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Wearable exoskeleton foot pressure detection system has great significance for human motion information detection and gait recognition. In this paper, the use of resistive pressure sensor to make up for the existing lower extremity exoskeleton pressure sensor input and output non-linear error, which can't accurately detect the lack of plantar pressure changes, through the theoretical calculation to...
The aim of this study was to assess the repeatability of the EMED®-A and identify the repeatability of data for different types of measurements (walking without load, walking with load, standing without load, and standing with load). Each load weighing 1.5 kg must be hold at left and right hands. Contact area (CA), maximum force (F), peak pressure (PP) were calculated. In addition, coefficient of...
Balance checking is the method used to measure plantar pressure distribution in two ways, static and dynamic. In static mode, the patient is asked to stand still on the platform with optical sensors for ten seconds. The results show that the centroids of the feet of those who are capable of keeping good balance hardly disperse compare to those who are not. In dynamic mode, the patient keeps on stepping...
The aim of this investigation is to design and construct a demonstrative prototype of a low cost foot planter-pressure scanner that can assess health care providers in diagnosing and monitoring patients who are suffering from foot disorders. The prototype will be designed from a matrix of force sensitive sensors that measure the spread of forces on the plantar surface of the foot. Suitable Graphical...
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