Kinetic and kinematic parameters associated with late braking force and effects on gait performance of stroke patients
- PMID: 37173403
- PMCID: PMC10182027
- DOI: 10.1038/s41598-023-34904-3
Kinetic and kinematic parameters associated with late braking force and effects on gait performance of stroke patients
Abstract
Late braking force (LBF) is often observed in the late stance phase of the paretic lower limb of stroke patients. Nevertheless, the effects and association of LBF remain unclear. We examined the kinetic and kinematic parameters associated with LBF and its effect on walking. Herein, 157 stroke patients were enrolled. Participants walked at a comfortable speed selected by them, and their movements were measured using a 3D motion analysis system. The effect of LBF was analyzed as a linear relationship with spatiotemporal parameters. Multiple linear regression analyses were performed with LBF as the dependent variable and kinetic and kinematic parameters as independent variables. LBF was observed in 110 patients. LBF was associated with decreased knee joint flexion angles during the pre-swing and swing phases. In the multivariate analysis, trailing limb angle, cooperativity between the paretic shank and foot, and cooperativity between the paretic and non-paretic thighs were related to LBF (p < 0.01; adjusted R2 = 0.64). LBF in the late stance phase of the paretic lower limb reduced gait performance in the pre-swing and swing phases. LBF was associated with trailing limb angle in the late stance, coordination between the paretic shank and foot in the pre-swing phase, and coordination between both thighs.
© 2023. The Author(s).
Conflict of interest statement
O.M., J.K., and T.M. received a research grant from JSPS KAKENHI. J.K. is a shareholder (unlisted) and an advisor of Trunk Solution Co. Ltd., and received rental experimental equipment from Inter Reha Co. Ltd., which was not used in this study.
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References
-
- Virani SS, Alonso A, Benjamin EJ, Bittencourt MS. American heart association council on epidemiology and prevention statistics committee and stroke statistics subcommittee. Heart Dis. Stroke. 2020;141:e139–e596. - PubMed
-
- Bohannon RW, Andrews AW, Smith MB. Rehabilitation goals of patients with hemiplegia. Int. J. Rehabil. Res. 1988;11:181. doi: 10.1097/00004356-198806000-00012. - DOI
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