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Computational investigations of a new prosthetic femoral-popliteal bypass graft design
Thomas Patrick O'Brien
,
Pierce Grace
,
Michael Walsh
, Paul Burke
,
Timothy McGloughlin
SSPC - the Research Ireland Centre for Pharmaceuticals
School of Engineering
Retired Staff
University of Limerick
University Hospitals Limerick
Research output
:
Contribution to journal
›
Article
›
peer-review
Overview
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Engineering
Grafts
100%
Wall Shear Stress
100%
Prosthetics
100%
Velocity Vector
33%
Fully Developed Flow
33%
Separation Region
33%
Flow Rate
16%
Flow Characteristics
16%
Major Factor
16%
Design Concept
16%
Influencing Factor
16%
Peak Velocity
16%
Contour Plot
16%
Shear Stress Gradient
16%
Design Result
16%
Flow Separation
16%
Cardiovascular Surgery
16%
Conventional Case
16%
Additional Training
16%
Flow Velocity
16%
Prosthesis
16%
Medicine and Dentistry
Prosthetics
100%
Bypass Surgery
100%
End to Side Anastomosis
100%
Toe
66%
In Vitro
33%
End to End Anastomosis
33%
Diseases
33%
Hemodynamic
16%
Surgical Anastomosis
16%
Lifespan
16%
Disease Course
16%
Blood Flow
16%
Pulse Rate
16%
Graft Patency
16%
Femoral Artery Flow
16%
Cardiovascular Surgery
16%
Prosthesis
16%