PubMed Health⌕ Search

PubMed · 8577077

Quantitative analysis of electromyogram interference pattern in extraocular muscle.

Abstract

Turns and amplitude analysis of the electromyogram (EMG) interference pattern has been applied to the extraocular muscles for the first time in the literature, to the best of our knowledge. EMGs of 261 horizontal rectus muscles recorded during the past 18 years were retrospectively examined and divided into four categories according to the clinical diagnosis: 56 complete palsy due to neuropathy, 67 incomplete palsy due to neuropathy, 19 myopathy, and 119 normal. The number of turns per second and mean amplitude between a pair of successive turns were automatically calculated by computer. Significant differences (P < 0.05) were encountered in all data among the four clinical categories except for the number of turns between myopathy and normal. The number of turns was plotted against the amplitude in each muscle on an X-Y diagram. The data of completely paretic muscle showed less number of turns and smaller amplitude and were clearly distinguishable from the data of the other three categories on the X-Y diagram. The interference pattern of incomplete palsy and myopathy had smaller amplitude than that of normal muscle. However, most of the data overlapped on the X-Y diagram particularly between data of incomplete neuropathy and myopathy.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

T Hayashi, H Iwashige, T Maruo. 1995. Quantitative analysis of electromyogram interference pattern in extraocular muscle.. https://pubmed.ncbi.nlm.nih.gov/8577077/

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Modulation operated by the sympathetic nervous system on jaw reflexes and masticatory movement.

The sympathetic nervous system (SNS), that is activated under condition of physical, psychological and psychosocial stress, affects force production and fatigability of muscles by controlling both muscle blood flow and the intracellular contractile mechanism. In addition SNS may affect motor function by modulating afferent activity from muscle spindles that are highly concentrated in jaw-closing muscles. Possible implications of these actions on masticatory function and myofascial pain are discussed.

Electromyography↗

Abnormal responses to repetitive transcranial magnetic stimulation in multiple system atrophy.

We studied the response of the motor cortex to brief trains of suprathreshold repetitive transcranial magnetic stimulations (rTMS) in patients with the Parkinson-variant of multiple system atrophy (MSA-P) and compared it to patients with idiopathic Parkinson's disease (PD) and healthy controls. Eight subjects were studied in each group, and patients were matched for disease severity as assessed by Hoehn & Yahr stages. rTMS was delivered at rest and during low-level contractions in trains of 10 stimulations at 5 Hz, and stimulation intensity was set to result in an motor evoked potential (MEP) in the first dorsal interosseus muscle of 0.5 to 1.0 mV. In MSA-P, MEP amplitude at rest was already reduced after the second stimulus and remained so, while it did not change in PD and controls. During contraction, MEP size did not change during the train in any group. The silent period that followed the last stimulus was of similar duration as the first stimulus in MSA-P, but was increased in PD and controls. These findings indicate that abnormal inhibition occurs within the motor cortex in MSA-P, despite dopaminergic treatment and indicate differences in cortical dysfunction between MSA-P and PD. We suggest that these abnormalities reflect the motor cortex pathology found in MSA-P.

Electromyography↗