Premium
Skin receptors and intradermal nerves do not generate the sensory double peak
Author(s) -
Therimadasamy Aravindakannan,
Chan Yee Cheun,
WilderSmith Einar P.
Publication year - 2015
Publication title -
muscle and nerve
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.025
H-Index - 145
eISSN - 1097-4598
pISSN - 0148-639X
DOI - 10.1002/mus.24502
Subject(s) - stimulation , stimulus (psychology) , anode , sensory system , chemistry , receptor , cathode , biophysics , neuroscience , medicine , electrode , biology , psychology , biochemistry , psychotherapist
: The cause of the double peak observed at submaximal stimulation of sensory nerves is unknown. The first peak is generated under the cathode and the second under the anode. The double peak is thought to arise from intradermal nerves or skin receptors, and in this study we tested this assumption. Methods : We studied the effect of different stimulus durations on anodal peak latency in volunteers. Biphasic anodal stimulation was used to investigate the latent additive effect of the trailing negative phase on the partial depolarization induced by the initial positive phase. We further tested the maximal amplitude of anode‐generated potentials to estimate the number of neural structures involved in their generation. Results : Increased stimulus duration caused anode‐generated potential delay. Biphasic stimulation increased anode‐generated amplitude 4‐fold compared with monophasic stimulation. The anode‐generated potential produced up to 85% of the supramaximal cathode‐generated amplitude. Conclusions : The results suggest that the double peak arises from anodal break excitation and not from intradermal nerves or receptors. Muscle Nerve 52 : 103–106, 2015