Related Experiment Video
Updated: Dec 26, 2025

In Vitro Microfluidic Disease Model to Study Whole Blood-Endothelial Interactions and Blood Clot Dynamics in Real-Time
Published on: May 24, 2020
Toward a Better Mechanistic Understanding of Critical Illness: Endothelial, Microvascular and Coagulation Dysfunction
Hernando Gomez Danies1, Joseph A Carcillo2
1Department of Critical Care Medicine, Center for Critical Care Nephrology, Cardiopulmonary Physiology Laboratory, Clinical Research, Investigation and Systems Modeling of Acute Illness (CRISMA) Center and the Vascular Medicine Institute, University of Pittsburgh, 3347 Forbes Avenue, Suite 220, Room 207, Pittsburgh, PA 15213, USA.
No abstract available in PubMed .
More Related Videos
14:28Non-Invasive Monitoring of Microvascular Oxygenation and Reactive Hyperemia using Hybrid, Near-Infrared Diffuse Optical Spectroscopy for Critical Care
Published on: May 10, 2024
08:21Author Spotlight: A Pharmacodissection Approach to Uncover Mechanisms in Cardiovascular Disease Risk Populations
Published on: July 21, 2023
Related Concept Videos
Anticoagulant Drugs: Low-Molecular-Weight Heparins
Venous Thrombosis I: Introduction
Disorders of Hemostasis
Thromboembolic Disorders
Two factors primarily cause thromboembolic conditions.
Extrinsic and Intrinsic Pathways of Hemostasis
The Extrinsic Pathway
The extrinsic pathway of coagulation is typically initiated by tissue damage that exposes blood to tissue factor (TF), a protein released by the damaged tissue cells outside the blood vessels—this interaction with TF triggers biochemical reactions involving specific clotting factors. The key player here is Factor VII, which...
Clot Retraction and Fibrinolysis
Introduction to Hemostasis
The three phases of hemostasis involve many clotting factors present in plasma and several substances released by platelets and injured tissue cells. It is a fast, localized,...