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Analysis of Functional Arch Support Insoles on the Biomechanics and Performance in Right-Forward Lunging Step of Badminton Players

Bibliographic Data

ID15464249
AuthorsHung-Wen Chen (Chinese Culture University), Hsien‐Te Peng (0000-0002-4738-4561, Chinese Culture University), Hsien-Te Peng (Chinese Culture University), Yan Wei (0000-0002-7927-122X, Chinese Culture University, corresponding author)
Year2022
Volume19
Issue18
Pages11210-11210
Publication date2022-09-07
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueInternational Journal of Environmental Research and Public Health (JOURNAL)
Journal identifiersISSN: 1661-7827 • E-ISSN: 1660-4601
PublisherMultidisciplinary Digital Publishing Institute (PUBLISHER • CH)
DOI10.3390/ijerph191811210
PMID36141483
OpenAlexW4295009437
LanguageEN
References cited21

The purpose of this study was to examine the differences in biomechanical parameters and sports-specific performance of lower limbs between arch support insoles (ASI) and flat insoles (FLI) when performing net strides. After installing the MVN IMU system, 18 college badminton team members were asked to take the following tests: (1) Consecutive net stride tests; (2) Six-point footwork tests; (3) Retrieve/stroke the ball at the left and right net; (4) Smash and retrieve/stroke the ball at the net; (5) Smash at the front and back crossover step. The joint angle of the lower limbs and ground reaction force during the support phase was collected. The results demonstrated that the peak right hip flexion angle was significantly greater with ASI than FLI (63.09 ± 10.70; 60.08 ± 13.82; p = 0.028), while the peak right foot inversion angle was significantly smaller with ASI than FLI (20.68 ± 7.87; 23.85 ± 8.11; p = 0.013). The principal conclusion was that the arch support insole avoids the decrease in the hip flexion angle and the increase in the foot inversion angle during the net stride tests

Arch · Biomechanics · Ground reaction force · Hip flexion · Kinematics · Physical medicine and rehabilitation · Physical therapy · Physics · Range of motion · STRIDE · Structural engineering · Engineering · Lower Extremity Biomechanics and Pathologies · Mathematics · Medicine · Sports injuries and prevention · Sports Performance and Training · Anatomy · Orthodontics

  • Agility literature review

    Jeremy M Sheppard, Warren Young et al.•Journal of Sports Sciences•2006

Citation velocityhistorical
Highly citedNo

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