Literature DB >> 1282454

Early and late lower limb motor evoked potentials elicited by transcranial magnetic motor cortex stimulation.

M R Dimitrijević1, M Kofler, W B McKay, A M Sherwood, C Van der Linden, M A Lissens.   

Abstract

Transcranial magnetic motor cortex stimulation can elicit a series of responses recorded with different latencies from relaxed muscles of the lower limbs. In 7 healthy subjects, ranging in age from 16 to 62 years, stimulation was delivered by a 9 cm coil centered over Cz with the subject in the supine position. Surface polyelectromyography was used to record motor evoked potentials (MEPs) from the quadriceps (QD), hamstrings (HS), tibialis anterior (TA) and triceps surae (TS) muscles bilaterally. Three characteristic responses were identified in each muscle group on the basis of amplitude and latency criteria, identified by latencies: the direct oligosynaptic response MEP30 appeared with a latency of 24.3 msec in the QD, 26.3 msec in the HS, 30.5 msec in the TA and 31.3 msec in the TS; MEP70 with latencies of 64 msec in the QD, 59 msec in the HS, 79 msec in the TA and 72 msec in the TS; MEP120 with latencies of 115 msec in the QD, 126 msec in the HS, 117 msec in the TA and 124 msec in the TS. These 3 responses have distinct latencies, amplitudes and durations. MEP70 appears to be the result of activation of long descending tracts which end on spinal interneuronal circuits. As MEP120 has different features, it may have a different mechanism.

Mesh:

Year:  1992        PMID: 1282454     DOI: 10.1016/0168-5597(92)90049-h

Source DB:  PubMed          Journal:  Electroencephalogr Clin Neurophysiol        ISSN: 0013-4694


  10 in total

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2.  Neurophysiological examination of the corticospinal system and voluntary motor control in motor-incomplete human spinal cord injury.

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Authors:  J P Lewko; D S Stokić; I M Tarkka
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5.  Cortical control of human soleus muscle during volitional and postural activities studied using focal magnetic stimulation.

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6.  Modulation of the soleus H reflex by electrical subcortical stimuli in humans.

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7.  Altering spinal cord excitability enables voluntary movements after chronic complete paralysis in humans.

Authors:  Claudia A Angeli; V Reggie Edgerton; Yury P Gerasimenko; Susan J Harkema
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8.  Distinct patterns of spasticity and corticospinal connectivity following complete spinal cord injury.

Authors:  Sina Sangari; Steven Kirshblum; James D Guest; Martin Oudega; Monica A Perez
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9.  Effects of Lumbosacral Spinal Cord Epidural Stimulation for Standing after Chronic Complete Paralysis in Humans.

Authors:  Enrico Rejc; Claudia Angeli; Susan Harkema
Journal:  PLoS One       Date:  2015-07-24       Impact factor: 3.240

10.  Using transcranial magnetic stimulation to map the cortical representation of lower-limb muscles.

Authors:  Jennifer L Davies
Journal:  Clin Neurophysiol Pract       Date:  2020-04-29
  10 in total

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