Abstract
AbstractAfter stroke, hemiplegic individuals have difficulty opening their hands by themselves due to paralysis. A finger extensor facilitation technique was therefore developed to increase the activity of the extensor muscle in hemiplegic individuals who cannot open their paralyzed hands by themselves. In our previous study, we created a training device prototype called the “PARKO”, that imitates the finger extensor facilitation technique; however, the activity of the extensor muscle using the device was much smaller than that of the finger extensor facilitation technique. In this study, we developed a new finger extensor facilitation training device, the “iPARKO”, to increase the activity of the extensor muscle during active training. We thus improved the structure of the PARKO device—including a modified method to apply force to the fingertips—and attached force sensors to the device to monitor these forces. To verify the effectiveness of the iPARKO device, we conducted active training using the device in healthy individuals. Comparing the results of the muscle activities between the PARKO and iPARKO devices among three healthy participants demonstrated that the iPARKO device increased the mean activity of the extensor muscle by 43.8%. Furthermore, the activity of the extensor muscle in two healthy individuals while moving the hand forward with the iPARKO device was 84% and 96% of the maximal voluntary contraction during the hand-opening motion without the iPARKO device.
Funder
Japan Society for the Promotion of Science
Publisher
Springer Science and Business Media LLC
Subject
Artificial Intelligence,Control and Optimization,Mechanical Engineering,Instrumentation,Modeling and Simulation
Cited by
1 articles.
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1. 手指伸筋促通トレーニングデバイスiPARKOの手指伸展の即時効果検証;IEEJ Transactions on Electronics, Information and Systems;2023-12-01