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Journal of Theoretical Biology|November 17, 2009
Fractal analysis of vascular networks: insights from morphogenesisSylvie Lorthois, Francis CassotMicrovascular Research|December 3, 2013
Tortuosity and other vessel attributes for arterioles and venules of the human cerebral cortexSylvie Lorthois, Frederic Lauwers, Francis CassotNature Communications|December 16, 2021
Network-driven anomalous transport is a fundamental component of brain microvascular dysfunctionFlorian Goirand, Tanguy Le Borgne, Sylvie LorthoisJournal of Colloid and Interface Science|August 15, 2001
Experimental Study of Fibrin/Fibrin-Specific Molecular Interactions Using a Sphere/Plane Adhesion ModelSylvie Lorthois, Philippe Schmitz, Eduardo Anglés-CanoMicrovascular Research|September 12, 2012
Velocimetry of red blood cells in microvessels by the dual-slit method: effect of velocity gradientsSophie Roman, Sylvie Lorthois, Paul Duru, et al.Plos One|January 12, 2018
Multiscale modelling of blood flow in cerebral microcirculation: Details at capillary scale control accuracy at the level of the cortexMyriam Peyrounette, Yohan Davit, Michel Quintard, et al.Biomicrofluidics|May 19, 2016
Going beyond 20 μm-sized channels for studying red blood cell phase separation in microfluidic bifurcationsSophie Roman, Adlan Merlo, Paul Duru, et al.Journal of Biomechanics|May 24, 2011
Wave front migration of endothelial cells in a bone-implant interfaceGeorges Khalil, Sylvie Lorthois, Manuel Marcoux, et al.Microcirculation (New York, N.Y. : 1994)|March 21, 2009
Scaling laws for branching vessels of human cerebral cortexFrancis Cassot, Frederic Lauwers, Sylvie Lorthois, et al.Acta Neurochirurgica. Supplement|May 12, 2016
Bernoulli's Principle Applied to Brain Fluids: Intracranial Pressure Does Not Drive Cerebral Perfusion or CSF FlowEric Schmidt, Maxime Ros, Emmanuel Moyse, et al.Pageof 3