Noninvasive Cardiac Imaging

Noninvasive cardiac imaging comprises diagnostic techniques that visualize the heart and assess its structure and function without surgical access, supporting the evaluation of cardiovascular disease. Modalities such as echocardiography use reflected ultrasound waves, while computed tomography, magnetic resonance imaging, and nuclear imaging rely on X-rays, magnetic fields, or injected tracers to produce anatomical or functional information. These methods can measure chamber size, wall motion, blood flow, perfusion, and tissue characteristics, helping clinicians detect coronary artery disease, valve disorders, cardiomyopathy, and congenital abnormalities. Their ability to guide diagnosis, risk assessment, treatment planning, and follow-up makes them central to modern cardiovascular medicine.

Noninvasive Cardiac Imaging - Related Videos

Research

JoVE Journal - Medicine

Noninvasive Assessment of Cardiac Abnormalities in Experimental Autoimmune Myocarditis by Magnetic Resonance Microscopy Imaging in the Mouse

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Cited by 7 •

2014

This study demonstrates the successful establishment of magnetic resonance microscopy imaging as a non-invasive tool to assess the cardiac abnormalities in mice affected with autoimmune myocarditis. The data indicate that the technique can be used to monitor the disease-progression in live animals.

Research

JoVE Journal - Medicine
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Real-Time Cardiac Mapping with a Noninvasive Imageless Electrocardiographic Imaging System

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Cited by 2 •

2025

This study introduces a novel approach for real-time cardiac mapping using a noninvasive, imageless electrocardiographic imaging system. This system enables the acquisition of electrophysiological cardiac maps without requiring pre-procedural computed tomography or magnetic resonance imaging scans, enabling efficient guidance for cardiac procedures such as ablation and cardiac resynchronization therapy implants.

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...

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.

Continuous Noninvasive Measuring of Crayfish Cardiac and Behavioral Activities

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Cited by 5 •

2019

This article presents a noninvasive biomonitoring system for the continuous recording and analyses of crayfish cardiac and locomotor activities. This system consists of a near-infrared optical sensor, a video-tracking module, and software for evaluating crayfish heartbeats that reflects its physiological condition and characterizes crayfish behavior during heartbeat fluctuations.

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