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Adaptive multi-airbag foot pressure redistribution insole design using image-based rapid pressure measuring system

机译:基于图像的快速压力测量系统的自适应多气囊脚压力再分配鞋垫设计

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In the paper, a novel adaptive multi-airbag foot pressure redistribution insole design and manufacturing methodologies using image-based rapid pressure measuring system is proposed. The in-house made rapid foot pressure measurement system is constructed with a body weight spring scale and an image-based foot/ground contact pattern identification scanning mechanism. The basic principle of measuring system is that, when the body weight was supported by foot, the blood will be blocked into the blood capillary of sole and it will generate the different color foot/ground contact pattern owing to the difference of local contact pressure. By using scanning mechanism, the contact pattern is registered and foot pressure distribution profile can be easily calculated by using a mathematical transformation model. A two-layered insole with multiple channel air-inflated bags in the bottom layer for adjusting foot contact pressure is proposed. In this configuration, the correct contact foot pressure profile can be achieved by pumping air into each air-inflated bag when subject is standing on the insole. An adaptive multi-air-bag insole using proposed method was designed and constructed. The proposed method not only can be used for the design and manufacturing for medical therapeutic insole but also for athletic and personal insole.
机译:本文提出了一种新颖的基于图像的快速压力测量系统,用于自适应多气囊脚压力再分配鞋垫的设计和制造方法。内部制造的快速足压测量系统由体重弹簧秤和基于图​​像的脚/地面接触模式识别扫描机制构成。测量系统的基本原理是,当体重由脚支撑时,血液将被阻塞到脚底的毛细血管中,并且由于局部接触压力的不同,它将产生不同颜色的脚/地面接触图案。通过使用扫描机制,可以通过数学转换模型轻松地记录接触模式并轻松计算足底压力分布曲线。提出了一种两层的鞋垫,其在底层具有多个通道的充气袋,用于调节脚的接触压力。在这种配置中,当受试者站立在鞋垫上时,可以通过将空气泵入每个充气袋中来获得正确的接触脚压力分布。设计并构建了一种采用本文提出的方法的自适应多气囊鞋垫。所提出的方法不仅可以用于医疗鞋垫的设计和制造,而且可以用于运动鞋垫和个人鞋垫。

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