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首页> 外文期刊>Gait & posture >Analysis of pressure distribution below the metatarsals with different insoles in combat boots of the German Army for prevention of march fractures.
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Analysis of pressure distribution below the metatarsals with different insoles in combat boots of the German Army for prevention of march fractures.

机译:分析德国陆军作战靴中不同鞋垫的meta骨下方的压力分布,以防止行军骨折。

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AIM: The aim of the present study was the assessment of metatarsal head loading in combat boots of the German armed forces. With respect to the prevention of metatarsal stress fractures, we evaluated how cushioning insoles (made of EVA foam or neoprene) achieved a load reduction in comparison with conventional insoles. MATERIAL AND METHODS: Local pressure, force and impulse values were determined with the pedar-m expert in-shoe pressure measurement system applied in 26 volunteers during walking with four different insoles made of synthetic mesh, EVA foam and neoprene. Data analysis was performed with SAS and tested for statistical differences with non-parametric tests (with p<0.05 as a significance level). RESULTS: For the peak pressures under the metatarsal heads (MT) the following order was found: MT-II>MT-III>MT-I>MT-IV>MT-V. A comparison of the insoles indicated that the neoprene insole resulted in the lowest peak pressures with significant load reductions under MT-III to MT-V (p<0.00001). Furthermore, the impulse values under MT-II to MT-V were significantly lower with neoprene insoles (p<0.0002). However, the subjects rated the conventional insoles as more comfortable and better fitting than the newly developed insoles. DISCUSSION/CONCLUSION: The cushioning insoles were superior to the conventional insoles with respect to the plantar pressure distribution. With respect to the load reduction we can conclude that the modified insoles might be able to reduce the incidence of march fractures. The biomechanical advantage does not appear to be related to personal preferences.
机译:目的:本研究的目的是评估德国武装部队作战靴中meta骨头的负荷。关于the骨应力性骨折的预防,我们评估了与传统鞋垫相比,缓震鞋垫(由EVA泡沫或氯丁橡胶制成)如何减少了负荷。材料和方法:用4种不同的合成网眼鞋垫,EVA泡沫和氯丁橡胶制成的pedar-m专家鞋内压力测量系统在行走过程中使用的pedar-m专家鞋内压力测量系统确定了局部压力,力和脉冲值。使用SAS进行数据分析,并使用非参数测试(p <0.05为显着性水平)测试其统计差异。结果:对于the骨头下方的峰值压力,发现以下顺序:MT-II> MT-III> MT-I> MT-IV> MT-V。鞋垫的比较表明,氯丁橡胶鞋垫导致最低的峰值压力,并且在MT-III到MT-V的情况下负荷显着降低(p <0.00001)。此外,使用氯丁橡胶鞋垫时,MT-II到MT-V的冲动值明显更低(p <0.0002)。然而,受试者将常规鞋垫评为比新开发的鞋垫更舒适和更合脚。讨论/结论:就脚底压力分布而言,缓冲鞋垫优于常规鞋垫。关于减少负荷,我们可以得出结论,改良的鞋垫可能能够减少行军骨折的发生率。生物力学优势似乎与个人喜好无关。

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