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首页> 外文期刊>Gait & posture >Forefoot plantar shear stress distribution in hallux valgus patients.
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Forefoot plantar shear stress distribution in hallux valgus patients.

机译:拇外翻患者的前足底切应力分布。

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摘要

BACKGROUND: Hallux valgus is a common foot disorder often experienced with secondary callosities and metatarsalgia. Many factors including improper shoes might be responsible in the pathophysiology of the problem. Hallux valgus deformity has been shown to alter the biomechanics of the whole foot rather than affecting only the great toe. Due to changes in the biomechanical functioning of the first ray, other regions of the forefoot area have been shown to bear abnormal loads with increased vertical loading on medial, central and lateral forefoot regions. The purpose of this study was to investigate the pattern of forefoot plantar shear loading in hallux valgus patients and compare these results with those of control subjects. METHODS: A total of 28 subjects were recruited for the study of which 14 were clinically diagnosed with hallux valgus. A custom built platform was used to collect peak pressure and shear data. A repeated measures analysis of variance was used to analyze the recorded data. FINDINGS: Antero-posterior shear was significantly lower in the deformity group (p<0.05). The lateral forefeet of the patients, however, experienced slightly higher shear loads (p>0.05). INTERPRETATION: Propulsive shear force generation mechanism under the medial forefoot was impaired in the disorder group. In general, shear loading of the plantar feet shifted laterally. Previously hypothesized higher medio-lateral shear magnitudes under the hallux were not confirmed.
机译:背景:拇外翻是常见的足部疾病,常伴有继发性骨call和meta骨痛。包括鞋子不合适在内的许多因素可能是问题的病理生理原因。拇外翻畸形已显示出可改变整个脚的生物力学,而不是仅影响大脚趾。由于第一射线的生物力学功能的变化,已显示前脚掌区域的其他区域承受了异常负荷,同时前,内侧和外侧前足区域的垂直负荷增加。这项研究的目的是调查拇趾外翻患者前足底足的剪切负荷模式,并将这些结果与对照对象进行比较。方法:共招募了28名受试者进行研究,其中14名被临床诊断为拇外翻。使用定制平台来收集峰值压力和剪切数据。重复测量方差分析用于分析记录的数据。结果发现,畸形组的前后切应力明显降低(p <0.05)。然而,患者的前额承受了较高的剪切负荷(p> 0.05)。解释:在疾病组中,前足内侧下的剪切力产生机制被削弱。通常,脚底脚的剪切负荷横向移动。先前假设的拇指下中外侧切变幅度较高尚未得到证实。

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