Thrombosis Prevention

Thrombosis prevention encompasses strategies that reduce the formation of harmful blood clots in vessels or on medical devices, where obstruction can impair tissue perfusion and cause serious complications. Clot formation depends on platelet activation, coagulation reactions, blood flow, and vessel or material surfaces, so prevention can target these processes through anticoagulant or antiplatelet approaches and improved fluid dynamics. In bioengineering, researchers design blood-contacting biomaterials, vascular grafts, stents, and drug-delivery systems that limit platelet adhesion and thrombin generation. These advances support safer implants and therapies while improving understanding of how engineered materials interact with blood under physiological conditions.

Thrombosis Prevention - Related Videos

Research

JoVE Journal - Medicine

Ferric Chloride-induced Murine Thrombosis Models

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Cited by 56 •

2016

We report a refined procedure of the ferric chloride (FeCl3)-induced thrombosis models on carotid and mesenteric artery as well as vein, characterized efficiently using intravital microscopy to monitor time to occlusive thrombi formation.

A Multicenter MRI Protocol for the Evaluation and Quantification of Deep Vein Thrombosis

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Cited by 5 •

2015

The goal of this study is to use magnetic resonance venography with long-circulating gadolinium-based contrast agent and direct thrombus imaging for quantitative evaluation of DVT volume in a multicenter, clinical trial setting. Inter- and intra-observer variability assessments were conducted, and reproducibility of the protocol was determined.

Ferric Chloride-induced Thrombosis Mouse Model on Carotid Artery and Mesentery Vessel

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Cited by 49 •

2015

The FeCl3 induced thrombosis model in mice is described herein. A method to monitor thrombus growth by intravital microscopy observation on a mesenteric vessel and by blood flow measurement in the carotid artery is presented.

Mouse Complete Stasis Model of Inferior Vena Cava Thrombosis

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Cited by 28 •

2011

The mouse complete stasis model of inferior vena cava thrombosis yields quantifiable amounts of vein wall tissue and thrombus. It has proven useful for evaluating interactions between the vein wall and the occlusive thrombus and in assessing the progression from acute to chronic inflammation.

Research

JoVE Journal - Medicine
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Electrolytic Inferior Vena Cava Model (EIM) of Venous Thrombosis

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Cited by 39 •

2011

The electrolytic induction of endothelial activation to the internal surface of the Inferior Vena Cava results in venous type thrombus formation due to endothelial activation and partial blood stasis, two components of Virchow's triad.

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