A two-compartment model of pulmonary nitric oxide exchange dynamics NM Tsoukias, SC George Journal of applied physiology 85 (2), 653-666, 1998 | 584 | 1998 |
Contractile pericytes determine the direction of blood flow at capillary junctions AL Gonzales, NR Klug, A Moshkforoush, JC Lee, FK Lee, B Shui, ... Proceedings of the National Academy of Sciences 117 (43), 27022-27033, 2020 | 188 | 2020 |
Single-exhalation profiles of NO and CO2 in humans: effect of dynamically changing flow rate NM Tsoukias, Z Tannous, AF Wilson, SC George Journal of Applied Physiology 85 (2), 642-652, 1998 | 142 | 1998 |
Endothelial Ca2+ wavelets and the induction of myoendothelial feedback CHT Tran, MS Taylor, F Plane, S Nagaraja, NM Tsoukias, V Solodushko, ... American Journal of Physiology-Cell Physiology 302 (8), C1226-C1242, 2012 | 133 | 2012 |
Model of nitric oxide diffusion in an arteriole: impact of hemoglobin-based blood substitutes M Kavdia, NM Tsoukias, AS Popel American Journal of Physiology-Heart and Circulatory Physiology 282 (6 …, 2002 | 131 | 2002 |
A single-breath technique with variable flow rate to characterize nitric oxide exchange dynamics in the lungs NM Tsoukias, HW Shin, AF Wilson, SC George Journal of Applied Physiology 91 (1), 477-487, 2001 | 114 | 2001 |
A mathematical model of Ca2+ dynamics in rat mesenteric smooth muscle cell: agonist and NO stimulation A Kapela, A Bezerianos, NM Tsoukias Journal of theoretical biology 253 (2), 238-260, 2008 | 111 | 2008 |
Effect of carbon nanotube and aluminum oxide addition on plasma-sprayed hydroxyapatite coating's mechanical properties and biocompatibility JE Tercero, S Namin, D Lahiri, K Balani, N Tsoukias, A Agarwal Materials Science and Engineering: C 29 (7), 2195-2202, 2009 | 110 | 2009 |
A theoretical model of nitric oxide transport in arterioles: frequency-vs. amplitude-dependent control of cGMP formation NM Tsoukias, M Kavdia, AS Popel American Journal of Physiology-Heart and Circulatory Physiology 286 (3 …, 2004 | 103 | 2004 |
Carbon nanotube reinforced polylactide− caprolactone copolymer: mechanical strengthening and interaction with human osteoblasts in vitro D Lahiri, F Rouzaud, S Namin, AK Keshri, JJ Valdés, L Kos, N Tsoukias, ... ACS applied materials & interfaces 1 (11), 2470-2476, 2009 | 97 | 2009 |
Erythrocyte consumption of nitric oxide in presence and absence of plasma-based hemoglobin NM Tsoukias, AS Popel American Journal of Physiology-Heart and Circulatory Physiology 282 (6 …, 2002 | 97 | 2002 |
A mathematical model of plasma membrane electrophysiology and calcium dynamics in vascular endothelial cells HS Silva, A Kapela, NM Tsoukias American Journal of Physiology-Cell Physiology 293 (1), C277-C293, 2007 | 95 | 2007 |
Nitric oxide bioavailability in the microcirculation: insights from mathematical models NM Tsoukias Microcirculation 15 (8), 813-834, 2008 | 89 | 2008 |
A computational model of oxygen transport in skeletal muscle for sprouting and splitting modes of angiogenesis JW Ji, NM Tsoukias, D Goldman, AS Popel Journal of theoretical biology 241 (1), 94-108, 2006 | 78 | 2006 |
Kinetic analysis of DAF-FM activation by NO: Toward calibration of a NO-sensitive fluorescent dye SM Namin, S Nofallah, MS Joshi, K Kavallieratos, NM Tsoukias Nitric oxide 28, 39-46, 2013 | 73 | 2013 |
A computational model of oxygen delivery by hemoglobin-based oxygen carriers in three-dimensional microvascular networks NM Tsoukias, D Goldman, A Vadapalli, RN Pittman, AS Popel Journal of theoretical biology 248 (4), 657-674, 2007 | 68 | 2007 |
A model of nitric oxide capillary exchange NM Tsoukias, AS Popel Microcirculation 10 (6), 479-495, 2003 | 65 | 2003 |
The capillary Kir channel as sensor and amplifier of neuronal signals: Modeling insights on K+-mediated neurovascular communication A Moshkforoush, B Ashenagar, OF Harraz, F Dabertrand, TA Longden, ... Proceedings of the National Academy of Sciences 117 (28), 16626-16637, 2020 | 63 | 2020 |
A mathematical model of vasoreactivity in rat mesenteric arterioles. II. Conducted vasoreactivity A Kapela, S Nagaraja, NM Tsoukias American Journal of Physiology-Heart and Circulatory Physiology 298 (1), H52-H65, 2010 | 63 | 2010 |
Endothelial mitochondria regulate the intracellular Ca2+ response to fluid shear stress CG Scheitlin, JA Julian, S Shanmughapriya, M Madesh, NM Tsoukias, ... American Journal of Physiology-Cell Physiology 310 (6), C479-C490, 2016 | 50 | 2016 |