A dedicated microcomputer-based instrument for interval analysis of multicomponent wave forms in single fibre EMG

We have developed a self-contained microprocessor-based instrument compatible with conventional EMG equipment for the analysis of multicomponent SFEMG wave forms suitable for single operator use. Intervals between 4 components of a MUAP can be analysed using 3 types of threshold or window triggers....

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Veröffentlicht in:Electroencephalography and clinical neurophysiology 1983-01, Vol.56 (1), p.110-113
Hauptverfasser: Davis, G.R., Brown, I.T., Schwartz, M.S., Swash, M.
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container_end_page 113
container_issue 1
container_start_page 110
container_title Electroencephalography and clinical neurophysiology
container_volume 56
creator Davis, G.R.
Brown, I.T.
Schwartz, M.S.
Swash, M.
description We have developed a self-contained microprocessor-based instrument compatible with conventional EMG equipment for the analysis of multicomponent SFEMG wave forms suitable for single operator use. Intervals between 4 components of a MUAP can be analysed using 3 types of threshold or window triggers. The amplitude, duration and polarity of each of these triggers can be varied independently. The instrument is portable and useful in the clinical setting. Nous présentons un instrument basé sur microprocesseurs, compatible avec un équipement d'EMG conventionnel, permettant l'analyse, par un seul opérateur, des composantes multiples dans l'enregistrement de fibres isolées musculaires. On peut ainsi étudier, grâce à 3 fenêtres à 3 seuils différents, les intervalles entre 4 composantes distinctes dans un enregistrement EMG multiunitaire. On peut commander indépendamment l'amplitude, la durée et la polarité de chacun de ces dispositifs à seuil. L'instrument est portable et utile en installation clinique.
doi_str_mv 10.1016/0013-4694(83)90013-5
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subjects Computers
Electromyography - instrumentation
Humans
Microcomputers
Neuromuscular Junction - physiology
title A dedicated microcomputer-based instrument for interval analysis of multicomponent wave forms in single fibre EMG
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