Why the study?
Does elevating limb temperature to 42 degrees C affect nerve, muscle, and neuromuscular junction electrophysiology in normal subjects?
Does elevating limb temperature to 42 degrees C affect nerve, muscle, and neuromuscular junction electrophysiology in normal subjects?
Elevating limb temperature to 42 degrees C causes significant reductions in sensory and motor amplitudes in normal nerves, likely secondary to alterations in ion channel function.
May warrant caution interpreting NCS at high temperatures; hypothesis-generating for ion channel effects in disease.
Although the effect of low temperature on the peripheral nervous system has been systematically studied, the effect of high temperature has not. We investigated the effect of elevating limb temperature from 32 degrees C to 42 degrees C by performing sequential motor studies, antidromic sensory studies, and 3-Hz repetitive stimulation in normal subjects. In addition, we recorded single motor units by using threshold stimulation. On average, motor amplitude and duration decreased by 27% and 19%, respectively, whereas sensory amplitude and duration decreased by 50% and 26%, respectively. Neuromuscular transmission remained normal at 42 degrees C. Single motor unit recordings revealed a reduction in amplitude of 26%, similar to the overall reduction in compound motor amplitude. These findings demonstrate that significant reductions in sensory and motor amplitudes can occur in normal nerves at high temperature; we hypothesize that these changes are secondary to alterations in nerve and muscle ion channel function.
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Rutkove et al. (1997) studied this question.
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