Архив номеров
Медицинская Техника / №4, 2017 / с. 11-14

Термоанемометрические датчики для гемодинамических исследований

                                

В.И. Маслов, А.Д. Юхнев


Аннотация

Рассмотрены разновидности и технические параметры современных тепловых датчиков скорости потока жидкости и сдвиговых напряжений, представлены перспективные разработки и описаны возможности применения сенсоров в кровотоке для решения биомедицинских задач.


Сведения об авторах

Василий Игоревич Маслов, магистр техники и технологии, инженер отделения гидроаэродинамики, ФГУП «Крыловский государственный научный центр»,
Андрей Данилович Юхнев, научный сотрудник, кафедра гидроаэродинамики, горения и теплообмена, ФГАОУ ВО СПбПУ, г. С.-Петербург,
e-mail: doc128@yandex.ru

Список литературы

1. Jensen K.D. Flow Measurements // J. of the Braz. Soc. of Mech. Sci. and Eng. 2004. Vol. 26. № 4. PP. 400-419.
2. Hatle L., Angelsen B. Doppler Ultrasound in Cardiology: Physical Principles and Clinical Applications. Second Edition. – Philadelphia: Lea and Febiger, 1985. 331 р.
3. Cloutier G., Chen D., Durand L.-G. Performance of Time- Frequency Representation Techniques to Measure Blood Flow Turbulence With Pulsed-Wave Doppler Ultrasound // Ultrasound in Medicine & Biology. 2001. Vol. 27. № 4. PP. 535-550.
4. Adel M., Seth L., Seigo I. et al. Hemodynamic Shear Stress and its Role in Atherosclerosis // JAMA. 1999. Vol. 282. № 2. 8 р.
5. Dantec Dynamics Inc. Probes for Hot-Wire Anemometry / Technical Description. 2014. Vol. 11. № 238. 26 р.
6. Silvestri S., Schena E. Micromachined Flow Sensors in Biomedical Applications // Micromachines. 2012. Vol. 3. № 2. PP. 225-243.
7. Sung C., Donald L. et al. Application of Heated-Film Velocity and Shear Probes to Hemodynamic Studies // Circulation Research. 1968. Vol. 23. PP. 789-801.
8. Hongyu Yu, Lisong Ai, Rouhanizadeh M. et al. Flexible Polymer Sensors for In Vivo Intravascular Shear Stress Analysis // Journal of Microelectromechanical Systems. 2008. Vol. 17. № 5. PP. 1178-1186.
9. Tang R., Huang H., Hongyu Yu et al. Three-Dimensional Flexible Thermal Sensor for Intravascular Flow Monitoring // Sensors Journal. 2013. Vol. 13. № 10. PP. 3991-3998.
10. Thermo-Systems Inc. Innovation in the Thermal Anemometry / Technical Description. 2004. 48 р.
11. Tangwongsan C. Measurement of In Vivo Endocardial and Hepatic Convective Heat Transfer Coefficient. – University of Wisconsin-Madison, Department of Biomedical Engineering, PhD Dissertation, 2003. 122 р.
12. Steeves C.A., Young Y.L., Liu Z. et al. Membrane Thickness Design of Implantable bio-MEMS Sensors for the In-Situ Monitoring of Blood Flow // Journal of Material Science: Materials in Medicine. 2007. Vol. 18. № 1. PP. 25-37.
13. Tzung K., Sung K., Pak K. Wong et al. Micro Sensors: Linking Real-Time Oscillatory Shear Stress with Vascular Inflammatory Responses // Annals of Biomedical Engineering. 2004. Vol. 32. № 2. PP. 189-201.
14. Rouhanizadeh M., Soundararajan G. et al. MEMS Sensors to Resolve Spatial Variations in Shear Stress in a 3-D Blood Vessel Bifurcation Model // Sensors Journal. 2006. Vol. 6. № 1. PP. 78-87.
15. Jiang F. Silicon-Micromachined Flow Sensor. – California Institute of Technology, PhD Dissertation, 1998. 170 р.
16. Togawa T., Tamura T. Biomedical Sensors and Instruments. Second Edition. – CRC Press, 2011. PP. 112-113.
17. Chunyan Li, Pei-Ming Wu et al. A Flexible Polymer Tube Lab- Chip Integrated With Microsensors for Smart Microcatheter // Biomedical Microdevices. 2008. Vol. 10. № 5. PP. 671-679.
18. Stalder A.F., Russe M.F., Bock J. et al. Quantitative 2D and 3D Phase Contrast MRI: Optimized Analysis of Blood Flow and Vessel Wall Parameters // Magnetic Resonance in Medicine. 2008. Vol. 60. № 5. PP. 1218-1231.
19. Katritsis D., Kaiktsis L., Chaniotis A. et al. Wall Shear Stress: Theoretical Considerations and Methods of Measurement // Progress in Cardiovascular Diseases. 2007. Vol. 49. № 5. PP. 307-329.
20. Stankovic Z., Csatari Z., Deibert P. et al. A Feasibility Study to Evaluate Splanchnic Arterial and Venous Hemodynamics by Flow-Sensitive 4D MRI Compared with Doppler Ultrasound in Patients with Cirrhosis and Controls // European Journal of Gastroenterology & Hepatology. 2013. Vol. 25. № 6. PP. 669-675.
21. Dyverfeldt P. Extending MRI to the Quantification of Turbulence Intensity / Linkцping Studies in Science and Technology, Doctoral Thesis. 2010. № 1297. 73 р.