Abstract:
:This paper involved a biomechanical analysis of lower limb joint coordination during hula hooping. A lower extremity inverse dynamics model that incorporated kinematic input and force platform data was developed to compute the angular velocities, moments about and powers produced at the lower extremity joints. The abductor moments and powers were discovered to be paramount in maintaining hoop oscillations, as demonstrated consistently in the three study participants. However, hula hooping was demonstrated to be variable in terms of the involvement of flexor and extensor moments and powers of the ankle, knee and hip joints, resulting in the adoption of varying strategies by each of the three participants.
journal_name
Hum Mov Scijournal_title
Human movement scienceauthors
Cluff T,Robertson DG,Balasubramaniam Rdoi
10.1016/j.humov.2008.02.018subject
Has Abstractpub_date
2008-08-01 00:00:00pages
622-35issue
4eissn
0167-9457issn
1872-7646pii
S0167-9457(08)00024-9journal_volume
27pub_type
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