4.7 Article

Biomedical Imaging in Experimental Models of Cardiovascular Disease

Journal

CIRCULATION RESEARCH
Volume 130, Issue 12, Pages 1851-1868

Publisher

LIPPINCOTT WILLIAMS & WILKINS
DOI: 10.1161/CIRCRESAHA.122.320306

Keywords

animals; cardiovascular diseases; diffusion tensor imaging; humans; mice

Funding

  1. National Institutes of Health [R01HL159010, R01HL141563, R01HL109448, R01HL131613, R01HL130539]

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Major advances in biomedical imaging have allowed noninvasive observation of physiological, cellular, and molecular processes in small animal models, providing valuable insights for medical research and clinical applications.
Major advances in biomedical imaging have occurred over the last 2 decades and now allow many physiological, cellular, and molecular processes to be imaged noninvasively in small animal models of cardiovascular disease. Many of these techniques can be also used in humans, providing pathophysiological context and helping to define the clinical relevance of the model. Ultrasound remains the most widely used approach, and dedicated high-frequency systems can obtain extremely detailed images in mice. Likewise, dedicated small animal tomographic systems have been developed for magnetic resonance, positron emission tomography, fluorescence imaging, and computed tomography in mice. In this article, we review the use of ultrasound and positron emission tomography in small animal models, as well as emerging contrast mechanisms in magnetic resonance such as diffusion tensor imaging, hyperpolarized magnetic resonance, chemical exchange saturation transfer imaging, magnetic resonance elastography and strain, arterial spin labeling, and molecular imaging.

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