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Theory to predict shear stress on cells in turbulent blood flow
Khandakar Niaz Morshed
, David Bark
, Marcio Forleo
, Lakshmi Prasad Dasi
Division of Hematology & Oncology
DBBS - Molecular Cell Biology
Roy and Diana Vagelos Division of Biology & Biomedical Sciences (DBBS)
DBBS - Developmental, Regenerative and Stem Cell Biology
Research output
:
Contribution to journal
›
Article
›
peer-review
60
Scopus citations
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Keyphrases
Shear Stress
100%
Turbulent Blood Flow
100%
Turbulent Flow
75%
Blood Cells
50%
Blood Platelets
50%
Energy Dissipation
50%
Biological Activity
25%
Blood Flow
25%
Mechanical Microenvironment
25%
Inconsistency
25%
Most Complex
25%
Shear Stress Distribution
25%
Laminar Flow
25%
Turbulent Eddies
25%
Laminar Blood Flow
25%
Flow Problems
25%
Engineering
Turbulent Flow
100%
Platelet
66%
Energy Dissipation
66%
Mechanical Environment
33%
Shear Stress Distribution
33%
Laminar Flows
33%
Flow Problem
33%
Bioactivity
33%