Murine Cardiac Imaging

Murine cardiac imaging comprises noninvasive methods for visualizing the structure, function, and blood flow of the mouse heart, supporting studies of cardiovascular disease and treatment responses. Techniques such as echocardiography, magnetic resonance imaging, computed tomography, and positron emission tomography generate cardiac measurements by detecting ultrasound reflections, magnetic signals, X-ray attenuation, or radiotracer distribution, respectively. These approaches can assess ventricular dimensions, myocardial contraction, perfusion, metabolism, and remodeling in living animals over time. By enabling longitudinal evaluation with fewer animals and preserved physiological context, murine cardiac imaging connects molecular and cellular findings with whole-organ outcomes in preclinical medicine.

Murine Cardiac Imaging - Related Videos

Education

JoVE Science Education - Engineering

Cardiac Magnetic Resonance Imaging

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2023

Source: Frederick W. Damen and Craig J. Goergen, Weldon School of Biomedical Engineering, Purdue University, West Lafayette, Indiana In this video, high field, small-bore magnetic resonance imaging (MRI) with physiological monitoring is demonstrated to acquire gated cine loops of the murine cardiovascular system. This procedure provides a basis for assessing left-ventricular function, visualizing vascular networks, and quantifying motion of organs due to respiration. Comparable small animal...

Research

JoVE Journal - Medicine

Cardiac Magnetic Resonance Imaging at 7 Tesla

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Cited by 10 •

2019

The sensitivity gain inherent to ultrahigh field magnetic resonance holds promise for high spatial resolution imaging of the heart. Here, we describe a protocol customized for functional cardiovascular magnetic resonance (CMR) at 7 Tesla using an advanced multi-channel radio-frequency coil, magnetic field shimming and a triggering concept.

Murine Echocardiography and Ultrasound Imaging

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Cited by 61 •

2010

This video demonstrates use of a rail-mounted high-frequency ultrasound probe to perform echocardiography on an anesthetized mouse. The methods describe both conventional two-dimensional and M-mode measurements of cardiac function in addition to newer, more powerful tools such as color Doppler, strain analysis, as well as general and targeted contrast imaging.

Immunostaining of Bacteria-Filled Microlesions in a Mouse Cardiac Tissue Section for Imaging

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2026

Source: Brown, A. O., and Orihuela, C. J. Visualization of Streptococcus pneumoniae within Cardiac Microlesions and Subsequent Cardiac Remodeling. J. Vis. Exp. (2015)The video demonstrates the immunostaining of chemically fixed mouse cardiac tissue sections to visualize pathogenic bacteria localized within infection-induced microlesions. The process includes tissue washing, membrane permeabilization, blocking of nonspecific sites, antibody labeling, nuclear counterstaining, and confocal...

Generation of Murine Cardiac Pacemaker Cell Aggregates Based on ES-Cell-Programming in Combination with Myh6-Promoter-Selection

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Cited by 13 •

2015

This protocol describes how to produce functional sinus nodal tissue from murine pluripotent stem cells (PSC). T-Box3 (TBX3) overexpression plus cardiac Myosin-heavy-chain (Myh6) promoter antibiotic selection leads to highly pure pacemaker cell aggregates. These “Induced-sinoatrial-bodies” (“iSABs”) contain over 80% pacemaker cells, show highly increased beating rates and are able to pace myocardium ex vivo.

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