2015
DOI: 10.1088/0967-3334/36/4/785
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Coupling between arterial pressure, cerebral blood velocity, and cerebral tissue oxygenation with spontaneous and forced oscillations

Abstract: We tested the hypothesis that transmission of arterial pressure to brain tissue oxygenation is low under conditions of arterial pressure instability. Two experimental models of hemodynamic instability were used in healthy human volunteers; (1) oscillatory lower body negative pressure (OLBNP) (N = 8; 5 male, 3 female), and; (2) maximal LBNP to presyncope (N = 21; 13 male, 8 female). Mean arterial pressure (MAP), middle cerebral artery velocity (MCAv), and cerebral tissue oxygen saturation (ScO2) were measured n… Show more

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Cited by 14 publications
(10 citation statements)
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“…Oscillatory patterns of arterial blood pressures, cerebral blood velocities and etCO 2 were determined using fast Fourier power spectral analysis, as previously described from our laboratory (Rickards, Sprick, Colby, Kay, & Tzeng, 2015). Data were made equidistant by interpolating linearly and resampling at 5 Hz.…”
Section: Discussionmentioning
confidence: 99%
“…Oscillatory patterns of arterial blood pressures, cerebral blood velocities and etCO 2 were determined using fast Fourier power spectral analysis, as previously described from our laboratory (Rickards, Sprick, Colby, Kay, & Tzeng, 2015). Data were made equidistant by interpolating linearly and resampling at 5 Hz.…”
Section: Discussionmentioning
confidence: 99%
“…In healthy adult volunteers, cerebral oxygenation measured by NIRS during hypovolemia has been studied experimentally by applying lower body negative pressure. 30,31 Literature on the effects of hypotension on NIRS oximetry measures in neonatal populations is limited. In preterm infants, mild short-term hypotensive episodes did not lower the cerebral oxygenation estimated by NIRS.…”
Section: Discussionmentioning
confidence: 99%
“…To avoid this shortcoming, several methods of enhancing blood pressure (BP) oscillations have been used, from slow fixed-frequency breathing (Diehl et al 1995) to repeated squat-stand manoeuvres (Birch et al 1995) or thigh cuff deflation (Aaslid et al 2007). Oscillatory lower body pressure (LBP) is one such method that has proven to reliably and effectively elicit arterial pressure fluctuations to characterize cerebrovascular responses (Hamner et al 2004;Brothers et al 2009;Hamner & Tan, 2014;Rickards et al 2015;Merchant et al 2017).…”
Section: Introductionmentioning
confidence: 99%