Cite

International Electrotechnical Commission: Ultrasonics – Flow measurement systems – Flow test object. International Standard 2001: 61685. International Electrotechnical Commission : Ultrasonics – Flow measurement systems – Flow test object . International Standard 2001 : 61685 . Search in Google Scholar

Oglat AA, Matjafri MZ, Suardi N, Oglat MA, Oqlat AA, Abdelrahman MA: A new blood mimicking fluid using propylene glycol and their properties for a flow phantom test of medical Doppler ultrasound. Int J Chem 2017; 5: 220–231. Oglat AA Matjafri MZ Suardi N Oglat MA Oqlat AA Abdelrahman MA : A new blood mimicking fluid using propylene glycol and their properties for a flow phantom test of medical Doppler ultrasound . Int J Chem 2017 ; 5 : 220 231 . Search in Google Scholar

Oglat AA, Matjafri MZ, Suardi N, Oglat MA, Abdelrahman MA, Oqlat AA: Review of medical Doppler ultrasonography of blood flow in general and especially in common carotid artery. J Med Ultrasound 2018; 26: 3–13. Oglat AA Matjafri MZ Suardi N Oglat MA Abdelrahman MA Oqlat AA : Review of medical Doppler ultrasonography of blood flow in general and especially in common carotid artery . J Med Ultrasound 2018 ; 26 : 3 13 . 10.4103/JMU.JMU_11_17 Search in Google Scholar

Boote EJ, Zagzebski JA: Performance tests of Doppler ultrasound equipment with a tissue and blood-mimicking phantom. J Ultrasound Med 1988; 7: 137–147. Boote EJ Zagzebski JA : Performance tests of Doppler ultrasound equipment with a tissue and blood-mimicking phantom . J Ultrasound Med 1988 ; 7 : 137 147 . 10.7863/jum.1988.7.3.137 Search in Google Scholar

Kimme-Smith C, Hussain R, Duerinckx A, Tessler F, Grant E: Medical of Duplex of consistent with a variety Doppler. Radiology 1990; 177: 265–272. Kimme-Smith C Hussain R Duerinckx A Tessler F Grant E : Medical of Duplex of consistent with a variety Doppler . Radiology 1990 ; 177 : 265 272 . 10.1148/radiology.177.1.2204967 Search in Google Scholar

Oates CP: Towards an ideal blood analogue for Doppler ultrasound phantoms. Phys Med Biol 1991; 36: 1433–1442. Oates CP : Towards an ideal blood analogue for Doppler ultrasound phantoms . Phys Med Biol 1991 ; 36 : 1433 1442 . 10.1088/0031-9155/36/11/003 Search in Google Scholar

Rickey DW, Picot PA, Christopher DA, Fenster A: A wall-less vessel phantom for Doppler ultrasound studies. Ultrasound Med Biol 1995; 21: 1163–1176. Rickey DW Picot PA Christopher DA Fenster A : A wall-less vessel phantom for Doppler ultrasound studies . Ultrasound Med Biol 1995 ; 21 : 1163 1176 . 10.1016/0301-5629(95)00044-5 Search in Google Scholar

Ramnarine KV, Nassiri DK, Hoskins PR, Lubbers J: Validation of a new blood-mimicking fluid for use in Doppler flow test objects. Ultrasound Med Biol 1998; 24: 451–459. Ramnarine KV Nassiri DK Hoskins PR Lubbers J : Validation of a new blood-mimicking fluid for use in Doppler flow test objects . Ultrasound Med Biol 1998 ; 24 : 451 459 . 10.1016/S0301-5629(97)00277-9 Search in Google Scholar

Lubbers J: Application of a new blood-mimicking Doppler test object. Eur J Ultrasound 1999; 9: 267–276. Lubbers J : Application of a new blood-mimicking Doppler test object . Eur J Ultrasound 1999 ; 9 : 267 276 . 10.1016/S0929-8266(99)00035-X Search in Google Scholar

Ramnarine KU, Hoskins PE, Routh HE, Davidson FA: Doppler backscatter properties of a blood-mimicking fluid for Doppler performance assessment. Ultrasound Med Biol 1999; 25: 105–110. Ramnarine KU Hoskins PE Routh HE Davidson FA : Doppler backscatter properties of a blood-mimicking fluid for Doppler performance assessment . Ultrasound Med Biol 1999 ; 25 : 105 110 . 10.1016/S0301-5629(98)00139-2 Search in Google Scholar

Samavat H, Evans JA: An ideal blood mimicking fluid for doppler ultrasound phantoms. J Med Phys 2006; 31: 275–278. Samavat H Evans JA : An ideal blood mimicking fluid for doppler ultrasound phantoms . J Med Phys 2006 ; 31 : 275 278 . 10.4103/0971-6203.29198300410321206644 Search in Google Scholar

Yousif MY, Holdsworth DW, Poepping TL: Deriving a blood-mimicking fluid for particle image velocimetry in sylgard-184 vascular models. Annu Int Conf IEEE Eng Med Biol Soc 2009: 1412–1415. Yousif MY Holdsworth DW Poepping TL : Deriving a blood-mimicking fluid for particle image velocimetry in sylgard-184 vascular models. Annu Int Conf IEEE Eng Med Biol Soc 2009 : 1412 1415 . 10.1109/IEMBS.2009.533417519964526 Search in Google Scholar

Douville Y, Johnston KW, Kassam M, Zuech P, Cobbold RS, Jares A: An in-vitro model and its application for the study of carotid Doppler spectral broadening. Ultrasound Med Biol 1983; 9: 347–356. Douville Y Johnston KW Kassam M Zuech P Cobbold RS Jares A : An in-vitro model and its application for the study of carotid Doppler spectral broadening . Ultrasound Med Biol 1983 ; 9 : 347 356 . 10.1016/0301-5629(83)90087-X Search in Google Scholar

Hein IA, O’Brien WD: A flexible blood flow phantom capable of independently producing constant and pulsatile flow with a predictable spatial flow profile for ultrasound flow measurement validations. IEEE Trans Biomed Eng 1992; 37: 1111–1122. Hein IA O’Brien WD : A flexible blood flow phantom capable of independently producing constant and pulsatile flow with a predictable spatial flow profile for ultrasound flow measurement validations . IEEE Trans Biomed Eng 1992 ; 37 : 1111 1122 . 10.1109/10.168687 Search in Google Scholar

Hoskins PR, Anderson T, McDicken WN: A computer controlled flow phantom for generation of physiological Doppler waveforms. Phys Med Biol 1989; 34: 1709–1717. Hoskins PR Anderson T McDicken WN : A computer controlled flow phantom for generation of physiological Doppler waveforms . Phys Med Biol 1989 ; 34 : 1709 1717 . 10.1088/0031-9155/34/11/018 Search in Google Scholar

Hoskins PR, Loupas T, McDicken WN: Comparison of the Doppler from human blood and artificial blood used in a flow phantom. Ultrasound Med Biol 1990; 16: 141–147. Hoskins PR Loupas T McDicken WN : Comparison of the Doppler from human blood and artificial blood used in a flow phantom . Ultrasound Med Biol 1990 ; 16 : 141 147 . 10.1016/0301-5629(90)90142-Y Search in Google Scholar

Newhouse VL, Nathan RS, Hertzler LW: Proposed standard target for ultrasound Doppler gain calibration. Ultrasound Med Biol 1982; 8: 313–316. Newhouse VL Nathan RS Hertzler LW : Proposed standard target for ultrasound Doppler gain calibration . Ultrasound Med Biol 1982 ; 8 : 313 316 . 10.1016/0301-5629(82)90038-2 Search in Google Scholar

Holdsworth DW, Rickey DW, Drangova M, Miller DJ, Fenster A: Computer-controlled positive displacement pump for physiologial flow simulation. Med Biol Eng Comput 1991; 29: 565–570. Holdsworth DW Rickey DW Drangova M Miller DJ Fenster A : Computer-controlled positive displacement pump for physiologial flow simulation . Med Biol Eng Comput 1991 ; 29 : 565 570 . 10.1007/BF02446086 Search in Google Scholar

Law YF, Johnston KW, Routh HF, Cobbold RS: On the design and evaluation of a steady flow model for Doppler ultrasound studies. Ultrasound Med Biol 1988; 15: 505–516. Law YF Johnston KW Routh HF Cobbold RS : On the design and evaluation of a steady flow model for Doppler ultrasound studies . Ultrasound Med Biol 1988 ; 15 : 505 516 . 10.1016/0301-5629(89)90103-8 Search in Google Scholar

Waite L, Fine J: Applied Biofluid Mechanics. McGraw-Hill Education, New York 2007. Waite L Fine J : Applied Biofluid Mechanics. McGraw-Hill Education , New York 2007 . Search in Google Scholar

Petersson K: Clinical applications of acoustophoresis in blood based diagnostics. Lund University, Department of Biomedical Engineering 2018. Petersson K : Clinical applications of acoustophoresis in blood based diagnostics. Lund University, Department of Biomedical Engineering 2018 . Search in Google Scholar

Vasudevan DM, Sreekumari S, Kannan V: Textbook of Biochemistry for Medical Students. 7th ed. JP Medical Publishers, Philadelphia 2013. Vasudevan DM Sreekumari S Kannan V : Textbook of Biochemistry for Medical Students. 7th ed. JP Medical Publishers , Philadelphia 2013 . Search in Google Scholar

Zhou X, Kenwright DA, Wang S, Hossack JA, Hoskins PR: Fabrication of two flow phantoms for doppler ultrasound imaging. IEEE Trans Ultrason Ferroelectr Freq Control 2017; 64: 53–65. Zhou X Kenwright DA Wang S Hossack JA Hoskins PR : Fabrication of two flow phantoms for doppler ultrasound imaging . IEEE Trans Ultrason Ferroelectr Freq Control 2017 ; 64 : 53 65 . 10.1109/TUFFC.2016.263491927925588 Search in Google Scholar

Oglat AA, Matjafri MZ, Suardi N, Oqlat MA, Oqlat AA, Abdelrahman MA et al.: Characterization and construction of a robust and elastic wall-less flow phantom for high pressure flow rate using Doppler ultrasound applications. Natur Engin Sci 2018; 3: 359–377. Oglat AA Matjafri MZ Suardi N Oqlat MA Oqlat AA Abdelrahman MA : Characterization and construction of a robust and elastic wall-less flow phantom for high pressure flow rate using Doppler ultrasound applications . Natur Engin Sci 2018 ; 3 : 359 377 . Search in Google Scholar

Kim YR, Moon KY, Cho NC, Kweon EY, Lee DW: Measuring blood viscosity in normal tension glaucoma patients. J Korean Ophthalmol Soc 2015; 56: 753–758. Kim YR Moon KY Cho NC Kweon EY Lee DW : Measuring blood viscosity in normal tension glaucoma patients . J Korean Ophthalmol Soc 2015 ; 56 : 753 758 . 10.3341/jkos.2015.56.5.753 Search in Google Scholar

Chunhwa I, Lee D-S, Kyung HA, Ju SO: Viscosity measurement of whole blood with parallel plate rheometers. BioChip J 2020; 14: 179–148. Chunhwa I Lee D-S Kyung HA Ju SO : Viscosity measurement of whole blood with parallel plate rheometers . BioChip J 2020 ; 14 : 179 148 . 10.1007/s13206-020-4202-7 Search in Google Scholar

Oglat A, Suardi N, Matjafri MZ, Oqlat MA, Abdelrahman MA, Oqlat AA: A review of suspension-scattered particles used in blood-mimicking fluid for doppler ultrasound imaging. J Med Ultrasound 2018; 26: 68–76. Oglat A Suardi N Matjafri MZ Oqlat MA Abdelrahman MA Oqlat AA : A review of suspension-scattered particles used in blood-mimicking fluid for doppler ultrasound imaging . J Med Ultrasound 2018 ; 26 : 68 76 . 10.4103/JMU.JMU_1_17602920930065522 Search in Google Scholar

Virani SS, Catellier DJ, Pompeii LA, Nambi V, Hoogeveen RC, Wasserman BA et al.: Relation of cholesterol and lipoprotein parameters with carotid artery plaque characteristics: the Atherosclerosis Risk in Communities (ARIC) carotid MRI study. Atherosclerosis 2011; 19: 596–602. Virani SS Catellier DJ Pompeii LA Nambi V Hoogeveen RC Wasserman BA : Relation of cholesterol and lipoprotein parameters with carotid artery plaque characteristics: the Atherosclerosis Risk in Communities (ARIC) carotid MRI study . Atherosclerosis 2011 ; 19 : 596 602 . 10.1016/j.atherosclerosis.2011.08.001322684521868017 Search in Google Scholar

eISSN:
2451-070X
Language:
English
Publication timeframe:
4 times per year
Journal Subjects:
Medicine, Basic Medical Science, other