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The incorporation of measurements of the rate of pressure change into a physical model of the brachial artery was used to derive vascular compliance.
Both maximum pressure and the rate of pressure rise (dP/dt) decreased with increasing heating rate.
Its accuracy depends on the experimental conditions and the approach determining maximum rate of pressure rise.
Maximum rate of pressure rise is an important parameter of explosion severity characteristics.
The maximum rate of pressure rise decreases linearly with the porous densities.
The decline rate of pressure drop is about 10% between the separators with or without return pipe.
This disparity in the rate of pressure changes caused the pressures in different gauges to be different than expected.
The influence of gas equivalence ratio and vent size on the rate of pressure rise is analyzed.
The calculated explosion indexes include volume-normalized maximum rate of pressure rise (KSt), explosion severity (ES) and ignition sensitivity (IS).
The ability not only to record automated systolic and diastolic pressure, but also to derive measurements of the rate of pressure change during the cardiac cycle, would have great potential clinical value.
We conclude that the measurement of absolute pressure and rate of pressure change show good correlation with catheter data and that vascular compliance can be reliably assessed by this new method.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com