Small animal echocardiography, particularly speckle-tracking imaging, enables early detection of subtle myocardial defects and remains a critical tool for translating animal data to clinical treatment.
Advanced small animal echocardiography techniques, such as speckle-tracking imaging, are critical for the early detection of myocardial defects and detailed phenotypic assessment in preclinical cardiovascular research.
Systolic and diastolic dysfunction of the left ventricle (LV) is a hallmark of most cardiac diseases. In vivo assessment of heart function in animal models, particularly mice, is essential to refining our understanding of cardiovascular disease processes. Ultrasound echocardiography has emerged as a powerful, noninvasive tool to serially monitor cardiac performance and map the progression of heart dysfunction in murine injury models. This review covers current applications of small animal echocardiography, as well as emerging technologies that improve evaluation of LV function. In particular, we describe speckle-tracking imaging-based regional LV analysis, a recent advancement in murine echocardiography with proven clinical utility. This sensitive measure enables an early detection of subtle myocardial defects before global dysfunction in genetically engineered and rodent surgical injury models. Novel visualization technologies that allow in-depth phenotypic assessment of small animal models, including perfusion imaging and fetal echocardiography, are also discussed. As imaging capabilities continue to improve, murine echocardiography will remain a critical component of the investigator's armamentarium in translating animal data to enhanced clinical treatment of cardiovascular diseases.
Ram et al. (Fri,) conducted a review in Cardiovascular disease in animal models. Small animal echocardiography was evaluated. Small animal echocardiography, particularly speckle-tracking imaging, enables early detection of subtle myocardial defects and remains a critical tool for translating animal data to clinical treatment.