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Original Article

Design of a Hydraulic Analog of the Circulatory System for Evaluating Artificial Hearts

Pages 439-449 | Received 11 Dec 1974, Published online: 11 Jul 2009

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Read on this site (2)

Yuhui Shi, Theodosios Korakianitis, Zhongjian Li & Yubing Shi. (2018) Structure and motion design of a mock circulatory test rig. Journal of Medical Engineering & Technology 42:6, pages 443-452.
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G. Ferrari, C. De Lazzari, R. Mimmo & D. G. Ambrosi Tosti. (1994) Mock circulatory system for in vitro reproduction of the left ventricle, the arterial tree and their interaction with a left ventricular assist device. Journal of Medical Engineering & Technology 18:3, pages 87-95.
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Articles from other publishers (46)

Francesco Bardi, Emanuele Gasparotti, Emanuele Vignali, Stéphane Avril & Simona Celi. (2023) A Hybrid Mock Circulatory Loop for Fluid Dynamic Characterization of 3D Anatomical Phantoms. IEEE Transactions on Biomedical Engineering 70:5, pages 1651-1661.
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Ke-Wei Xu, Qi Gao, Min Wan & Ke Zhang. (2023) Mock circulatory loop applications for testing cardiovascular assist devices and in vitro studies. Frontiers in Physiology 14.
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Femke Cappon, Tingting Wu, Theodore Papaioannou, Xinli Du, Po-Lin Hsu & Ashraf W Khir. (2021) Mock circulatory loops used for testing cardiac assist devices: A review of computational and experimental models. The International Journal of Artificial Organs 44:11, pages 793-806.
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A. Z. M. Khudzari, M. R. A. Kadir, K. Osman & A. H. M. Hudzari. 2020. Cardiovascular Engineering. Cardiovascular Engineering 177 200 .
Libera Fresiello & Krzysztof Zieliński. 2020. Mechanical Support for Heart Failure. Mechanical Support for Heart Failure 429 447 .
Johannes Gehron, Julian Zirbes, Markus Bongert, Stefan Schäfer, Martin FiebichGabriele Krombach, Andreas Böning & Philippe Grieshaber. (2019) Development and Validation of a Life-Sized Mock Circulatory Loop of the Human Circulation for Fluid-Mechanical Studies. ASAIO Journal 65:8, pages 788-797.
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Ali Tavakoli Golpaygani, Kamran Hassani, Alireza Karimi & Amin Nokhbe Zaeim. (2019) A numerical analysis on different-generation prototypes of ventricular assist device. International Journal of Modeling, Simulation, and Scientific Computing 10:05, pages 1950029.
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M. Keith Sharp. 2018. Theory and Applications of Heat Transfer in Humans. Theory and Applications of Heat Transfer in Humans 71 118 .
Michael C. Stevens, Andrew Stephens, Abdul-Hakeem H. AlOmari & Francesco Moscato. 2018. Mechanical Circulatory and Respiratory Support. Mechanical Circulatory and Respiratory Support 627 657 .
Jo P. Pauls, Nicole Bartnikowski, So-Hyun Jansen, Einly Lim & Kurt Dasse. 2018. Mechanical Circulatory and Respiratory Support. Mechanical Circulatory and Respiratory Support 407 438 .
Jessica R. Crosby, Katrina J. DeCook, Phat L. Tran, Edward Betterton, Richard G. Smith, Douglas F. Larson, Zain I. Khalpey, Daniel Burkhoff & Marvin J. Slepian. (2017) A Physical Heart Failure Simulation System Utilizing the Total Artificial Heart and Modified Donovan Mock Circulation. Artificial Organs 41:7, pages E52-E65.
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Riccardo Toninato, Silvia Scuri, Vincenzo Tarzia, Gino Gerosa & Francesca M. Susin. (2016) In Vitro Performance Investigation of SynCardia ™ Freedom ® Driver via Patient Simulator Mock Loop . The International Journal of Artificial Organs 39:10, pages 502-508.
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Mumin R. Noor, Chong H. Ho, Kim H. Parker, Andre R. Simon, Nicholas R. Banner & Christopher T. Bowles. (2016) Investigation of the Characteristics of HeartWare HVAD and Thoratec HeartMate II Under Steady and Pulsatile Flow Conditions. Artificial Organs 40:6, pages 549-560.
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Rafeed A. Chaudhury, Victor Atlasman, Girish Pathangey, Nicholas Pracht, Ronald J. Adrian & David H. Frakes. (2016) A High Performance Pulsatile Pump for Aortic Flow Experiments in 3-Dimensional Models. Cardiovascular Engineering and Technology 7:2, pages 148-158.
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Jessica R. Crosby, Katrina J. DeCook, Phat L. Tran, Richard G. Smith, Douglas F. Larson, Zain I. Khalpey, Daniel Burkhoff & Marvin J. Slepian. (2015) Physiological Characterization of the SynCardia Total Artificial Heart in a Mock Circulation System. ASAIO Journal 61:3, pages 274-281.
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Gil Marom, Wei-Che Chiu, Jessica R. Crosby, Katrina J. DeCook, Saurabh Prabhakar, Marc Horner, Marvin J. Slepian & Danny Bluestein. (2014) Numerical Model of Full-Cardiac Cycle Hemodynamics in a Total Artificial Heart and the Effect of Its Size on Platelet Activation. Journal of Cardiovascular Translational Research 7:9, pages 788-796.
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M. Keith Sharp, Jerry Joseph Batzel & Jean-Pierre Montani. (2013) Space physiology IV: mathematical modeling of the cardiovascular system in space exploration. European Journal of Applied Physiology 113:8, pages 1919-1937.
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Eiki Akagawa, Hwansung Lee, Eisuke Tatsumi, Akihiko Homma, Tomonori Tsukiya & Yoshiyuki Taenaka. (2011) Flow visualization for different port angles of a pulsatile ventricular assist device. Journal of Artificial Organs 15:2, pages 119-127.
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S Vandenberghe, F Shu, D K Arnold & J F Antaki. (2011) A simple, economical, and effective portable paediatric mock circulatory system. Proceedings of the Institution of Mechanical Engineers, Part H: Journal of Engineering in Medicine 225:7, pages 648-656.
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Hwansung Lee, Eisuke Tatsumi & Yoshiyuki Taenaka. (2010) Flow Visualization of A Monoleaflet and Bileaflet Mechanical Heart Valve in A Pneumatic Ventricular Assist Device Using A PIV System. ASAIO Journal 56:3, pages 186-193.
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Hwansung Lee, Eisuke Tatsumi & Yoshiyuki Taenaka. (2009) Effects of the Driving Condition of a Pneumatic Ventricular Assist Device on the Cavitation Intensity of the Inlet and Outlet Mechanical Heart Valves. ASAIO Journal 55:4, pages 328-334.
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Hwansung Lee, Eisuke Tatsumi & Yoshiyuki Taenaka. (2009) Experimental Study on the Reynolds and Viscous Shear Stress of Bileaflet Mechanical Heart Valves in a Pneumatic Ventricular Assist Device. ASAIO Journal 55:4, pages 348-354.
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Francesco Maria Colacino, Maurizio Arabia & Gionata Fragomeni. 2009. Handbook of Research on Computational Grid Technologies for Life Sciences, Biomedicine, and Healthcare. Handbook of Research on Computational Grid Technologies for Life Sciences, Biomedicine, and Healthcare 410 424 .
Francesco Maria Colacino, Francesco Moscato, Fabio Piedimonte, Guido Danieli, Salvatore Nicosia & Maurizio Arabia. (2008) A Modified Elastance Model to Control Mock Ventricles in Real-Time: Numerical and Experimental Validation. ASAIO Journal 54:6, pages 563-573.
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Hassan A. Khalil, Daniel T. Kerr, Matthew A. Franchek, Ralph W. Metcalfe, Robert J. Benkowski, William E. Cohn, Egemen Tuzun, Branislav Radovancevic, O H. Frazier & Kamuran A. Kadipasaoglu. (2008) Continuous Flow Total Artificial Heart: Modeling and Feedback Control in a Mock Circulatory System. ASAIO Journal 54:3, pages 249-255.
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Hyuk Choi, Seung Hoon Paik, Kwang Ho Lee, Byoung Goo Min & Yong Soon Won. (2007) Durability improvement of polymer chamber of pulsatile extracorporeal life support system in terms of mechanical change. Medical & Biological Engineering & Computing 45:11, pages 1127-1135.
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F.M. Colacino, M. Arabia, F. Moscato & G.A. Danieli. (2007) Modeling, analysis, and validation of a pneumatically driven left ventricle for use in mock circulatory systems. Medical Engineering & Physics 29:8, pages 829-839.
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Eiki Akagawa, Hwansung Lee, Eisuke Tatsumi, Akihiko Homma, Tomonori Tsukiya, Nobumasa Katagiri, Yukihide Kakuta, Tomohiro Nishinaka, Toshihide Mizuno, Kei Ota, Rei Kansaku & Yoshiyuki Taenaka. (2007) Effects of mechanical valve orifice direction on the flow pattern in a ventricular assist device. Journal of Artificial Organs 10:2, pages 85-91.
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Martin J. Conlon, Donald L. Russell & Tofy Mussivand. (2006) Development of a Mathematical Model of the Human Circulatory System. Annals of Biomedical Engineering 34:9, pages 1400-1413.
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Hwansung Lee, Yoshiyuki Taenaka & Soichiro Kitamura. (2005) Mechanisms of Mechanical Heart Valve Cavitation in an Electrohydraulic Total Artificial Heart. ASAIO Journal 51:3, pages 208-213.
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M.S. Sacks, G.C. EngelmayrJr.Jr., D.K. Hildebrand & J.E. MayerJr.Jr.. 2005. Bioreactors for Tissue Engineering. Bioreactors for Tissue Engineering 235 267 .
M.-F. Guidoin & R.G. Guidoin. (2004) Sélection des matériaux pour la conception et le développement du boîtier d'un cœur artificiel total implantable : supériorité du titane et de ses alliages. ITBM-RBM 25:3, pages 126-138.
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Heinrich Schima, Michael Vollkron, Herbert Boehm, Wilfried Röthy, Markus Haisjackl, Georg Wieselthaler & Ernst Wolner. (2004) Weaning of rotary blood pump recipients after myocardial recovery: a computer study of changes in cardiac energetics. The Journal of Thoracic and Cardiovascular Surgery 127:6, pages 1743-1750.
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M. Kozarski, G. Ferrari, F. Clemente, K. Górczyńska, C. De Lazzari, M. Darowski, R. Mimmo, G. Tosti & M. Guaragno. (2018) A Hybrid Mock Circulatory System: Development and Testing of an Electro-hydraulic Impedance Simulator. The International Journal of Artificial Organs 26:1, pages 53-63.
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Seongjin Choi, J.E. Antaki, R. Boston & D. Thomas. (2001) A sensorless approach to control of a turbodynamic left ventricular assist system. IEEE Transactions on Control Systems Technology 9:3, pages 473-482.
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Yung Ho Jo, Jae Soon Choi, Wook Eun Kim, Joon Woo Park, Won Woo Choi, Hee Chan Kim, Won Gon Kim, Hyuck Ahn, Joon Ryang Rho & Byoung Goo Min. (2000) Analysis of the Interventricular Pressure Waveform in the Moving-Actuator Total Artificial Heart. ASAIO Journal 46:6, pages 749-755.
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G. Ferrari, A. Nicoletti, C. De Lazzari, F. Clemente, G. Tosti, M. Guaragno, R. Mimmo, D. Ambrosi & K. Górczyńaska. (2018) A Physical Model of the Human Systemic Arterial Tree. The International Journal of Artificial Organs 23:9, pages 647-657.
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Hideichi Wada, Shintaro Fukunaga, Masanobu Watari, Katsuhiko Imai, Hiroshi Sakai, Hidenori Shibamura, Taijiro Sueda & Yuichiro Matsuura. (2001) Eccentric Roller Type Total Artificial Heart Creating Interatrial Shunt. Artificial Organs 24:8, pages 671-675.
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Patrick Vermette, Jules Thibault & Gaétan Laroche. (2002) A Continuous and Pulsatile Flow Circulation System for Evaluation of Cardiovascular Devices. Artificial Organs 22:9, pages 746-752.
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Masafumi Sueshiro, Shintaro Fukunaga, Shinji Hirai, Taijiro Sueda & Yuichiro Matsuura. (2002) Eccentric Roller Type Total Artificial Heart Designed for Implantation. Artificial Organs 22:6, pages 451-457.
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G. Ferrari, C. DE Lazzarl, R. Mimmo, G. Tostl, D. Ambrosi & K. Gorczynska. (1998) A computer controlled mock circulatory system for mono- and biventricular assist device testing. The International Journal of Artificial Organs 21:1, pages 26-36.
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H. Yamada, M. Yamaguchi, K. Kobayashi, Y. Matsuura & H. Takano. (1995) Development and test of a linear motor-driven total artificial heart. IEEE Engineering in Medicine and Biology Magazine 14:1, pages 84-90.
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B. Knierbein, H. Reul, R. Eilers, M. Lange, R. Kaufmann & G. Rau. (2018) Compact Mock Loops of the Systemic and Pulmonary Circulation for Blood Pump Testing. The International Journal of Artificial Organs 15:1, pages 40-48.
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H. Reul. 1992. Advances in Cardiovascular Engineering. Advances in Cardiovascular Engineering 237 258 .
E. P. Kuznetsov, V. I. Antropov, I. A. Gus'kov & M. A. Khanin. (1985) Study of control efficiency for auxiliary blood circulation using mathematical and physical simultation. Biomedical Engineering 19:3, pages 91-95.
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M. Arabia & T. Akutsu. (1984) A new test circulatory system for research in cardiovascular engineering. Annals of Biomedical Engineering 12:1, pages 29-48.
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