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APPROXIMATE MULTI-OBJECTIVE OPTIMIZATION OF MEDICAL FOOT SUPPORT

机译:医用脚支撑的近似多目标优化

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Splayfoot seems not serious diseases. However, it cause fatigue in the daily life. It makes breakthrough in track athletic and many other fields in sports. In that sense, if we can solve these problems it might support daily life much comfortable especially for elder people. To support splayfoot, there are some commercial ones. But they just add small amount of support and not made up for each person. Besides, when the height of support is not suitable for patients, it sometimes make situation worse. We have tried it and measured by using myoelectric potential measurement, and see differences of three patients. Even if we use the same commercial support its effectiveness differs to each other and sometimes it make worse. Physical therapists make foot support for each patient but they make them owing to their experience. There are studies on the positions of bone of foot and its portrait of the desired positions has been reported by medical doctors. One of them is called Mizuno[1973] standard. In this study, we tried to design foot support aiming to make portrait of this standard. For that purpose, we use approximate multi-objective optimization using Radial Basis Function network. First, we make some support and try to find characteristic points of spline function. These processes have been measured by X-ray and calculated portraits for each X-ray digital image. Then, we have gone through multi-objective optimization and design a foot support for one patient and made it by hard sponge. We measured it by X-ray again to make sure that the portrait has been done in acceptable position. For validation, we use electromyography again. As a result the foot support by the proposed method shows the maximum reduction in integral of myoelastic. This shows the effectiveness of the proposed method.
机译:play足似乎不是严重的疾病。但是,它会导致日常生活中的疲劳。它在田径运动和其他许多领域取得了突破。从这个意义上讲,如果我们能够解决这些问题,它将为人们的日常生活提供极大的舒适感,尤其是对于老年人而言。为了支持调教脚,有一些商业用脚。但是他们只是增加了少量支持,并没有弥补每个人的不足。此外,当支撑高度不适合患者时,有时会使情况变得更糟。我们已经尝试过,并通过肌电势测量进行了测量,并观察了三名患者的差异。即使我们使用相同的商业支持,其有效性也会彼此不同,有时甚至会变得更糟。物理治疗师会为每位患者提供脚部支撑,但他们会根据自己的经验进行支撑。医生已经报告了关于脚的骨骼位置及其所需位置的画像的研究。其中之一被称为Mizuno [1973]标准。在本研究中,我们试图设计脚支撑以使该标准成为标准。为此,我们使用基于径向基函数网络的近似多目标优化。首先,我们提供一些支持,并尝试找到样条函数的特征点。这些过程已通过X射线进行了测量,并为每个X射线数字图像计算了肖像。然后,我们经历了多目标优化,并为一个患者设计了脚支撑,并用硬海绵将其制成。我们再次通过X射线对其进行了测量,以确保肖像已在可接受的位置完成。为了验证,我们再次使用肌电图。结果,所提出的方法的脚支撑显示出肌弹性积分的最大降低。这表明了所提出方法的有效性。

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