4.5 Article

An MRI-compatible hand sensory vibrotactile system

Journal

PHYSIOLOGICAL MEASUREMENT
Volume 36, Issue 1, Pages N15-N21

Publisher

IOP PUBLISHING LTD
DOI: 10.1088/0967-3334/36/1/N15

Keywords

stochastic resonance; vibrotactile; piezoelectric; MRI; vibrator

Funding

  1. University of Wisconsin-Madison/University of Wisconsin-Milwaukee Intercampus Research Incentive Grants Program
  2. National Center for Advancing Translational Sciences, National Institutes of Health [8UL1TR000055]

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Recently, the application of vibrotactile noise to the wrist or back of the hand has been shown to enhance fingertip tactile sensory perception (Enders et al 2013), supporting the potential for an assistive device worn at the wrist, that generates minute vibrations to help the elderly or patients with sensory deficit. However, knowledge regarding the detailed physiological mechanism behind this sensory improvement in the central nervous system, especially in the human brain, is limited, hindering progress in development and use of such assistive devices. To enable investigation of the impact of vibrotactile noise on sensorimotor brain activity in humans, a magnetic resonance imaging (MRI)-compatible vibrotactile system was developed to provide vibrotactile noise during an MRI of the brain. The vibrotactile system utilizes a remote (outside the MR room) signal amplifier which provides a voltage from -40 to +40 V to drive a 12 mm diameter piezoelectric vibrator (inside the MR room). It is portable and is found to be MRI-compatible which enables its use for neurologic investigation with MRI. The system was also found to induce an improvement in fingertip tactile sensation, consistent with the previous study.

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