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1.
Neurol Sci ; 36(9): 1597-601, 2015 Sep.
Article in English | MEDLINE | ID: mdl-25876852

ABSTRACT

We compared, in 20 subjects, the effects of high blood lactate levels on amplitude and latency of P1, N1, P2 and N2 components of lower limb somatosensory evoked potential (SEP), an useful, noninvasive tool for assessing the transmission of the afferent volley from periphery up to the cortex. SEPs were recorded from CPz located over the somatosensory vertex and referenced to FPz with a clavicle ground. Measurements were carried out before, at the end as well as 10 and 20 min after the conclusion of a maximal exercise carried out on a mechanically braked cycloergometer. After the exercise, P2-N2 amplitudes as well as latency of P1 and N1 components showed small but significant reductions. On the contrary, latency of N2 component exhibited a significant increase after the exercise's conclusion. These results suggest that blood lactate appears to have a protective effect against fatigue, at least at level of primary somatosensory cortex, although at the expense of efficiency of adjacent areas.


Subject(s)
Evoked Potentials, Somatosensory , Exercise , Lactic Acid/blood , Lower Extremity/physiology , Muscle Fatigue , Somatosensory Cortex/physiology , Adult , Bicycling/physiology , Blood Chemical Analysis , Female , Humans , Male , Tibial Nerve/physiology , Young Adult
2.
Neurol Sci ; 36(4): 541-6, 2015 Apr.
Article in English | MEDLINE | ID: mdl-25423913

ABSTRACT

We studied, in healthy adult subjects, the association of high blood lactate levels, induced with an exhaustive exercise (12 subjects) or an intravenous infusion (four subjects) of a lactate solution (3 mg/kg in 1 min), with amplitude and latency of visual-evoked potentials. Amplitude of N75, P100, and N145 components did not show significant changes, whereas latency of P100 was reduced at exercise's end and that of N145 increased 10 min after the conclusion. Therefore, an increase of blood lactate induced by an exhaustive exercise or an intravenous infusion appears to induce an improvement in the conduction time between eye and striate cortex, while it seems to evoke a worsening of intracortical communication between striate and extrastriate areas.


Subject(s)
Evoked Potentials, Visual/physiology , Lactic Acid/blood , Reaction Time/physiology , Adult , Analysis of Variance , Blood Glucose , Electroencephalography , Evoked Potentials, Visual/drug effects , Exercise/physiology , Female , Humans , Lactic Acid/pharmacology , Male , Photic Stimulation , Psychophysics , Time Factors , Young Adult
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