Cardiac Thrombus Evaluation

Cardiac thrombus evaluation is the clinical assessment of blood clots within the heart or its associated structures, an important process because these clots can impair circulation or embolize to distant organs. It combines clinical findings with imaging, particularly transthoracic or transesophageal echocardiography, cardiac CT, and cardiac MRI, to assess a suspected mass’s location, mobility, morphology, contrast filling, and tissue characteristics. Evaluation helps distinguish thrombus from tumors, vegetations, or normal anatomical structures and supports decisions about anticoagulation, procedural planning, and follow-up imaging. In medicine, accurate characterization improves risk assessment and helps monitor thrombus resolution or persistence over time.

Cardiac Thrombus Evaluation - Related Videos

Research

JoVE Journal - Medicine

Cardiac Magnetic Resonance for the Evaluation of Suspected Cardiac Thrombus: Conventional and Emerging Techniques

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Cited by 6 •

2019

The goal of this article is to describe how cardiac magnetic resonance can be used for the evaluation and diagnosis of a suspected cardiac thrombus. The method presented will describe data acquisition as well as the pre-procedure and post-procedure protocol.

Thrombus Profiling Assay: A Microfluidics-Based Platform for Comprehensively Characterizing Biomechanical Thrombogenesis

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2026

This work describes a microfluidic assay that uses shear stress to trigger thrombus formation in blood and characterizes the thrombus by multiple dimensions of readout. The assay can measure the prothrombotic tendency of blood samples, and is thus useful in disease diagnosis, drug discovery, as well as basic mechanistic studies related to thrombosis.

Intravital Microscopy and Thrombus Induction in the Earlobe of a Hairless Mouse

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Cited by 4 •

2017

The ear model of the hairless SKH1-Hrhr mouse enables intravital fluorescence microscopy of microcirculation and phototoxic thrombus induction without prior surgical preparation in the examined microvascular bed. Therefore, the ear of the hairless mouse is an excellent in vivo model to study the complex interactions during microvascular thrombus formation, thrombus evolution, and thrombolysis.

Intravital Fluorescence Microscopy to Study Microvascular Thrombus Formation

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2025

This video demonstrates the intravital fluorescence microscopy technique to study thrombus formation in a mouse model. The mouse is injected with a fluorophore-labeled polysaccharide to monitor blood circulation. Upon illumination with a high-intensity light, the phototoxic induction of an injury in the microvasculature of the ear leads to the formation of a thrombus, which is confirmed by visualizing the obstruction in the blood flow.

Visualization of a Cerebral Thrombus in a Mouse Using Micro-Computed Tomography Imaging

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2025

Source: Kim, D., et. al. Combined Near-infrared Fluorescent Imaging and Micro-computed Tomography for Directly Visualizing Cerebral Thromboemboli. J. Vis. Exp. (2016)This video demonstrates visualization of cerebral thrombus in mice using micro-computed tomography (micro-CT) imaging. A cerebral thrombus mouse model is injected with fibrin-targeted gold nanoparticles acting as a contrasting agent. The mouse is placed on the bed of a micro-CT machine, and images are acquired from multiple angles.

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