Key result
Dynamic carotid baroreceptor stimulation abolishes the resting right lateralization of vascular sympathetic activity.
Why the study?
It is unknown whether post-ganglionic sympathetic activity shows any functional asymmetry between the right and left sides.
Does carotid baroreceptor stimulation alter the lateralization of muscle sympathetic nerve activity in healthy volunteers?
RCT (n=8)
Randomly applied
Does carotid baroreceptor stimulation alter the lateralization of muscle sympathetic nerve activity in healthy volunteers?
Carotid baroreceptor stimulation disrupts the resting right lateralization of muscle sympathetic nerve activity in humans.
Right MSNA burst strength exceeds left at rest in right-handers; leaves open cerebral lateralization effects on sympathetic assessment.
Human studies suggest that cardiovascular neural sympathetic control is predominantly modulated by the right cerebral hemisphere. It is unknown whether post-ganglionic sympathetic activity [muscle sympathetic nerve activity (MSNA)] shows any functional asymmetry. Eight right-handed volunteers (3 women and 5 men, 32 +/- 2 yr of age) underwent ECG, beat-by-beat blood pressure, respiratory activity, and simultaneous right and left MSNA recordings during spontaneous and controlled breathing (CB, 15 breaths/min, 0.25 Hz). Dynamic carotid baroreceptor stimulation was obtained by 0.1-Hz sinusoidal suction, from 0 to -50 mmHg, randomly applied to the right, left, and combined right and left sides of the neck during CB. Laterality was assessed by changes in the MSNA burst rate (in bursts/min, and bursts/100 beats), strength [amplitude (A) and area (AA)], and the oscillatory component at 0.1 Hz during baroreceptor stimulation. Amplitude parameters were normalized by CB burst mean amplitude and area of the same side. At rest, the right and left MSNA burst rate and total MSNA activity were similar. Conversely, the right MSNA normalized burst A(N) (1.36 +/- 0.18) and AA(N) (1.31 +/- 0.16) were larger than the left MSNA A(N) (1.04 +/- 0.09) and AA(N) (1.02 +/- 0.08). Unilateral and bilateral carotid baroreflex stimulation abolished the right prevalence of A(N) and AA(N). In conclusion, the right lateralization of sympathetic activity to the vessels is indicated by normalized burst strength parameters of bilateral MSNA recordings at rest during spontaneous breathing. Carotid baroreceptor stimulation disrupted such expression of MSNA lateralization possibly by disturbing the synchronizing action of right cerebral hemisphere.
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Diedrich et al. (2009) reported an RCT. Dynamic carotid baroreceptor stimulation vs. Rest was evaluated on Changes in MSNA burst rate, strength, and oscillatory component at 0.1 Hz. Dynamic carotid baroreceptor stimulation abolished the right lateralization of sympathetic activity to the vessels observed at rest (right vs left normalized burst amplitude 1.36 vs 1.04).
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