189
Views
43
CrossRef citations to date
0
Altmetric
Original Article

Effect of LVAD outflow conduit insertion angle on flow through the native aorta

, , &
Pages 105-109 | Published online: 09 Jul 2009

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (4)

Ray Prather, Eduardo Divo, Alain Kassab & William DeCampli. (2022) In-silico analysis of outflow graft implantation orientation and cerebral thromboembolism incidence for full LVAD support. Computer Methods in Biomechanics and Biomedical Engineering 25:11, pages 1249-1261.
Read now
ThuyTien Nguyen, I. Ricardo Argueta-Morales, Stephen Guimond, William Clark, Andres Ceballos, Ruben Osorio, Eduardo A. Divo, William M. De Campli & Alain J. Kassab. (2016) Computational analysis of pediatric ventricular assist device implantation to decrease cerebral particulate embolization. Computer Methods in Biomechanics and Biomedical Engineering 19:7, pages 789-799.
Read now
Andres F. Osorio, Ruben Osorio, Andres Ceballos, Reginald Tran, William Clark, Eduardo A. Divo, I. Ricardo Argueta-Morales, Alain J. Kassab & William M. DeCampli. (2013) Computational fluid dynamics analysis of surgical adjustment of left ventricular assist device implantation to minimise stroke risk. Computer Methods in Biomechanics and Biomedical Engineering 16:6, pages 622-638.
Read now
Alistair Graham Brown, Yubing Shi, Andreas Arndt, Jörg Müller, Patricia Lawford & David Rodney Hose. (2012) Importance of realistic LVAD profiles for assisted aortic simulations: evaluation of optimal outflow anastomosis locations. Computer Methods in Biomechanics and Biomedical Engineering 15:6, pages 669-680.
Read now

Articles from other publishers (39)

Seraina A. Dual, Jennifer Cowger, Ellen Roche & Aditi Nayak. (2024) The Future of Durable Mechanical Circulatory Support: Emerging Technological Innovations and Considerations to Enable Evolution of the Field. Journal of Cardiac Failure 30:4, pages 596-609.
Crossref
Akshita Sahni, Erin E. McIntyre, Jay D. Pal & Debanjan Mukherjee. (2023) Quantitative Assessment of Aortic Hemodynamics for Varying Left Ventricular Assist Device Outflow Graft Angles and Flow Pulsation. Annals of Biomedical Engineering 51:6, pages 1226-1243.
Crossref
Mahwash Kassi, Tanushree Agrawal, Jiaqiong Xu, Hernan Gerardo Marcos-Abdala, Raquel Araujo-Gutierrez, Thomas Macgillivray, Erik E Suarez, Rayan Yousefzai, Nadia Fida, Ju H Kim, Imad Hussain, Ashrith Guha, Barry Trachtenberg, Arvind Bhimaraj, Su Min Chang & Jerry Estep. (2023) Outflow cannula alignment in continuous flow left ventricular devices is associated with stroke. The International Journal of Artificial Organs 46:4, pages 226-234.
Crossref
Michele Girfoglio, Francesco Ballarin, Giuseppe Infantino, Francesca Nicoló, Andrea Montalto, Gianluigi Rozza, Roberto Scrofani, Marina Comisso & Francesco Musumeci. (2022) Non-intrusive PODI-ROM for patient-specific aortic blood flow in presence of a LVAD device. Medical Engineering & Physics 107, pages 103849.
Crossref
Alfonso Santiago, Constantine Butakoff, Beatriz Eguzkitza, Richard A. Gray, Karen May-Newman, Pras Pathmanathan, Vi Vu & Mariano Vázquez. (2022) Design and execution of a verification, validation, and uncertainty quantification plan for a numerical model of left ventricular flow after LVAD implantation. PLOS Computational Biology 18:6, pages e1010141.
Crossref
Jianfei Song, Louis Marcel, Mathieu Specklin, Mickael Lescroart, Jean-Louis Hébert & Smaine Kouidri. (2022) Numerical study of hemolysis induced by shear stress at the junction between aorta and ventricular assistance device outflow graft. International Journal of Heat and Fluid Flow 95, pages 108953.
Crossref
Carlotta Sciaccaluga, Hatem Soliman-Aboumarie, Nicolò Sisti, Giulia Elena Mandoli, Paolo Cameli, Elisa Bigio, Serafina Valente, Sergio Mondillo & Matteo Cameli. (2021) Echocardiography for left ventricular assist device implantation and evaluation: an indispensable tool. Heart Failure Reviews 27:3, pages 891-902.
Crossref
Ray Prather, Eduardo Divo, Alain Kassab & William DeCampli. (2021) Computational Fluid Dynamics Study of Cerebral Thromboembolism Risk in Ventricular Assist Device Patients: Effects of Pulsatility and Thrombus Origin. Journal of Biomechanical Engineering 143:9.
Crossref
Jianfei Song, Louis Marcel, Mathieu Specklin & Smaine Kouidri. (2021) Numerical study of shear-based hemolysis in aorta with left ventricular assistance device. E3S Web of Conferences 321, pages 03009.
Crossref
Suneet N. PurohitWilliam K. CornwellIIIIIIJay D. PalJoAnn LindenfeldAmrut V. Ambardekar. (2018) Living Without a Pulse. Circulation: Heart Failure 11:6.
Crossref
Ray O. Prather, Alain Kassab, Marcus William Ni, Eduardo Divo, Ricardo Argueta-Morales & William M. DeCampli. (2017) Multi-scale pulsatile CFD modeling of thrombus transport in a patient-specific LVAD implantation. International Journal of Numerical Methods for Heat & Fluid Flow 27:5, pages 1022-1039.
Crossref
Wei-Che ChiuYared AlemuAllison J. McLartyShmuel EinavMarvin J. SlepianDanny Bluestein. (2017) Ventricular Assist Device Implantation Configurations Impact Overall Mechanical Circulatory Support System Thrombogenic Potential. ASAIO Journal 63:3, pages 285-292.
Crossref
Jonathan Grinstein, Eric Kruse, Keith Collins, Gabriel Sayer, Savitri Fedson, Gene H. Kim, Nitasha Sarswat, Sirtaz Adatya, Takeyoshi Ota, Valluvan Jeevanandam, Victor Mor-Avi, Nir Uriel & Roberto M. Lang. (2016) Screening for Outflow Cannula Malfunction of Left Ventricular Assist Devices (LVADs) With the Use of Doppler Echocardiography: New LVAD-Specific Reference Values for Contemporary Devices. Journal of Cardiac Failure 22:10, pages 808-814.
Crossref
Sagar Kadakia, Ryan Moore, Vishnu Ambur & Yoshiya Toyoda. (2016) Current status of the implantable LVAD. General Thoracic and Cardiovascular Surgery 64:9, pages 501-508.
Crossref
Rosario Mazzitelli, Fergal Boyle, Eoin Murphy, Attilio Renzulli & Gionata Fragomeni. (2016) Numerical prediction of the effect of aortic Left Ventricular Assist Device outflow-graft anastomosis location. Biocybernetics and Biomedical Engineering 36:2, pages 327-343.
Crossref
William D. Clark, Benjamin A. Eslahpazir, I. Ricardo Argueta-Morales, Alain J. Kassab, Eduardo A. Divo & William M. DeCampli. (2015) Comparison Between Bench-Top and Computational Modelling of Cerebral Thromboembolism in Ventricular Assist Device Circulation. Cardiovascular Engineering and Technology 6:3, pages 242-255.
Crossref
Mina Berty Farag, Christof Karmonik, Fabian Rengier, Matthias Loebe, Matthias Karck, Hendrik Von Tengg-Kobligk, Arjang Ruhparwar & Sasan Partovi. (2014) Review of Recent Results using Computational Fluid Dynamics Simulations in Patients Receiving Mechanical Assist Devices for End-Stage Heart Failure. Methodist DeBakey Cardiovascular Journal 10:3, pages 185.
Crossref
I. Ricardo Argueta-Morales, Reginald Tran, Andres Ceballos, William Clark, Ruben Osorio, Eduardo A. Divo, Alain J. Kassab & William M. DeCampli. (2014) Mathematical Modeling of Patient-Specific Ventricular Assist Device Implantation to Reduce Particulate Embolization Rate to Cerebral Vessels. Journal of Biomechanical Engineering 136:7.
Crossref
Maria Chiara Todaro, Bijoy K. Khandheria, Timothy E. Paterick, Matt M. Umland & Vinay Thohan. (2014) The Practical Role of Echocardiography in Selection, Implantation, and Management of Patients Requiring LVAD Therapy. Current Cardiology Reports 16:4.
Crossref
Salil V. Deo, Vikas Sharma, Yang Hyun Cho, Ishan K. Shah & Soon J. Park. (2014) De Novo Aortic Insufficiency During Long-Term Support on a Left Ventricular Assist Device. ASAIO Journal 60:2, pages 183-188.
Crossref
Michelle Capdeville & Nicholas G. Smedira. (2013) Advances and Future Directions for Mechanical Circulatory Support. Anesthesiology Clinics 31:2, pages 321-353.
Crossref
Christof Karmonik, Sasan Partovi, Matthias Loebe, Bastian Schmack, Ali Ghodsizad, Mark R. Robbin, George P. Noon, Klaus Kallenbach, Matthias Karck, Mark G. Davies, Alan B. Lumsden & Arjang Ruhparwar. (2012) Influence of LVAD Cannula Outflow Tract Location on Hemodynamics in the Ascending Aorta. ASAIO Journal 58:6, pages 562-567.
Crossref
Khawaja A. Ammar, Matt M. Umland, Christopher Kramer, Nasir Sulemanjee, M. Fuad Jan, Bijoy K. Khandheria, James B. Seward & Timothy E. Paterick. (2012) The ABCs of left ventricular assist device echocardiography: a systematic approach. European Heart Journal - Cardiovascular Imaging 13:11, pages 885-899.
Crossref
Gizem Inci & Esra Sorgüven. (2012) Effect of LVAD Outlet Graft Anastomosis Angle on the Aortic Valve, Wall, and Flow. ASAIO Journal 58:4, pages 373-381.
Crossref
Emanuele Catena & Giordano Tasca. (2012) Role of echocardiography in the perioperative management of mechanical circulatory assistance. Best Practice & Research Clinical Anaesthesiology 26:2, pages 199-216.
Crossref
Jean Bonnemain, Simone Deparis & Alfio Quarteroni. 2012. Imagine Math. Imagine Math 211 224 .
Annalisa Quaini, Sunčica Čanić & David Paniagua. (2011) Numerical characterization of hemodynamics conditions near aortic valve after implantation of left ventricular assist device. Mathematical Biosciences and Engineering 8:3, pages 785-806.
Crossref
Nenad Filipovic & Heinrich Schima. (2011) Numerical Simulation of the Flow Field Within the Aortic Arch During Cardiac Assist. Artificial Organs 35:4.
Crossref
Ravi Rasalingam, Stephanie N. Johnson, Kyle R. Bilhorn, Pei-Hsiu Huang, Majesh Makan, Nader Moazami & Julio E. Pérez. (2011) Transthoracic Echocardiographic Assessment of Continuous-Flow Left Ventricular Assist Devices. Journal of the American Society of Echocardiography 24:2, pages 135-148.
Crossref
Yan Topilsky, Simon Maltais, Jae K. Oh, Fawn W. Atchison, Louis P. Perrault, Michel Carrier & Soon J. Park. (2011) Focused Review on Transthoracic Echocardiographic Assessment of Patients with Continuous Axial Left Ventricular Assist Devices. Cardiology Research and Practice 2011, pages 1-11.
Crossref
Karen May-Newman. 2010. Computational Cardiovascular Mechanics. Computational Cardiovascular Mechanics 297 316 .
Javier G. Castillo, Anelechi C. Anyanwu, David H. Adams, Thandiwe Nyirenda & Gregory W. Fischer. (2009) Real-Time 3-Dimensional Echocardiographic Assessment of Current Continuous-Flow Rotary Left Ventricular Assist Devices. Journal of Cardiothoracic and Vascular Anesthesia 23:5, pages 702-710.
Crossref
Y. Bazilevs, J.R. Gohean, T.J.R. Hughes, R.D. Moser & Y. Zhang. (2009) Patient-specific isogeometric fluid–structure interaction analysis of thoracic aortic blood flow due to implantation of the Jarvik 2000 left ventricular assist device. Computer Methods in Applied Mechanics and Engineering 198:45-46, pages 3534-3550.
Crossref
Kerem Pekkan, Onur Dur, Kartik Sundareswaran, Kirk Kanter, Mark Fogel, Ajit Yoganathan & Akif Ündar. (2008) Neonatal Aortic Arch Hemodynamics and Perfusion During Cardiopulmonary Bypass. Journal of Biomechanical Engineering 130:6.
Crossref
Christoph L. Bara & Janko F. Verhey. (2008) Simulation of the fluid dynamics in artificial aortic roots: comparison of two different types of prostheses. Journal of Artificial Organs 11:3, pages 123-129.
Crossref
Siriluk Chumnanvej, Malissa J. Wood, Thomas E. MacGillivray & Marcos F. Vidal Melo. (2007) Perioperative Echocardiographic Examination for Ventricular Assist Device Implantation. Anesthesia & Analgesia 105:3, pages 583-601.
Crossref
Karen May-Newman, Brian Hillen & Walter Dembitsky. (2006) Effect of Left Ventricular Assist Device Outflow Conduit Anastomosis Location on Flow Patterns in the Native Aorta. ASAIO Journal 52:2, pages 132-139.
Crossref
Ayesha S. Bryant, William L. Holman, Navin C. Nanda, Srinivas Vengala, Margaret S. Blood, Salpy V. Pamboukian & James K. Kirklin. (2006) Native Aortic Valve Insufficiency in Patients With Left Ventricular Assist Devices. The Annals of Thoracic Surgery 81:2, pages e6-e8.
Crossref
Arielle Drummond, Timothy Bachman & James Antaki. 2006. Computational Science – ICCS 2006. Computational Science – ICCS 2006 855 861 .

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.