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Hydrogel permeability was obtained by parametric sweep while considering pressure measurements at increasing flow rates.
(E) The computational fluid flow model was harnessed to extract data on hydrogel permeability at increasing flow rates.
Blood flow features, pressure, and energy efficiency are analyzed at rest and with increasing flow rates to simulate exercise conditions.
SEM images in Figs. 2f 2i indicated that the degree of nanowire ordering was increasing with increasing flow rates from 200 to 400 and 800 μL min−1.
To characterize the assembled perfusion setup, the back pressure resulting from the reactor with the macroporous hydrogel was monitored at stepwise increasing flow rates.
Here, a non-linear decline of gel permeability ranging from 1.3 × 10−13 to 2.5 × 10−14 m² at increasing flow rates was obtained (Fig. 1E).
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The extent of recirculation zones increases with increasing flow rate.
The value of K′m decreased with increasing flow rate.
The length of the slugs decreased with increasing flow rate.
The subcutaneous pressures and mechanical strain increased with increasing flow rate but not increasing dose volume.
The profitability will increase by increasing flow rate especially at high flow rates.
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