Profil

Kosta Sarah

Main Referenced Co-authors
Dauby, Pierre  (21)
Pironet, Antoine  (11)
Lascano, Elena (10)
Negroni, Jorge (10)
Desaive, Thomas  (7)
Main Referenced Keywords
biophysics (3); cardiovascular modeling (3); Cardiovascular system (2); Mathematical models (2); Multiscale models (2);
Main Referenced Disciplines
Physical, chemical, mathematical & earth Sciences: Multidisciplinary, general & others (14)
Cardiovascular & respiratory systems (7)
Engineering, computing & technology: Multidisciplinary, general & others (6)
Biochemistry, biophysics & molecular biology (2)
General & internal medicine (1)

Publications (total 23)

The most downloaded
340 downloads
Kosta, S. (2019). In silico analysis of the Frank-Starling mechanism [Doctoral thesis, ULiège - Université de Liège]. ORBi-University of Liège. https://orbi.uliege.be/handle/2268/240548 https://hdl.handle.net/2268/240548

The most cited

25 citations (Scopus®)

Pironet, A., Desaive, T., Kosta, S., Lucas, A., Paeme, S., Collet, A., Pretty, C., Kolh, P., & Dauby, P. (2013). A multi-scale cardiovascular system model can account for the load-dependence of the end-systolic pressure-volume relationship. BioMedical Engineering OnLine, 12 (1), 8. doi:10.1186/1475-925X-12-8 https://hdl.handle.net/2268/142146

Kosta, S., & Dauby, P. (2021). Frank-Starling mechanism, fluid responsiveness, and length-dependent activation: Unravelling the multiscale behaviors with an in silico analysis. PLoS Computational Biology, 17 (10), 1009469. doi:10.1371/journal.pcbi.1009469
Peer Reviewed verified by ORBi

Kosta, S., Lascano, E., Negroni, J., & Dauby, P. (December 2019). In silico analysis of the Frank-Starling mechanism and its relationship with vascular filling therapy [Poster presentation]. Cardiac Physiome 2019, Maastricht, Netherlands.

Kosta, S. (2019). In silico analysis of the Frank-Starling mechanism [Doctoral thesis, ULiège - Université de Liège]. ORBi-University of Liège. https://orbi.uliege.be/handle/2268/240548

Lascano, E. C., Felice, J. I., Wray, S., Kosta, S., Dauby, P., Cabrera-Fischer, E. I., & Negroni, J. A. (2018). Experimental assessment of a myocyte-based multiscale model of cardiac contractile dysfunction. Journal of Theoretical Biology, 456, 16-28. doi:10.1016/j.jtbi.2018.07.038

Kosta, S., Negroni, J., Lascano, E., & Dauby, P. (February 2017). Multiscale model of the human cardiovascular system: Description of heart failure and comparison of contractility indices. Mathematical Biosciences, 284, 71-79. doi:10.1016/j.mbs.2016.05.007
Peer Reviewed verified by ORBi

Kosta, S., Pironet, A., Negroni, J., Lascano, E., & Dauby, P. (01 February 2017). A multiscale model of the human cardiovascular system can account for the Frank-Starling effect on vascular filling therapy [Poster presentation]. GIGA-DAY 2017, Liège, Belgium.

Kosta, S., Pironet, A., Negroni, J., Lascano, E., & Dauby, P. (27 September 2016). Fluid responsiveness and the Frank-Starling mechanism: a theoretical study with a multiscale model of the cardiovascular system [Paper presentation]. Virtual Physiological Human Conference 2016, Amsterdam, Netherlands.

Kosta, S., Hoebeke, M., & Dauby, P. (20 May 2016). Length-dependence of cardiac fibers EPR spectra: a new experimental setup [Poster presentation]. 24th Benelux EPR Society Meeting, Liège, Belgium.

Negroni, J., Cabrera-Fischer, E., Kosta, S., Dauby, P., & Lascano, E. (21 April 2016). Heart failure assessment with a multiscale model [Poster presentation]. 2016 XXII ISHR World Congress.

Kosta, S., Negroni, J., Lascano, E., & Dauby, P. (2015). Cell-based description of ventricular contraction in a model of the human cardiovascular system. IFAC-PapersOnLine, 147-152. doi:10.1016/j.ifacol.2015.10.130
Peer Reviewed verified by ORBi

Kosta, S., Negroni, J., Lascano, E., & Dauby, P. (31 August 2015). Cell-based description of ventricular contraction in a model of the human cardiovascular system [Poster presentation]. 9th IFAC Symposium on Biological and Medical Systems (BMS 2015), Berlin, Germany.

Kosta, S., Negroni, J., Lascano, E., & Dauby, P. (13 May 2015). Multiscale model of the human cardiovascular system: healthy and pathological behaviours [Poster presentation]. 2015 conference of the Belgian Physical Society.

MORIMONT, P., Desaive, T., TCHANA-SATO, V., JANSSEN, N., CAGNINA, A., Habran, S., Kosta, S., HELLA, D., BLAFFART, F., Kolh, P., Defraigne, J.-O., LAMBERMONT, B., & GUIOT, J. (December 2014). 0681. Effects of veno-venous co2 removal therapy on pulmonary circulation in an ARDS model. Intensive Care Medicine Experimental, 2 (S1), 45.
Peer Reviewed verified by ORBi

Kosta, S., Pironet, A., Negroni, J., Lascano, E., & Dauby, P. (2014). Multi-scale model of the cardiovascular system. In 13th Belgian National Day on Biomedical Engineering.
Peer reviewed

Kosta, S., Pironet, A., Negroni, J., Lascano, E., & Dauby, P. (2014). Multi-scale model of the cardiovascular system [Poster presentation]. 13th Belgian National Day on Biomedical Engineering, Bruxelles, Belgium.

Pironet, A., Dauby, P., Paeme, S., Kosta, S., Chase, J. G., & Desaive, T. (April 2013). Simulation of Left Atrial Function Using a Multi-Scale Model of the Cardiovascular System. PLoS ONE, 8 (6), 65146. doi:10.1371/journal.pone.0065146
Peer Reviewed verified by ORBi

Pironet, A., Dauby, P., Kosta, S., Paeme, S., Chase, J. G., & Desaive, T. (2013). A Multi­‐Scale Computer Model of the Cardiovascular System Can Account for the Three Roles of the Left Atrium. In Abstract Book GIGA-Day.
Peer reviewed

Pironet, A., Dauby, P., Kosta, S., Paeme, S., Chase, J. G., & Desaive, T. (28 January 2013). A Multi­‐Scale Computer Model of the Cardiovascular System Can Account for the Three Roles of the Left Atrium [Poster presentation]. GIGA-Day 2012.

Pironet, A., Dauby, P., Kosta, S., Paeme, S., Chase, J. G., KOLH, P., & Desaive, T. (2013). Effect of abrupt preload reduction on left atrial and ventricular pressures in a multi-scale mathematical model of the cardiovascular system [Poster presentation]. ESC Congress 2013.

Pironet, A., Dauby, P., Kosta, S., Paeme, S., Chase, J. G., & Desaive, T. (2013). Effect of abrupt preload reduction on left atrial and ventricular pressures in a multi-scale mathematical model of the cardiovascular system. European Heart Journal Supplements: Journal of the European Society of Cardiology, 34, 602.
Peer Reviewed verified by ORBi

Pironet, A., Desaive, T., Kosta, S., Lucas, A., Paeme, S., Collet, A., Pretty, C., Kolh, P., & Dauby, P. (2013). A multi-scale cardiovascular system model can account for the load-dependence of the end-systolic pressure-volume relationship. BioMedical Engineering OnLine, 12 (1), 8. doi:10.1186/1475-925X-12-8
Peer Reviewed verified by ORBi

Kosta, S., Pironet, A., & Dauby, P. (2012). The rabbit left ventricle modeling at the cellular scale: application to flow-clamp experiments. In Proceedings of the 11th Belgian National Day on Biomedical Engineering.
Peer reviewed

Kosta, S., Pironet, A., & Dauby, P. (December 2012). The rabbit left ventricle modeling at the cellular scale: application to flow-clamp experiments [Poster presentation]. 11th Belgian National Day on Biomedical Engineering, Bruxelles, Belgium.

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