Static handgrip exercise increased action potential content per burst by minute 4 (Δ4 ± 2, P<0.05) and shifted the cluster size-latency profile downward (-32 ± 22 ms, P<0.05) compared to baseline.
Central perceptual factors play a specific role in the synaptic delay aspect of sympathetic discharge timing, whereas peripheral reflex mechanisms affect recruitment of latent axons.
p-value: p=<0.05
Sympathetic outflow is modified during acute homeostatic stress through increased firing of low-threshold axons, recruitment of latent axons, and synaptic delay modifications. However, the role of central mechanisms versus peripheral reflex control over sympathetic recruitment remains unknown. Here, we examined sympathetic discharge patterns during fatiguing static handgrip (SHG) exercise and postexercise circulatory occlusion (PECO) to study the central vs. peripheral reflex elements of sympathetic neural coding. Muscle sympathetic nerve activity (MSNA; microneurography) was measured in six males (25 ± 3 yr) at baseline (3 min) and during 5 min of SHG exercise completed at 20% maximal voluntary contraction. Isolation of the peripheral metaboreflex component was achieved by PECO for 3 min. Action potential (AP) patterns were studied using wavelet-based methodology. Compared with baseline, total MSNA increased by minute 3 of SHG, remaining elevated throughout the duration of exercise and PECO (all P 0.05). Our findings suggest that central perceptual factors play a specific role in the synaptic delay aspect of sympathetic discharge timing, whereas peripheral reflex mechanisms affect recruitment of latent axons.
Badrov et al. (2016) studied this question. Static handgrip (SHG) exercise and postexercise circulatory occlusion (PECO) vs. Baseline was evaluated on Sympathetic discharge patterns (Muscle sympathetic nerve activity and action potential patterns) (p=<0.05). Static handgrip exercise increased action potential content per burst by minute 4 (Δ4 ± 2, P<0.05) and shifted the cluster size-latency profile downward (-32 ± 22 ms, P<0.05) compared to baseline.