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  4. Sensing clove for brain studies: Design and assessment of its compatibility for fMRI with a robust test
 
research article

Sensing clove for brain studies: Design and assessment of its compatibility for fMRI with a robust test

Vanello, Nicola
•
Hartwig, Valentina
•
Tesconi, Mario
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2008
Ieee-Asme Transactions On Mechatronics

In this paper, we describe a biomimetic-fabric-based sensing glove that can be used to monitor hand posture and gesture. Our device is made of a distributed sensor network of piezoresistive conductive elastomers integrated into an elastic fabric. This solution does not affect natural movement and hand gestures, and can be worn for a long time with no discomfort. The glove could be fruitfully employed in behavioral and functional studies with functional MRI (fMRI) during specific tactile or motor tasks. To assess MR compatibility of the system, a statistical test on phantoms is introduced. This test can also be used for testing the compatibility of mechatronic devices designed to produce different stimuli inside the MR environment. We propose a statistical test to evaluate changes in SNR and time-domain standard deviations between image sequences acquired under different experimental conditions. fMRI experiments on subjects wearing the glove are reported. The reproducibility of fMRI results obtained with and without the glove was estimated. A good similarity between the activated regions was found in the two conditions.

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Type
research article
DOI
10.1109/TMECH.2008.924115
Web of Science ID

WOS:000256966700010

Author(s)
Vanello, Nicola
Hartwig, Valentina
Tesconi, Mario
Ricciardi, Erniliano
Tognetti, Alessandro
Zupone, Giuseppe
Gassert, Roger  
Chapuis, Dominique  
Sgambelluri, Nicola
Scilingo, Enzo P.
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Date Issued

2008

Publisher

Institute of Electrical and Electronics Engineers

Published in
Ieee-Asme Transactions On Mechatronics
Volume

13

Start page

345

End page

354

Subjects

brain activity exploration

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fabric sensing glove

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MRI compatibility

•

piezoresistive elastomers

•

statistical test

•

Mr

•

Activation

•

Force

•

System

•

Reproducibility

•

Movements

•

Devices

•

Cortex

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LSRO  
Available on Infoscience
November 30, 2010
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/61304
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