Effect of body mass index on hemiparetic gait
- PMID: 24713181
- PMCID: PMC4185303
- DOI: 10.1016/j.pmrj.2014.03.012
Effect of body mass index on hemiparetic gait
Abstract
Objective: To evaluate the relationship between body mass index (BMI) and spatiotemporal, kinematic, and kinetic gait parameters in chronic hemiparetic stroke survivors.
Design: Secondary analysis of data collected in a randomized controlled trial comparing two 12-week ambulation training treatments.
Setting: Academic medical center.
Participants: Chronic hemiparetic stroke survivors (N = 108, >3 months poststroke)
Methods: Linear regression analyses were performed of BMI, and selected pretreatment gait parameters were recorded using quantitative gait analysis.
Main outcome measures: Spatiotemporal, kinematic, and kinetic gait parameters.
Results: A series of linear regression models that controlled for age, gender, stroke type (ischemic versus hemorrhagic), interval poststroke, level of motor impairment (Fugl-Meyer score), and walking speed found BMI to be positively associated with step width (m) (β = 0.364, P < .001), positively associated with peak hip abduction angle of the nonparetic limb during stance (deg) (β = 0.177, P = .040), negatively associated with ankle dorsiflexion angle at initial contact of the paretic limb (deg) (β = -0.222, P = .023), and negatively associated with peak ankle power at push-off (W/kg) of the paretic limb (W/kg)(β = -0.142, P = .026).
Conclusions: When walking at a similar speed, chronic hemiparetic stroke subjects with a higher BMI demonstrated greater step width, greater hip hiking of the paretic lower limb, less paretic limb dorsiflexion at initial contact, and less paretic ankle power at push-off as compared to stroke subjects with a lower BMI and similar level of motor impairment. Further studies are necessary to determine the clinical relevance of these findings with respect to rehabilitation strategies for gait dysfunction in hemiparetic patients with higher BMIs.
Copyright © 2014 American Academy of Physical Medicine and Rehabilitation. Published by Elsevier Inc. All rights reserved.
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References
-
- Salihu HM, Bonnema SM, Alio AP. Obesity: What is an elderly population growing into? Maturitas. 2009;63:7–12. - PubMed
-
- Towfighi A, Ovbiagele B. The impact of body mass index on mortality after stroke. Stroke. 2009;40:2704–8. - PubMed
-
- Duncan PW, Zorowitz R, Bates B, et al. Management of Adult Stroke Rehabilitation Care: a clinical practice guideline. Stroke. 2005;36:e100–43. - PubMed
-
- Alley DE, Chang VW. The changing relationship of obesity and disability, 1988-2004. JAMA. 2007;298:2020–7. - PubMed
-
- Apovian CM, Frey CM, Wood GC, Rogers JZ, Still CD, Jensen GL. Body mass index and physical function in older women. Obes Res. 2002;10:740–7. - PubMed
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