Investigating the Post-Activation Performance Enhancement Effects on Skeletal Muscles Under Varied Loading Conditions
NCT ID: NCT06464120
Last Updated: 2024-07-29
Study Results
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Basic Information
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COMPLETED
NA
14 participants
INTERVENTIONAL
2024-07-18
2024-07-25
Brief Summary
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During the activation process of motor units with increasing loads, low-threshold motor units are recruited first, followed by high-threshold motor units. As the load increases, the root mean square (RMS) value increases linearly, further promoting the overlap of motor unit potentials and the rise in RMS values. This overlap in activation timing among adjacent motor units results in greater overall muscle force output (Liu, 2008; Tian, 2009). The significance of this lies in the fact that as the degree of muscle activation increases, especially under incremental loads, the muscle's ability to adapt to subsequent strength or explosive tasks may be enhanced.
In competitive sports, optimizing the relationship between warm-up and performance is crucial. Research indicates that the duration of PAPE varies with individual differences, training type, intensity, and recovery intervals. The characteristics of the PAPE effect also differ. Additionally, following constant loads, the enhancement and decay rates of performance in PAPE show varying rates at different times, and these rates do not exhibit a symmetrical linear change in absolute value (Liang, M 2020; Guo, W et al. 2018; Liu, R and Li, Q. 2017). The competition pace in sports demands precise modulation of performance enhancement rates after activation, and athletes can leverage these characteristics by selecting appropriate loading forms to trigger PAPE at critical moments in competition. To explore the enhancement or decay rates of performance over different time domains, our research team designed a protocol consisting of incremental loads.
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Detailed Description
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Experimental procedure The participants began with a 10-minute slow jog and dynamic lower-limb stretches. As a baseline, the participants' dynamic data for unloaded static half-squat jumps were collected after a 5-minute rest. Following another 5-minute rest, the constant load group underwent one set of four half-squat jump inductions at an intensity of 90% 1-RM. The incremental load group underwent inductions at each load intensity, with one set of barbell half-squat jump exercises for each intensity. The participants received verbal cues and encouragement for each repetition. Dynamic data for static half-squat jumps were collected at 15 seconds, 3 minutes, 6 minutes, 9 minutes, and 12 minutes after the end of each exercise session. At each time point, two valid repetitions were collected, with verbal cues and encouragement provided to the participants for each repetition. Each set of two half-squat jumps did not exceed 10 seconds. The interval between static half-squat jump testing and 1-RM testing was greater than 48 hours .
Conditions
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Study Design
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RANDOMIZED
SEQUENTIAL
BASIC_SCIENCE
NONE
Study Groups
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Incremental load training group
This training plan is a single training,The load intensity of strength training for athletes :(5,4,3)RM×1 time ×1set for half squat jump
Increasing load strength training
The Smith machine was used to intervene with athletes by employing an incremental load approach.
Constant load training group
This training plan is a single training,This training plan is a single training,Constant load of strength training for athletes :90%1RM×3 time ×1set for half squat jump
Constant load strength training
The Smith machine was used to intervene with athletes by employing a constant load approach.
Interventions
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Increasing load strength training
The Smith machine was used to intervene with athletes by employing an incremental load approach.
Constant load strength training
The Smith machine was used to intervene with athletes by employing a constant load approach.
Eligibility Criteria
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Inclusion Criteria
Exclusion Criteria
19 Years
24 Years
MALE
Yes
Sponsors
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Universiti Putra Malaysia
OTHER
Responsible Party
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Rong Wenchao
Study Principal Investigator
Principal Investigators
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wenchao Rong, phd
Role: PRINCIPAL_INVESTIGATOR
University Putra Malaysia
Locations
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RongWenchao
Qinhuangdao, Hebei, China
Countries
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Other Identifiers
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2024Y002
Identifier Type: -
Identifier Source: org_study_id
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