Key result
Muscle and cutaneous nerve stimulation evoke similar cardiac acceleration with rapid onset under ~0.4 seconds.
Why the study?
The short-latency effect of peripheral nerve stimulation on heart rate and its underlying mechanisms were not fully understood.
Indicates rapid somato-cardiac reflexes in animal models; leaves open translation to human autonomic control.
The short-latency effect on heart rate of peripheral nerve stimulation was studied in decerebrate cats. Selective activation (17-40 microA, 100 Hz, 1 s long) of low-threshold fibers in the nerves to the triceps surae muscle yielded isometric contractions of maximal force that were accompanied by a cardiac cycle length shortening within 0.4 s from the start of stimulation. This effect was abolished by pharmacologically induced neuromuscular blockade. The cardiac cycle length shortening during paralysis reappeared after a 6- to 10-fold increase of the stimulation strength. Cutaneous (sural) nerve stimulation (15-25 microA, 100 Hz, 1 s long) elicited reflex contractions in the stimulated limb, which were also accompanied by a cardiac acceleration with similar latency. Paralysis prevented the reflex contractions and reduced the cardiac response in some cats and abolished it in others. The response reappeared in either case after a 5- to 10-fold increase of the stimulus strength. It is concluded that muscle nerve and cutaneous nerve activity both cause a similar cardiac acceleration with a latency of less than 0.4 s. The response to muscle nerve stimulation is elicited by activity in group III afferents. It is excluded that the cardiac response to nerve stimulation is secondary to a change in the respiratory pattern.
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Gelsema et al. (1985) studied this question. Peripheral nerve stimulation (muscle and cutaneous afferents) was evaluated on Cardiac cycle length shortening (heart rate acceleration) and latency. Muscle nerve and cutaneous nerve stimulation both caused a similar cardiac acceleration with a latency of less than 0.4 seconds in decerebrate cats.
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