Measurement of near-wall 3D flow velocity from wave-guiding micro-pillars
Author:
Publisher
The Optical Society
Subject
Atomic and Molecular Physics, and Optics
Reference5 articles.
1. Feasability study of wall shear stress imaging using microstructured surfaces with flexible micropillars
2. Evidence of rare backflow and skin-friction critical points in near-wall turbulence using micropillar imaging
3. Microsphere-assisted fabrication of high aspect-ratio elastomeric micropillars and waveguides
4. Channelling optics for high quality imaging of sensory hair
5. Wall shear stress and near-wall convective transport: Comparisons with vascular remodelling in a peripheral graft anastomosis
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