Country | University / Institute | Group | Topic |
---|
Australia | UNSW Australia | Advanced Thermofluidics Group[1] | Cardiovascular fluid dynamics and mechanics, stent design and strategy optimization, arterial flow and stenosis, transport of drugs from stents, haemodialysis, arterio-venous fistulae |
Australia | ANU | Optical Biofluidics Imaging (oBIG) Lab[2] | Biomedical Photonics, Biofluidics Imaging, Applied Optics |
Belgium | Ghent University | BioMMeda[3] | Biomedical ultrasound research, medical devices, cardiovascular mechanics, (artificial) organs and biofluids |
Canada | University of Toronto | Biomedical Simulation Lab[4] | Hemodynamic factors in atherogenesis, stroke risk assessment, optimization of bypass graft surgery |
Germany | Charité – Universitätsmedizin Berlin | Biofluid Mechanics Lab[5] | Blood pressure measurement, ventricular assist devices, flow visualization methods (PIV, dye erosion/washout), Computational Fluid Dynamics, heart valves, blood damage, congenital heart disease, patient-specific modelling |
Germany | RWTH Aachen | Laboratory for Biomedical Fluid Mechanics[6] | Flows in artificial organs, artificial heart valve prostheses, blood pumps |
Germany | University of Bayreuth | Biofluid Simulation and Modeling[7] | Drug delivery agents in blood flow, interfacial water, molecular dynamics of liquid organic solar cells |
Israel | Israel Institute of Technology | The Technion Biofluids Laboratory[8] | Respiratory flows, small-scale physiological flows using microfluidic techniques |
Israel | Ariel University | The Ariel Biomechanics Center (ABmC) [9] | Heart valves, medical devices |
Italy | Politecnico di Milano | LaBS[10] | Intracranial aneurysm, pediatric surgical corrections, fetal hemodynamics |
Singapore | National University of Singapore | Cardiovascular Biomechanics and Ultrasound Laboratory [11] | Embryonic and fetal cardiac flows, congenital heart malformations, placenta and umbilical biomechanics, anti-thrombotic blood pumps |
Switzerland | École polytechnique fédérale de Lausanne | LHTC[12] | Wave propagation, Cerebrospinal Fluid Mechanics, Hemodynamical forces and vascular diseases |
Switzerland | University of Bern | ARTORG Cardiovascular Engineering Group[13] | Heart valves, complex vascular networks, advanced pumping systems |
Switzerland | University of Zurich | The Interface Group[14] | Cerebrospinal fluid dynamics, cardiovascular fluid mechanics, integrated flow chambers for mechanobiology, biomedical applications |
Turkey | Koç University | Pekkan Biofluid Mechanics Laboratory[15] | Cardiovascular fluid mechanics, ontogenical hemodynamics |
United Kingdom | University College London | MUSE[16] | Cardiovascular fluid mechanics, cardiovascular engineering |
United Kingdom | Imperial College London | The Xu Group[17] | Cardiovascular diseases, Fluid–structure interaction, drug delivery |
United Kingdom | University of Sheffield | CISTIB[18] | Biomedical imaging, interventional planning, medical devices |
United States | Colorado State University | Cardiovascular and Biofluid Mechanics Laboratory[19] | Heart valve, heart development, Fluid–structure interaction |
United States | Georgia Institute of Technology | Cardiovascular Fluid Mechanics Laboratory[20] | Biomechanics of vascular pathologies, medical devices |
United States | Georgia Institute of Technology | Biofluids and Medical Device Research Group[21] | Cardiac and valvular mechanics, aortic valve mechanobiology, prosthetic heart valve mechanics, pediatric cardiovascular engineering |
United States | University of Idaho | NIML - Neurophysiological Imaging and Modeling Laboratory[22] | Cerebrospinal fluid dynamics, Intrathecal drug and gene vector delivery, hydrocephalus and Chiari malformation, medical devices, neurodegenerative disorders |
United States | University of Illinois at Chicago | Laboratory for Product and Process Design[23] | Cerebrospinal fluid flow, intrathecal drug delivery, intrathecal magnetic drug targeting, convection-enhanced drug delivery, whole brain cerebral blood flow, oxygen perfusion in cerebral microvasculature, cerebral water transport by Aquaporin 4, hydrocephalus smart shunt design |
United States | University of Maryland | Biofluid Dynamics Laboratory[24] | Hemodynamics and hemopathology in the microcirculation, drop dynamics |
United States | University of Massachusetts Amherst | Biofluids and Vascular Biology Laboratory : Jiménez Lab[25] | Cardiovascular stents, Lymphatic flow study |
United States | Massachusetts Institute of Technology | Edelman Lab[26] | Drug delivery, medical devices |
United States | University of Michigan | Biofluid Mechanics Research Laboratory[27] | Lung airway closure/re-opening, pulmonary surfactant delivery, artificial lung, ocular flows |
United States | University of Minnesota | St. Anthony Falls Laboratory[28] | Cardiovascular fluid mechanics, medical devices, virtual surgery |
United States | Stony Brook University | Biofluids Research Group[29] | Heart valves, artificial heart, left ventricular assist device |
United States | The City College of New York | The Wallace H. Coulter Laboratory for Cardiovascular Dynamics and Biomolecular Transport[30] | Vascular diseases, mechanotransduction, glycocalyx |
United States | Tulane University | Biofluid Mechanics Laboratory[31] | Improved therapies for pulmonary disease ARDS, prevention of ventilator-induced lung injury |
United States | University of Texas at San Antonio | Vascular Biomechanics and Biofluids Laboratory [32] | Medical devices, Abdominal aortic aneurysm, Fluid–structure interaction |
United States | The George Washington University | Biofluid Dynamics Laboratory [33] | Arterial flows, intraglottal flows |
|
1. ^[https://www.engineering.unsw.edu.au/mechanical-engineering/research/our-research-groups/advanced-thermofluids Advanced Thermofluidics Group]
2. ^[https://leenewt3.wixsite.com/aomlab Optical Biofluidics Imaging (oBIG) Lab]
3. ^BioMMeda
4. ^Biomedical Simulation Lab
5. ^[https://biofluidmechanik.charite.de Biofluid Mechanics Lab]
6. ^Laboratory for Biomedical Fluid Mechanics
7. ^Biofluid Simulation and Modeling
8. ^The Technion Biofluids Laboratory
9. ^The Ariel Biomechanics Center (ABmC)
10. ^LaBS
11. ^Cardiovascular Biomechanics and Ultrasound Laboratory
12. ^LHTC
13. ^ARTORG Cardiovascular Engineering Group
14. ^The Interface Group
15. ^[https://www.facebook.com/pekkan.lab/ Pekkan Biofluid Mechanics Laboratory]
16. ^[https://www.ucl.ac.uk/muse MUSE]
17. ^The Xu Group
18. ^CISTIB {{webarchive|url=https://web.archive.org/web/20141228232551/http://www.cistib.org/cistib_shf/ |date=2014-12-28 }}
19. ^Cardiovascular and Biofluid Mechanics Laboratory
20. ^Cardiovascular Fluid Mechanics Laboratory
21. ^Biofluids and Medical Device Research Group
22. ^NIML - Neurophysiological Imaging and Modeling Laboratory
23. ^Laboratory for Product and Process Design
24. ^Biofluid Dynamics Laboratory
25. ^Jiménez Lab
26. ^Edelman Lab
27. ^Biofluid Mechanics Research Laboratory
28. ^St. Anthony Falls Laboratory
29. ^Biofluids Research Group
30. ^The Wallace H. Coulter Laboratory for Cardiovascular Dynamics and Biomolecular Transport
31. ^Biofluid Mechanics Laboratory
32. ^Vascular Biomechanics and Biofluids Laboratory
33. ^Biofluid Dynamics Laboratory
{{DEFAULTSORT:List Of Biofluid Mechanics Research Groups}}