Key result
Short-term IPS + PEEP ventilation significantly decreased spontaneous baroreflex gain in the low frequency band (8.4 vs 12.7 ms/mmHg; P<0.05) compared to baseline in healthy subjects.
Why the study?
Does positive pressure-assisted breathing alter spontaneous cardiac baroreflex sensitivity in healthy subjects?
Does positive pressure-assisted breathing alter spontaneous cardiac baroreflex sensitivity in healthy subjects?
Absolute Event Rate: 8.4% vs 12.7%
p-value: p=<0.05
Short-term positive pressure-assisted breathing moderately enhances parasympathetic control while significantly and transiently altering sympathetic baroreflex drive in healthy subjects.
May transiently reduce baroreflex gain with assisted ventilation in healthy subjects; hypothesis-generating and should not yet change practice.
In order to examine the acute autonomic response in humans during and immediately after positive pressure-assisted (PPA) breathing, spontaneous cardiac baroreflex (BR) sensitivity was studied through the adaptation of consecutive RR intervals in response to spontaneous systolic blood pressure fluctuations in 11 healthy subjects. The gain (alpha-index) in baroreceptor reflex was estimated using cross-spectral analysis (RR interval variability and systolic blood pressure variability) for the low frequency (LF) and high frequency (HF) bands. All measurements were made under fixed breathing rate (12 breaths per minute), and realized consecutively at baseline level (20 min), after-short inspiratory pressure support plus positive end-expiratory airway pressure (IPS + PEEP) ventilation (15 min), again under normal conditions (20 min; recovery period) and, finally, during a standard upward orthostatic challenge test (15 min; orthostatic challenge). The spontaneous BR gain in the HF band increases slightly during ventilation (+26.1 +/- 11.7%, P<0.05) and decreases significantly during recovery without any significant alteration in mean heart rate, systolic or diastolic blood pressure. The spontaneous BR gain in the LF band decreases during IPS + PEEP ventilation (8.4 +/- 4.4 versus 12.7 +/- 6.2 ms mm(-1) Hg; P<0.05) and returns to basal level during recovery. Orthostatic challenge altered significantly the BR gain in both HF and LF bands with significant heart rate acceleration. In humans, while the parasympathetic control of heart rate and blood pressure is found moderately enhanced, the sympathetic BR drive appears significantly and transitory altered under short term IPS + PEEP ventilation with a degree of alteration comparable to those observed during orthostatic challenge.
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Garet et al. (2005) studied Healthy (n=11). Inspiratory pressure support plus positive end-expiratory airway pressure (IPS + PEEP) ventilation vs. Baseline level (normal conditions) was evaluated on Spontaneous cardiac baroreflex (BR) sensitivity (gain in LF and HF bands) (p=<0.05). Short-term IPS + PEEP ventilation significantly decreased spontaneous baroreflex gain in the low frequency band (8.4 vs 12.7 ms/mmHg; P<0.05) compared to baseline in healthy subjects.
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