Elsevier

Neuroscience Letters

Volume 75, Issue 1, 20 March 1987, Pages 101-106
Neuroscience Letters

Different sites of action of electrical and magnetic stimulation of the human brain

https://doi.org/10.1016/0304-3940(87)90083-8Get rights and content

Abstract

The latency of the surface recorded electromyographic response to either an electrical or magnetic stimulus applied to the scalp has been measured in the first dorsal interosseous and abductor pollicis brevis muscles of 3 subjects. In the contracting muscle the response latency to the magnetic stimulus was longer by 1.4–2.7 ms compared to the electrical stimulus. Poststimulus time histograms of the firing of single motor units of first dorsal interosseous muscle were studied in 4 subjects. The first period of increased probability of firing of the single motor units showed a similar latency difference (mean 2.8 ms) to the two modes of stimulation. It is concluded that the extra delay to magnetic stimulation is consumed in central motor pathways. This implies that the two modes of stimulation activate the brain at different sites. It is suggested that the magnetic stimulus excites the corticospinal neurones transynaptically, whereas the electrical stimulus excites these neurones directly.

References (14)

  • A.T. Barker et al.

    Non-invasive magnetic stimulation of the human cortex

    Lancet

    (1985)
  • J.M.A. Cowan et al.

    Abnormalities in central motor pathway conduction in multiple sclerosis

    Lancet

    (1984)
  • P. Ashby et al.

    Relationship between EPSP shape and cross-correlation profile explored by computer simulation for studies on human motoneurones

    Exp. Brain Res.

    (1982)
  • S.G. Boyd et al.

    A method of monitoring function in corticospinal pathways during scoliosis surgery with a note on motor conduction velocities

    J. Neurol. Neurosurg. Psychiatr.

    (1986)
  • J.M.A. Cowan et al.

    The effects of purcutaneous motor cortex stimulation on H-reflexes in muscles of the arm and leg in intact man

    J. Physiol. (London)

    (1986)
  • Day, B.L., Rothwell, J.C., Thompson, P.D., Dick, J.P.R., Cowan, J.M.A., Berardelli, A. and Marsden, C.D., Motor cortex...
  • J.P.R. Dick et al.

    The corticomotoneurone connection is normal in Parkinson's disease

    Nature (London)

    (1984)
There are more references available in the full text version of this article.

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