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September 27, 2025Biosensors2 citationsOpen Access

Quasi-Static and Dynamic Measurement Capabilities Provided by an Electromagnetic Field-Based Sensory Glove

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GSGiovanni SaggioLPLuca PietrosantiILI‐Jung Lee

Key Points

  • The study evaluates the measurement capabilities of a sensory glove using electromagnetic fields.
  • Performance metrics include repeatability, reproducibility, and reliability during hand motor tests.
  • The glove adapts to various domains like medical, robotics, and virtual reality for hand dexterity tracking.
  • Investigations reveal that different technologies are required for diverse applications in hand motor skills assessment.

Abstract

The sensory glove (also known as data or instrumented glove) plays a key role in measuring and tracking hand dexterity. It has been adopted in a variety of different domains, including medical, robotics, virtual reality, and human–computer interaction, to assess hand motor skills and to improve control accuracy. However, no particular technology has been established as the most suitable for all domains, so that different sensory gloves have been developed, adopting different sensors mainly based on optic, electric, magnetic, or mechanical properties. This work investigates the performances of the MANUS Quantum sensory glove that sources an electromagnetic field and measures its changing value at the fingertips during fingers’ flexion. Its performance is determined in terms of measurement repeatability, reproducibility, and reliability during both quasi-static and dynamic hand motor tests.

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Cite This Study

Saggio et al. (2025) studied this question.

synapsesocial.com/papers/68d7b3e2eebfec0fc5236cc9https://doi.org/10.3390/bios15100640
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