Abstract

Pinching motions are important for holding and retaining objects with precision. Therefore, training exercises for the thumb and index finger are extremely important in the field of hand rehabilitation. Considering the need for training convenience, we developed a device and a driving system to assist pinching motions actively via a lightweight, simple, and wireless mechanism driven by the magnetic forces and torques generated by magnets attached to the tip of these two fingers. This device provides accurate pinching motions through the linking structures connecting the two magnets. The fabricated device has minimal mechanical elements with an ultralightweight of 57.2 g. The magnetic field, the intensity of which is based on the time variant, generates a pinching motion between the thumb and index finger, thus rendering it possible to achieve repetitive training. To verify the generation of an active pinching motion, we fabricated a finger model using a 3D printer and a rubber sheet and observed the active motions generated by the newly developed device. We also verified the performance of the proposed mechanism and driving method via various experiments and magnetic simulations. The proposed mechanism represents an important breakthrough for patients requiring hand rehabilitation and wearable assistive motion devices.

Highlights

  • We fabricated a passive robotic finger and applied the developed device to verify that the pinch motion was actively generated by magnetic actuation

  • The robotic fingers mimic the structures of the human thumb and index finger

  • We presented a newly developed device and a proposed driving method to generate pinch motions using magnetic actuation

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Summary

Introduction

Publisher’s Note: MDPI stays neutral with regard to jurisdictional claims in published maps and institutional affiliations. Hand function and usability play an important role in determining the quality of human life. Hand injuries and the inability to use one’s hand because of a stroke are rapidly increasing [1]. To restore hand functions, post-stroke care and recovery are very important [2,3,4]. Post-stroke care can be administered in the form of rehabilitation. Various devices and methods have been studied for hand rehabilitation purposes

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