Can a Biomechanical Foot Orthosis Affect Gait in Patients With Hallux Valgus? A Pilot Study

2Citations
Citations of this article
9Readers
Mendeley users who have this article in their library.

Abstract

Objective To investigate the effects of customized biomechanical foot orthosis (BFO) on kinematic data during gait in patients with hallux valgus (HV) deformities and compare the results with those of a normal control group. Methods Ten patients with HV deformities and 10 healthy volunteers were enrolled in this study. HV deformity was diagnosed using biomechanical and radiological assessments by a rehabilitation physician. Patients received the customized BFO manufactured at a commercial orthosis laboratory (Biomechanics, Goyang, South Korea) according to the strictly defined procedure by a single experienced technician. The spatiotemporal and kinematic data acquired by the Vicon 3D motion capture system (Oxford Metrics, Oxford, UK) were compared between the intervention groups (control vs. HV without orthosis) and between the HV groups (with vs. without orthosis). Results The temporal-spatial and kinematic parameters of the HV group were significantly different from those of the control group. After applying BFO to the HV group, significantly increased ranges of plantar flexion motion and hindfoot inversion were observed. Furthermore, the HV group with BFO showed improved gait cadence, walking speed, and stride length, although the results were not statistically significant. Conclusion Our results suggest that it is imperative to understand the pathophysiology of HV, and the application of customized BFO can be useful for improving kinematics in HV deformities.

Cite

CITATION STYLE

APA

Lee, J. Y., Ryoo, H. woo, Ahn, S. Y., & Bok, S. K. (2022). Can a Biomechanical Foot Orthosis Affect Gait in Patients With Hallux Valgus? A Pilot Study. Annals of Rehabilitation Medicine, 46(6), 312–319. https://doi.org/10.5535/arm.22118

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free