Why the study?
Data were lacking on the range and responsiveness of no-flow equilibrium pressure to volume expansion in patients without cardiovascular disease, and its correlation with echocardiographic left ventricular filling.
Does acute volume expansion increase stop-flow arm equilibrium pressure and correlate with echocardiographic assessments of left ventricular filling in preoperative patients without cardiovascular disease?
Does acute volume expansion increase stop-flow arm equilibrium pressure and correlate with echocardiographic assessments of left ventricular filling in preoperative patients without cardiovascular disease?
Preoperative stop-flow arm equilibrium pressure increases with acute volume expansion but correlates poorly with echocardiographic assessments of left ventricular filling.
Background The distending intravascular pressure at no flow conditions reflects the stressed volume. While this haemodynamic variable is recognised as clinically important, there is a paucity of reports of its range and responsiveness to volume expansion in patients without cardiovascular disease and no reports of correlations to echocardiographic assessments of left ventricular filling. Methods Twenty‐seven awake (13 male), spontaneously breathing patients without any history of cardiopulmonary, vascular or renal disease were studied prior to induction of anaesthesia. The no‐flow equilibrium pressure in the arm following rapid circulatory occlusion (Parm) was measured via a radial arterial catheter. Transthoracic echocardiography was used to measure left ventricular end diastolic area and volume as well as the diameter of the inferior vena cava. The Parm and echocardiographic variables were measured before and after administration of 500 mL 0.9% NaCl over 10 minutes. Changes were analysed by paired t test, Pearson's correlation and multiple linear regression. Results Parm increased overall from 22 ± 5 mm Hg to 25 ± 6 mm Hg (mean difference 3.0 ± 4.5 mm Hg, P = 0.002) following the fluid bolus with corresponding increases in arterial pressure and echocardiographic variables. Variability in the direction of the Parm response reflected concomitant changes in vascular compliance. Only weak correlations were observed between changes in Parm and inferior vena cava diameter indexed to body surface area (R2 = 0.29, P = 0.01). Conclusion Preoperative measurements of Parm increased following acute expansion of the intravascular volume. Echocardiography demonstrated poor correlation with Parm.
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Yastrebov et al. (2019) studied this question.
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