Ji Young Lee, Hyeon Woo Ryoo, So Young Ahn, Soo-Kyung Bok
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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).</p><p><strong>Results: </strong>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.</p><p><strong>Conclusion: </strong>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.</p>","PeriodicalId":47738,"journal":{"name":"Annals of Rehabilitation Medicine-ARM","volume":"46 6","pages":"312-319"},"PeriodicalIF":2.1000,"publicationDate":"2022-12-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://ftp.ncbi.nlm.nih.gov/pub/pmc/oa_pdf/69/9b/arm-22118.PMC9810653.pdf","citationCount":"0","resultStr":"{\"title\":\"Can a Biomechanical Foot Orthosis Affect Gait in Patients With Hallux Valgus? 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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).</p><p><strong>Results: </strong>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. 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引用次数: 0
摘要
目的:探讨定制足部生物力学矫形器(BFO)对拇外翻(HV)畸形患者步态运动数据的影响,并与正常对照组进行比较。方法:选取10例HV畸形患者和10名健康志愿者进行研究。康复医生通过生物力学和放射学评估诊断出HV畸形。患者接受了由一位经验丰富的技术人员根据严格定义的程序在商业矫形器实验室(Biomechanics, Goyang, South Korea)生产的定制BFO。将Vicon 3D运动捕捉系统(Oxford Metrics, Oxford, UK)获取的时空和运动学数据在干预组(对照组与不矫形器的HV组)和HV组(有矫形器与不矫形器)之间进行比较。结果:HV组的时空和运动学参数与对照组有显著差异。将BFO应用于HV组后,观察到足底屈曲运动和后足内翻范围明显增加。此外,HV组与BFO组的步态节奏、步行速度和步幅均有所改善,但结果无统计学意义。结论:我们的研究结果表明,了解HV的病理生理是必要的,定制BFO的应用有助于改善HV畸形的运动学。
Can a Biomechanical Foot Orthosis Affect Gait in Patients With Hallux Valgus? A Pilot Study.
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.