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Comparison of plantar pressure distribution patterns between foot orthoses provided by the CAD-CAM and foam impression methods.

机译:比较由CAD-CAM和泡沫压印方法提供的足部矫形器之间的足底压力分布模式。

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摘要

Foot orthotic treatment is one of the major conservative methods used to handle foot problems. Total plantar contact foot orthoses are used to reduce and redistribute peak pressures. For the fabrication of a total plantar contact foot orthosis, the computer-aided design and computer-aided manufacturing (CAD-CAM) method has been applied. In this study, the plantar foot-orthosis interface pressure data during walking were collected by the Novel Pedar-mobile in-shoe plantar pressure measuring system. The data were collected under three conditions: (i) Flat insole, (ii) foot orthosis provided by the CAD-CAM method, and (iii) foot orthosis provided by the foam impression method. The Swiss Comfort CAD-CAM foot orthotics system was used in this study. For conditions (ii) and (iii), foot shapes were collected in partial weight bearing and subtalar neutral conditions. Thirty normal subjects were recruited for this study. The plantar foot surface was divided into eight plantar foot regions and then was investigated. These regions included the heel, the medial and lateral arches, the medial, mid and lateral forefoot, the hallux, and the lateral toes. The results showed that the orthoses provided by both the CAD-CAM and foam impression methods could decrease the peak pressure and the maximum force in the heel region, and increase the peak pressure and the maximum force in the medial arch region. Both orthoses redistributed the peak pressure and the maximum force from the heel to the medial arch region. The peak pressure in the mid forefoot region was different between the orthoses provided by the CAD-CAM and foam impression methods.
机译:足部矫形器治疗是用于治疗足部问题的主要保守方法之一。足底全接触足矫形器可用于降低和重新分配峰值压力。为了制造整个足底接触足矫形器,已经应用了计算机辅助设计和计算机辅助制造(CAD-CAM)方法。在这项研究中,步行期间的脚底足矫形器界面压力数据是通过新型Pedar-mobile鞋内脚底压力测量系统收集的。在三个条件下收集数据:(i)平坦的鞋垫,(ii)通过CAD-CAM方法提供的足部矫形器,和(iii)通过泡沫压印方法提供的足部矫形器。本研究使用Swiss Comfort CAD-CAM足部矫形系统。对于条件(ii)和(iii),在部分负重和距下中性条件下收集脚的形状。招募了三十名正常受试者用于该研究。将足底表面分为八个足底区域,然后进行调查。这些区域包括脚后跟,内侧和外侧弓,内侧,前脚掌和外侧,拇趾和外侧脚趾。结果表明,CAD-CAM和泡沫压印方法所提供的矫形器均可以降低足跟区域的峰值压力和最大力,并增加足弓内侧区域的峰值压力和最大力。两个矫形器都将峰值压力和最大力从脚跟重新分配到内侧足弓区域。在前脚掌区域的峰值压力在CAD-CAM和泡沫压印方法提供的矫形器之间是不同的。

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