
Other
责任方
Principal Investigator
主要研究者

Rodrigo Martín-San-Agustin

Assistant Professor of Physiotherapy

University of Valencia

研究点 (1)

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