Authors
Erik Muñoz, Nikolaos M Tsoukias, B Rita Alevriadou, Asad Mirza
Published in
Annals of biomedical engineering. Aug 06, 2026. Epub Aug 06, 2026.
Abstract
Orbital shakers are used in endothelial (EC) mechanobiology to simulate hemodynamic environments, yet guidelines for selecting physiologically relevant parameters are lacking.
Using computational fluid dynamics (CFD) simulations, we investigated the effects of different orbital radii (A, at either 5 or 10 mm), angular velocities (RPM), and initial fluid heights (h0) on wall shear stress (WSS) and free surface height (h) in 6-well plates on an orbital shaker.
We identified operational bounds that generate undisturbed flow (UF) at the periphery and disturbed flow (DF) at the center, with WSS levels analogous to those in human arteries (peripheral: 10-14 dynes/cm2; central: 3-6 dynes/cm2), while minimizing media spillage and transient air exposure. For A = 5 mm, recommended settings span 190-210 RPM across h0 = 2.6-4.1 mm; for A = 10 mm, 170 RPM is suitable for h0 = 2.6-4.1 mm. Peripheral WSS was relatively insensitive to h0, while central WSS increased with decreasing h0. Free surface analysis confirmed that maximum fluid height remained below the well rim under recommended conditions.
These insights inform orbital shaker settings that balance biological relevance with experimental practicality for EC mechanobiology studies.
PMID:
42560592
Bibliographic data and abstract were imported from PubMed on 06 Aug 2026.
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