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Published on: May 3, 2018
Measuring stress velocity index using mean blood pressure: simple yet accurate?
Sanjeev Aggarwal1, Michael D Pettersen, Joellyn Gurckzynski
1Division of Cardiology, Department of Pediatrics, Children's Hospital of Michigan, Wayne State University, 3901 Beaubien Boulevard, Detroit, MI 48201, USA. ssanjeev@dmc.org
Abstract:
The stress velocity index, or the relationship of the rate-corrected mean velocity of circumferential shortening (VCFc) to the end systolic wall stress (ESWS), is a sensitive, load-independent measure of left ventricular contractility. ESWS is technically difficult to obtain and requires simultaneous blood pressure measurement, carotid artery tracing, and phonocardiogram. We report our comparison of two simpler methods of measuring ESWS and, therefore, stress velocity index. Patients with normal cardiac anatomy who had completed anthracycline chemotherapy were evaluated. ESWS as measured by the standard method using a carotid artery tracing (ESWScar) was compared to ESWS obtained using mean arterial pressure (ESWSmap) or systolic blood pressure (ESWSsbp). The cohort included 63 patients, with 37 (59%) males and a median age of 13.1 years. The mean (+/-SD) ESWScar was 53.3+/-15.3 g/cm(2) (range, 26.3-94 g/cm(2)); ESWSmap, 53 +/-13.4 g/cm(2) (range, 27.1-86.1 g/cm(2)); and ESWSsbp, 72.9 +/- 18.2 g/cm(2) (range, 40.8-117.2 g/cm(2)). ESWSmap and ESWSsbp closely correlated with ESWScar (coefficient correlation r = 0.88 and r = 0.87, respectively). Using ESWSmap, all patients were correctly classified as having normal or abnormal contractility as defined by stress velocity index, whereas ESWSsbp detected only two of the six patients with impaired contractility. We conclude that ESWSmap is a simple, highly sensitive and specific method for assessing left ventricular contractility. ESWSmap correlates closely with ESWScar and can be incorporated into the monitoring of cardiac dysfunction in the anthracycline-treated population. Further studies are needed to determine if this simplified measure accurately assesses the ESWS in other cardiac disease states.
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This invasive approach involves cannulating a peripheral artery. During each cardiac contraction, pressure generates mechanical motion within the catheter, transmitted through rigid, fluid-filled tubing to a transducer. This transducer converts mechanical motion into electrical signals displayed as waveforms on a monitor. An automatic flushing system prevents blood backflow. Due to the potential risk of unexpected arterial blood loss, this method is primarily used in intensive...
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