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Current Neurovascular Research

Editor-in-Chief

ISSN (Print): 1567-2026
ISSN (Online): 1875-5739

Research Article

Observation of the Therapeutic Effect of Correcting Foot Varus on Improving Knee Hyperextension and Gait in Patients After Stroke

Author(s): Hui-Xian Yu *

Volume 18, Issue 3, 2021

Published on: 23 September, 2021

Page: [314 - 317] Pages: 4

DOI: 10.2174/1567202618666210923150711

Price: $65

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Abstract

Objective: The present study aimed to observe the therapeutic effect of elastic bandages on improving knee hyperextension in patients with stroke after correcting the foot varus.

Methods: A total of 45 patients with stroke admitted to the hospital from January to August 2019 were enrolled in the present prospective study. Elastic bandages were used to fix the affected foot in a mild valgus position. Before and after the intervention, the Noitom walking function evaluation system was adopted, and the Timed Up and Go (TUG) test and the 10-meter walking test were conducted. The gait speed, stride length, knee angle, and the number of knee hyperextensions >5° were selected as the results. The weight-bearing time of the affected leg was evaluated, and the changes in the control ability of the affected limb before and after the intervention were compared.

Results: It was found that compared with before treatment, the time of knee hyperextension was significantly reduced after fixation with the elastic bandage, and the knee extension angle was significantly reduced (p < 0.05). After the treatment, the gait speed was significantly higher than before the treatment (p < 0.05), but there was no statistically significant difference in the stride length (p > 0.05). After the treatment, the time in the TUG test was significantly shorter than before the treatment (p < 0.05), together with an obvious increase in the weight-bearing time of the affected leg (p < 0.05).

Conclusion: Correcting foot varus could improve the biomechanics of the lower limbs and improve the symptoms of knee hyperextension in patients with stroke, thereby improving the control ability of the affected limb and improving the walking function.

Keywords: Stroke, foot varus, knee hyperextension, motor function assessment, elastic bandage, hyperextension.

[1]
Loudon JK, Goist HL, Loudon KL. Genu recurvatum syndrome. J Orthop Sports Phys Ther 1998; 27(5): 361-7.
[http://dx.doi.org/10.2519/jospt.1998.27.5.361] [PMID: 9580896]
[2]
Chantraine F, Schreiber C, Kolanowski E, Moissenet F. Control of stroke-related genu recurvatum with prolonged timing of dorsiflexor functional electrical stimulation: A case study. J Neurol Phys Ther 2016; 40(3): 209-15.
[http://dx.doi.org/10.1097/NPT.0000000000000137] [PMID: 27164309]
[3]
Sijobert B, Azevedo C, Pontier J, Graf S, Fattal C. A sensor-based multichannel FES system to control knee joint and reduce stance phase asymmetry in post-stroke gait. Sensors (Basel) 2021; 21(6): 2134.
[http://dx.doi.org/10.3390/s21062134] [PMID: 33803705]
[4]
Tani Y, Otaka Y, Kudo M, Kurayama T, Kondo K. Prevalence of genu recurvatum during walking and associated knee pain in chronic hemiplegic stroke patients: A preliminary survey. J Stroke Cerebrovasc Dis 2016; 25(5): 1153-7.
[http://dx.doi.org/10.1016/j.jstrokecerebrovasdis.2016.01.028] [PMID: 26907679]
[5]
Klotz MC, Wolf SI, Heitzmann D, Maier MW, Braatz F, Dreher T. The association of equinus and primary genu recurvatum gait in cerebral palsy. Res Dev Disabil 2014; 35(6): 1357-63.
[http://dx.doi.org/10.1016/j.ridd.2014.03.032] [PMID: 24705489]
[6]
Higginson JS, Zajac FE, Neptune RR, Kautz SA, Delp SL. Muscle contributions to support during gait in an individual with post-stroke hemiparesis. J Biomech 2006; 39(10): 1769-77.
[http://dx.doi.org/10.1016/j.jbiomech.2005.05.032] [PMID: 16046223]
[7]
Ibuki A, Bach T, Rogers D, Bernhardt J. An investigation of the neurophysiologic effect of tone-reducing AFOs on reflex excitability in subjects with spasticity following stroke while standing. Prosthet Orthot Int 2010; 34(2): 154-65.
[http://dx.doi.org/10.3109/03093641003649405] [PMID: 20184503]
[8]
de Paula GV, da Silva TR, de Souza JT, et al. Effect of ankle-foot orthosis on functional mobility and dynamic balance of patients after stroke: Study protocol for a randomized controlled clinical trial. Medicine (Baltimore) 2019; 98(39): e17317.
[http://dx.doi.org/10.1097/MD.0000000000017317] [PMID: 31574862]
[9]
Totah D, Barton K, Gates DH. The effect of rotational speed on ankle-foot orthosis properties. J Biomech 2021; 123: 110483.
[http://dx.doi.org/10.1016/j.jbiomech.2021.110483] [PMID: 34023756]
[10]
Marietta van der Linden. Gait analysis. Normal and pathological function 2010; 97: 180-180.
[11]
Kapandji AI, Gu DY, Dai KR. Functional anatomy of bone and joint - Medium volume. People’s Military Medical Publishing House 2011; 6: 274.

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