A
Arthur Le Gall
Researcher at University of Paris
Publications - 19
Citations - 267
Arthur Le Gall is an academic researcher from University of Paris. The author has contributed to research in topics: Afterload & Pulse pressure. The author has an hindex of 7, co-authored 19 publications receiving 170 citations. Previous affiliations of Arthur Le Gall include Cochin University of Science and Technology & École Polytechnique.
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High Prevalence of Deep Vein Thrombosis in Mechanically Ventilated COVID-19 Patients.
Sebastian Voicu,Philippe Bonnin,Alain Stepanian,Benjamin G. Chousterman,Arthur Le Gall,Isabelle Malissin,Nicolas Deye,Virgine Siguret,Alexandre Mebazaa,Bruno Mégarbane +9 more
TL;DR: Patients with severe acute respiratory syndrome-coronavirus-2 (SARS-CoV-2) pneumonia with SARS- CooperVirus present with coagulation disorders and marked susceptibility to thrombosis, although the exact prevalence of deep vein thromBosis (DVT) has been poorly investigated.
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Veno-arterial-ECMO in the intensive care unit: From technical aspects to clinical practice.
TL;DR: The use of Veno-Arterial ExtraCorporeal Membrane Oxygenation (VA-ECMO) as a salvage therapy in cardiogenic shock is becoming of current practice as discussed by the authors.
Iconography : Veno-arterial-ECMO in the intensive care unit: From technical aspects to clinical practice
TL;DR: To be successful, VA-ECMO should be used by teams with sufficient experience and initiated after a thorough multidisciplinary discussion considering patient's medical history, pathology as well the anticipated evolution of the disease.
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Efficacy of Almitrine in the Treatment of Hypoxemia in Sars-Cov-2 Acute Respiratory Distress Syndrome.
Romain Barthélémy,Pierre-Louis Blot,Ambre Tiepolo,Arthur Le Gall,Arthur Le Gall,Claire Mayeur,Samuel Gaugain,Louis Morisson,Etienne Gayat,Alexandre Mebazaa,Benjamin G. Chousterman +10 more
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Monitoring of cardiovascular physiology augmented by a patient-specific biomechanical model during general anesthesia. A proof of concept study
Arthur Le Gall,Fabrice Vallée,Kuberan Pushparajah,Tarique Hussain,Alexandre Mebazaa,Dominique Chapelle,Dominique Chapelle,Etienne Gayat,Radomir Chabiniok +8 more
TL;DR: This work demonstrated the application of fast-running patient-specific biophysical models to estimate PV loops and functional indicators of CV system using clinical data available during GA, paving the way for model-augmented hemodynamic monitoring at operating theatres or intensive care units to enhance the information on patient- specific physiology.