Literature DB >> 12972436

A thin, flexible multielectrode grid for high-density surface EMG.

B G Lapatki1, J P Van Dijk, I E Jonas, M J Zwarts, D F Stegeman.   

Abstract

Although the value of high-density surface electromyography (sEMG) has already been proven in fundamental research and for specific diagnostic questions, there is as yet no broad clinical application. This is partly due to limitations of construction principles and application techniques of conventional electrode array systems. We developed a thin, highly flexible, two-dimensional multielectrode sEMG grid, which is manufactured by using flexprint techniques. The material used as electrode carrier (Polyimid, 50 microm thick) allows grids to be cut out in any required shape or size. One universal grid version can therefore be used for many applications, thereby reducing costs. The reusable electrode grid is attached to the skin by using specially prepared double-sided adhesive tape, which allows the selective application of conductive cream only directly below the detection surfaces. To explore the practical possibilities, this technique was applied in single motor unit analysis of the facial musculature. The high mechanical flexibility allowed the electrode grid to follow the skin surface even in areas with very uneven contours, resulting in good electrical connections in the whole recording area. The silverchloride surfaces of the electrodes and their low electrode-to-skin impedances guaranteed high baseline stability and a low signal noise level. The electrode-to-skin attachment proved to withstand saliva and great tensile forces due to mimic contractions. The inexpensive, universally adaptable and minimally obstructive sensor allows the principal advantages of high-density sEMG to be extended to all skeletal muscles accessible from the skin surface and may lay the foundation for more broad clinical application of this noninvasive, two-dimensional sEMG technique.

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Mesh:

Year:  2003        PMID: 12972436     DOI: 10.1152/japplphysiol.00521.2003

Source DB:  PubMed          Journal:  J Appl Physiol (1985)        ISSN: 0161-7567


  31 in total

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Journal:  Med Biol Eng Comput       Date:  2004-11       Impact factor: 2.602

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Authors:  J P Weir; T W Beck; J T Cramer; T J Housh
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3.  Distinguishing intrinsic from extrinsic factors underlying firing rate saturation in human motor units.

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4.  A new and fast approach towards sEMG decomposition.

Authors:  Ivan Gligorijević; Johannes P van Dijk; Bogdan Mijović; Sabine Van Huffel; Joleen H Blok; Maarten De Vos
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5.  A clinically applicable approach for detecting spontaneous action potential spikes in amyotrophic lateral sclerosis with a linear electrode array.

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6.  Inhibition linearizes firing rate responses in human motor units: implications for the role of persistent inward currents.

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7.  Identification of the most significant electrode positions in electromyographic evaluation of swallowing-related movements in humans.

Authors:  E Zaretsky; P Pluschinski; R Sader; P Birkholz; C Neuschaefer-Rube; Christiane Hey
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8.  Variability in spatio-temporal pattern of trapezius activity and coordination of hand-arm muscles during a sustained repetitive dynamic task.

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9.  Electrophysiological method to examine muscle fiber architecture in the upper lip in cleft-lip patients.

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Review 10.  Assessment of Motor Units in Neuromuscular Disease.

Authors:  Robert D Henderson; Pamela A McCombe
Journal:  Neurotherapeutics       Date:  2017-01       Impact factor: 7.620

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