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Effects of Match Play Exercises and Plyometric Training on Explosive Power, Agility and Functional Performance

Comparative Effects of Match Play Exercises and Plyometric Training on Explosive Power, Agility and Functional Performance in Football Players

Status
Completed
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT05969197
Enrollment
30
Registered
2023-08-01
Start date
2022-12-22
Completion date
2023-06-30
Last updated
2023-08-01

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Functional Performance, Power

Keywords

exercise, plyometric, agility, power, functional performance

Brief summary

Technique is the most important part of football for scoring goal and in defense of the goal lower limbs are the most important part of the player to be focused on as moving with the ball and training method is important in training football players for their matches. Use of training method in football players can either be a match play training or plyometric training. Plyometric training is considered an effective tool for increasing tendon stiffness. Plyometric training produces improvements in jump performance and lower body strength performance. A training program for young football players, using minimum equipment and effort, can result in improved player performance and a reduction in the risk of a possible overuse injury, reflected by an improvement in lower limb range of motion. Match play training patterns are mostly followed by the coaches to enhance the performance and plyometric are used for the efficient training programs. This study will be a randomized clinical trial conducted at Pakistan sports board in Lahore. The study will be completed within the time duration of Six months. Non probability convenient sampling technique will be used to collect the data. The sample size of 15 participants each group will be taken in this study to find the effects of match play exercise versus plyometric on explosive power, Agility and functional performance in football players. Football players will be divided into 2 groups Group A will be given the match play training and Group B will be given plyometric trainings and at the end of the 6 week the results will be checked on power, agility and fictional performance. Power: (MRC scale) , Agility: Comprehensive Agility Measurement Tool (CAMT), Functional Performance: The Functional Movement Scale (FMS) tools will be used to measure the difference between the training pattern of 6 weeks which is more effective for the football players. The data will be collected using the SPSS 24. In descriptive statistics Frequency tables, pie charts, bar charts will be used to show summary of group measurements measured over time... The objective of this study is to Determine Comparative Effects of Match play training and plyometric training on Explosive power, Agility and Functional performance in football players.

Detailed description

To Compare the Effects Of Match Play Exercises And Plyometric Training On Explosive Power, Agility And Functional Performance In Football Players Randomized clinical Trials will be used. Non-probability convenient sampling technique will be used Data will be collected from Pakistan Sports Board, Lahore DATA COLLECTION TOOL 1. POWER Vertical Jump Tests 2. AGILITY Illinois Agility Test 3. The Functional Movement Scale (FMS)

Interventions

OTHERMatch Play Training

15 participants will be in Match play training group giving the Match play exercise protocol along with warm-up sessions for 6 weeks, measuring values before giving them protocol and after protocol.

OTHERPlyometric Training

15 participants will be in Plyometric training group giving isotonic exercise protocol along with warm-up sessions for 6 weeks, measuring values before giving them protocol and after protocol.

Sponsors

Riphah International University
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
SCREENING
Masking
SINGLE (Subject)

Eligibility

Sex/Gender
ALL
Age
15 Years to 28 Years
Healthy volunteers
Yes

Inclusion criteria

* • Only Male * Ages 15-28(10) * Forward , Mid fielders and Defenders (11) * Both Right and Left Side players are included

Exclusion criteria

* • Lower Extremity Injuries (12) * Lower Extremity Deformities * History of pain within the previous month prior to testing; * Not regular training during the month prior to testing; * Musculoskeletal lower limb injury in three months prior to testing. * Goalkeepers were excluded from the analysis

Design outcomes

Primary

MeasureTime frameDescription
Power6 weeksVertical jump tests are among the most common means of evaluating physical fitness in various populations. Though principally used to evaluate leg power in sports, such as basketball and football. vertical jump tests have also been used to evaluate non-athletic populations (including children (Acero et al., 2011) and elderly people (Pereira et al., 2012)), particularly because vertical jump training has been reported to improve bone mineral density (Allison, Folland, Rennie, Summers, & Brooke-Wavell, 2013). Vertical jump tests have been proposed as important for talent identification purposes, with young elite athletes displaying higher values than their non-elite counterparts.(13)
Agility6 weeksAgility is an important characteristic of team sports athletes. There is a growing interest in the factors that influence agility performance as well as appropriate testing protocols and training strategies to assess and improve this quality. Agility tests generally offer good reliability, although this may be compromised in younger participants responding to various scenarios. A human and/or video stimulus seems the most appropriate method to discriminate between standard of playing ability. Decision-making and perceptual factors are often propositioned as discriminant factors; however, the underlying mechanisms are relatively unknown.(14)
The Functional Movement Scale (FMS)6 weeksFunctional (e.g., deficits in balance and strength/power performance), neural (e.g., loss of sensory/motor neurons), muscular (e.g., atrophy of type-II muscle fibers in particular), and bone-related (e.g., osteoporosis) deteriorations. Traditionally, balance and/or lower extremity resistance training were used to mitigate these age-related deficits. However, the effects of resistance training are limited and poorly translate into improvements in balance, functional tasks, activities of daily living, and fall rates.

Countries

Pakistan

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026