A comparison of magnetic and electrical stimulation of peripheral nerves
- 13 October 1990
- journal article
- research article
- Published by Wiley in Muscle & Nerve
- Vol. 13 (10), 957-963
- https://doi.org/10.1002/mus.880131012
Abstract
We compared magnetic stimulation using different coil designs (2 rounded coils and a butterfly‐prototype coil) with electrical stimulation of the median and ulnar nerves in 5 normal subjects. Using magnetic stimulation we were able to record technically satisfactory maximal sensory and motor responses only with butterfly coil. Submaximal electrical stimuli preferentially activated sensory rather than motor axons, but submaximal magnetic stimuli did not. The onset latency, amplitude, are and duration of responses elicited electrically or magnetically with the butterfly coil during routine sensory and motor nerve conduction studies were similar, and motor and sensory conduction velocities were comparable when studied over long segments of nerve. However, the motor conduction velocities with magnetic and electrical stimulation differed by as much as 18 m/sec in the across‐elbow segment of ulnar nerve. Thus, recent developments in magnetic stimulator design have improved the focality of the stimulus, but the present butterfly coil design cannot replace electrical stimulation for the detection of focal changes in nerve conduction velocity at common entrapment sites, such as in the across‐elbow segment of the ulnar nerve.Keywords
This publication has 7 references indexed in Scilit:
- Focal stimulation of human peripheral nerve with the magnetic coil: A comparison with electrical stimulationExperimental Neurology, 1989
- An analysis of peripheral motor nerve stimulation in humans using the magnetic coilElectroencephalography and Clinical Neurophysiology, 1988
- The utility of magnetic stimulation for routine peripheral nerve conduction studiesMuscle & Nerve, 1988
- Magnetic stimulation of human peripheral nerve and brainNeurosurgery, 1987
- Stimulation of nerve trunks with time-varying magnetic fieldsMedical & Biological Engineering & Computing, 1982
- NERVE-CONDUCTION VELOCITY-MEASUREMENTS - IMPROVED ACCURACY USING SUPERIMPOSED RESPONSE WAVES1976
- Stimulation of Irritable Tissues by Means of an Alternating Magnetic Field.Experimental Biology and Medicine, 1959