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临床试验/NCT07705087
NCT07705087尚未招募不适用

Impact of Plyometric Training Methods on Athletic Performance and Detraining Processes in Youth Female Soccer Players

Pamukkale University1 个研究点 分布在 1 个国家目标入组 36 人开始时间: 2026年7月20日最近更新:
适应症

试验速览

阶段
不适用
状态
尚未招募
入组人数
36
试验地点
1
主要终点
Absolute Peak Torque (APT) of Knee Extensors and Flexors

研究概览

简要总结

Lower extremity strength, explosive power, dynamic balance, and functional range of motion are critical determinants of athletic performance and injury prevention in soccer (football). While plyometric training is widely used to improve these qualities, the comparative effects of bodyweight plyometric training versus externally loaded plyometric training, and the maintenance of these effects during detraining periods, remain unclear. This study aims to investigate the effects of two different plyometric training methods on athletic performance and subsequent detraining processes in young female soccer players. Participants will be randomly assigned to three groups: Bodyweight Plyometric Training Group (BW-PT), External Loading Plyometric Training Group (EL-PT, who will wear vests weighing 10% of their body weight), and Control Group (CG, who will only continue with routine soccer training). Training interventions will be conducted for 6 weeks, immediately followed by a 4-week detraining period. To comprehensively assess athletic performance, the following measurements will be taken at baseline (pre-test), immediately after the training period (post-test), and after the detraining period (maintenance test): Isokinetic muscle strength of knee extensors and flexors (peak torque and force development rate at 60°/s and 120°/s), Jumping performance (standing long jump, vertical jump height, and 15-second repeated jump test), Functional range of motion (via Functional Movement Screen - FMS), Dynamic balance (via Y-Balance Test). The primary objective is to determine which plyometric loading strategy, compared to traditional soccer training, provides superior and longer-lasting physiological and biomechanical adaptations in young female athletes.

研究设计

研究类型
Interventional
分配方式
Randomized
干预模型
Parallel
主要目的
Basic Science
盲法
None

入排标准

年龄范围
13 Years 至 18 Years(Child, Adult)
性别
Female
接受健康志愿者

入选标准

  • No history of surgery due to musculoskeletal injuries within the past 6 months.
  • No use of ergogenic supplements within the past 3 months.
  • Regular participation in routine team training sessions for at least 2 months prior to the study.

排除标准

  • History of any recent injury requiring a recovery period of more than one week.
  • Use of ergogenic aids or nutritional supplements during the intervention period.
  • Missing two consecutive or four non-consecutive training sessions during the study period.
  • Participation in additional structured physical training or exercises outside of the routine team practices and the study protocol.

结局指标

主要结局

Absolute Peak Torque (APT) of Knee Extensors and Flexors

时间窗: Baseline (Week 0), immediately post-training (Week 6), and after the detraining period (2nd and 4th week).

Concentric isokinetic absolute peak torque (APT) of the knee extensors and flexors (dominant leg) will be evaluated at 60°/s and 120°/s angular velocities using a Cybex Humac Norm dynamometer during 5 maximal repetitions. (Unit of measure: Nm)

Relative Peak Torque (RPT) of Knee Extensors and Flexors

时间窗: Baseline (Week 0), immediately post-training (Week 6), and after the detraining period (2nd and 4th week).

Concentric isokinetic relative peak torque (RPT) of the knee extensors and flexors (dominant leg) will be evaluated at 60°/s and 120°/s angular velocities using a Cybex Humac Norm dynamometer during 5 maximal repetitions. (Unit of measure: Nm/kg)

Time to Peak Torque (TPT) of Knee Extensors and Flexors

时间窗: Baseline (Week 0), immediately post-training (Week 6), and after the detraining period (2nd and 4th week).

Concentric isokinetic time to peak torque (TPT) of the knee extensors and flexors (dominant leg) will be evaluated at 60°/s and 120°/s angular velocities using a Cybex Humac Norm dynamometer during 5 maximal repetitions. (Unit of measure: milliseconds)

Average Peak Torque (AvPT) of Knee Extensors and Flexors

时间窗: Baseline (Week 0), immediately post-training (Week 6), and after the detraining period (2nd and 4th week).

Concentric isokinetic average peak torque (AvPT) of the knee extensors and flexors (dominant leg) will be evaluated at 60°/s and 120°/s angular velocities using a Cybex Humac Norm dynamometer during 5 maximal repetitions. (Unit of measure: Nm)

Average Rate of Force Development (AvRFD) of Knee Extensors and Flexors

时间窗: Baseline (Week 0), immediately post-training (Week 6), and after the detraining period (2nd and 4th week).

Concentric isokinetic average rate of force development (AvRFD) of the knee extensors and flexors (dominant leg) will be evaluated at 60°/s and 120°/s angular velocities using a Cybex Humac Norm dynamometer during 5 maximal repetitions. (Unit of measure: Nm/s)

Vertical Jump Height (VJH)

时间窗: Baseline (Week 0), immediately post-training (Week 6), and after the detraining period (2nd and 4th week).

Vertical jump height calculated from flight time will be evaluated using an electronic contact mat system (Fusion SmartJump, Fusion Sport, Australia). Participants will perform a countermovement jump without arm swing. The best value from 3 repetitions, separated by 1-minute rest intervals, will be recorded. (Unit of measure: cm)

Standing Long Jump (SLJ) Distance

时间窗: Baseline (Week 0), immediately post-training (Week 6), and after the detraining period (2nd and 4th week).

Horizontal jump distance will be assessed. Participants will perform a maximum distance jump with two feet from behind a starting line. The best value from 3 repetitions will be recorded. (Unit of measure: cm)

15-Second Repeated Jump Test: Average Power (RJ15s-AP)

时间窗: Baseline (Week 0), immediately post-training (Week 6), and after the detraining period (2nd and 4th week).

Average power (RJ15s-AP) will be evaluated during 15 seconds of continuous maximal vertical jumps using an electronic contact mat system (Fusion SmartJump, Fusion Sport, Australia). Participants will jump with hands on hips and an upright trunk. The value is calculated using the Bosco equation. (Unit of Measure: W)

15-Second Repeated Jump Test: Flight Time (RJ15s-FT)

时间窗: Baseline (Week 0), immediately post-training (Week 6), and after the detraining period (2nd and 4th week).

Flight time (RJ15s-FT) will be evaluated during 15 seconds of continuous maximal vertical jumps using an electronic contact mat system (Fusion SmartJump, Fusion Sport, Australia). Participants will jump with hands on hips and an upright trunk. The value is calculated using the Bosco equation. (Unit of Measure: ms)

15-Second Repeated Jump Test: Number of Jumps (N-RJ15s)

时间窗: Baseline (Week 0), immediately post-training (Week 6), and after the detraining period (2nd and 4th week).

The number of jumps (N-RJ15s) will be evaluated during 15 seconds of continuous maximal vertical jumps using an electronic contact mat system (Fusion SmartJump, Fusion Sport, Australia). Participants will jump with hands on hips and an upright trunk. (Unit of Measure: Count)

次要结局

  • Functional Movement Capacity(Baseline (Week 0), immediately post-training (Week 6), and after the detraining period (2nd and 4th week).)
  • Dynamic Balance and Neuromuscular Control(Baseline (Week 0), immediately post-training (Week 6), and after the detraining period (2nd and 4th week).)

研究者

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

Fatih GUR

Principal Investigator

Pamukkale University

研究点 (1)

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