Literature DB >> 28084863

Load Accommodation Strategies and Movement Variability in Single-Leg Landing.

Andrew D Nordin1, Janet S Dufek2.   

Abstract

Our purpose was to examine changes in participant-specific single-leg landing strategies and intra-individual movement variability following alterations in mechanical task demands via external load and landing height. Nineteen healthy volunteers (15M, 4 F, age: 24.3 ± 4.9 y, mass: 78.5 ± 14.7 kg, height: 1.73 ± 0.08 m) were analyzed among 9 single-leg drop landing trials in each of 6 experimental conditions (3 load and 2 landing height) computed as percentages of participant bodyweight (BW, BW + 12.5%, BW + 25%) and height (H12.5% &amp; H25%). Lower-extremity sagittal joint angles and moments (hip, knee, and ankle), vertical ground reaction forces (GRFz), and electrical muscle activities (gluteus maximus, biceps femoris, vastus medialis, medial gastrocnemius, and tibialis anterior muscles) were analyzed. Individual single-leg drop landing strategies were identified using landing impulse predictions and the Load Accommodation Strategies Model (James et al., 2014). Intra-individual movement variability was assessed from neuromechanical synergies extracted using single-case principal component analyses (PCA). Fewer contrasting single-leg landing strategies were identified among participants under greater mechanical task demands (p < .001) alongside lesser intra-individual movement variability (p < .001). These results reveal changes in movement control under greater mechanical task demands, which may have implications for understanding overuse injury mechanisms in landing.

Entities:  

Keywords:  principal component analysis; single-case; variability

Mesh:

Year:  2017        PMID: 28084863     DOI: 10.1123/jab.2016-0097

Source DB:  PubMed          Journal:  J Appl Biomech        ISSN: 1065-8483            Impact factor:   1.833


  4 in total

1.  A Proposed Framework to Describe Movement Variability within Sporting Tasks: A Scoping Review.

Authors:  Jake Cowin; Sophia Nimphius; James Fell; Peter Culhane; Matthew Schmidt
Journal:  Sports Med Open       Date:  2022-06-27

2.  Distinct Coordination Strategies Associated with the Drop Vertical Jump Task.

Authors:  Christopher Andrew Dicesare; Ali A Minai; Michael A Riley; Kevin R Ford; Timothy E Hewett; Gregory D Myer
Journal:  Med Sci Sports Exerc       Date:  2020-05

3.  Principal Component Analysis Reveals the Proximal to Distal Pattern in Vertical Jumping Is Governed by Two Functional Degrees of Freedom.

Authors:  Emily J Cushion; John Warmenhoven; Jamie S North; Daniel J Cleather
Journal:  Front Bioeng Biotechnol       Date:  2019-08-08

4.  A biomechanical study of load carriage by two paired subjects in response to increased load mass.

Authors:  Guillaume Fumery; Nicolas A Turpin; Laetitia Claverie; Vincent Fourcassié; Pierre Moretto
Journal:  Sci Rep       Date:  2021-02-23       Impact factor: 4.379

  4 in total

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