Biomechanical Response of the Lower Extremity to Running-Induced Acute Fatigue: A Systematic Review.

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Version: Final published version
License: CC BY 4.0
Serval ID
serval:BIB_EA5C780040DF
Type
Article: article from journal or magazin.
Collection
Publications
Institution
Title
Biomechanical Response of the Lower Extremity to Running-Induced Acute Fatigue: A Systematic Review.
Journal
Frontiers in physiology
Author(s)
Apte S., Prigent G., Stöggl T., Martínez A., Snyder C., Gremeaux-Bader V., Aminian K.
ISSN
1664-042X (Print)
ISSN-L
1664-042X
Publication state
Published
Issued date
2021
Peer-reviewed
Oui
Volume
12
Pages
646042
Language
english
Notes
Publication types: Systematic Review
Publication Status: epublish
Abstract
Objective: To investigate (i) typical protocols used in research on biomechanical response to running-induced fatigue, (ii) the effect of sport-induced acute fatigue on the biomechanics of running and functional tests, and (iii) the consistency of analyzed parameter trends across different protocols. Methods: Scopus, Web of Science, Pubmed, and IEEE databases were searched using terms identified with the Population, Interest and Context (PiCo) framework. Studies were screened following the Preferred Reporting Items for Systematic Reviews and Meta-Analyses (PRISMA) guidelines and appraised using the methodological index for non-randomized studies MINORS scale. Only experimental studies with at least 10 participants, which evaluated fatigue during and immediately after the fatiguing run were included. Each study was summarized to record information about the protocol and parameter trends. Summary trends were computed for each parameter based on the results found in individual studies. Results: Of the 68 included studies, most were based on in-lab (77.9%) protocols, endpoint measurements (75%), stationary measurement systems (76.5%), and treadmill environment (54.4%) for running. From the 42 parameters identified in response to acute fatigue, flight time, contact time, knee flexion angle at initial contact, trunk flexion angle, peak tibial acceleration, CoP velocity during balance test showed an increasing behavior and cadence, vertical stiffness, knee extension force during MVC, maximum vertical ground reaction forces, and CMJ height showed a decreasing trend across different fatigue protocols. Conclusion: This review presents evidence that running-induced acute fatigue influences almost all the included biomechanical parameters, with crucial influence from the exercise intensity and the testing environment. Results indicate an important gap in literature caused by the lack of field studies with continuous measurement during outdoor running activities. To address this gap, we propose recommendations for the use of wearable inertial sensors.
Keywords
biomechanics, fatigue research, functional tests, running, systematic review, wearable sensors
Pubmed
Web of science
Open Access
Yes
Create date
21/09/2021 10:51
Last modification date
08/08/2024 6:42
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