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A simulation environment for validating ultrasonic blood flow and vessel wall imaging based on fluid-structure interaction simulations: ultrasonic assessment of arterial distension and wall shear rate

(2010) MEDICAL PHYSICS. 37(8). p.4318-4330
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Keywords
HEMODYNAMICS, ALGORITHMS, DYNAMICS, wall shear rate, vessel distension, fluid-structure interaction, ultrasound, multiphysics, STABILITY, TRACKING, PISTONS, FIELDS, IMAGES, MODEL

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Citation

Please use this url to cite or link to this publication:

Chicago
Swillens, Abigaïl, Joris Degroote, Jan Vierendeels, Lasse Lovstakken, and Patrick Segers. 2010. “A Simulation Environment for Validating Ultrasonic Blood Flow and Vessel Wall Imaging Based on Fluid-structure Interaction Simulations: Ultrasonic Assessment of Arterial Distension and Wall Shear Rate.” Medical Physics 37 (8): 4318–4330.
APA
Swillens, A., Degroote, J., Vierendeels, J., Lovstakken, L., & Segers, P. (2010). A simulation environment for validating ultrasonic blood flow and vessel wall imaging based on fluid-structure interaction simulations: ultrasonic assessment of arterial distension and wall shear rate. MEDICAL PHYSICS, 37(8), 4318–4330.
Vancouver
1.
Swillens A, Degroote J, Vierendeels J, Lovstakken L, Segers P. A simulation environment for validating ultrasonic blood flow and vessel wall imaging based on fluid-structure interaction simulations: ultrasonic assessment of arterial distension and wall shear rate. MEDICAL PHYSICS. 2010;37(8):4318–30.
MLA
Swillens, Abigaïl et al. “A Simulation Environment for Validating Ultrasonic Blood Flow and Vessel Wall Imaging Based on Fluid-structure Interaction Simulations: Ultrasonic Assessment of Arterial Distension and Wall Shear Rate.” MEDICAL PHYSICS 37.8 (2010): 4318–4330. Print.
@article{1146630,
  author       = {Swillens, Abigaïl and Degroote, Joris and Vierendeels, Jan and Lovstakken, Lasse and Segers, Patrick},
  issn         = {0094-2405},
  journal      = {MEDICAL PHYSICS},
  keywords     = {HEMODYNAMICS,ALGORITHMS,DYNAMICS,wall shear rate,vessel distension,fluid-structure interaction,ultrasound,multiphysics,STABILITY,TRACKING,PISTONS,FIELDS,IMAGES,MODEL},
  language     = {eng},
  number       = {8},
  pages        = {4318--4330},
  title        = {A simulation environment for validating ultrasonic blood flow and vessel wall imaging based on fluid-structure interaction simulations: ultrasonic assessment of arterial distension and wall shear rate},
  url          = {http://dx.doi.org/10.1118/1.3462592},
  volume       = {37},
  year         = {2010},
}

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