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Advancing Cardiovascular, Neurovascular, and Renal Magnetic Resonance Imaging in Small Rodents Using Cryogenic Radiofrequency Coil Technology

机译:使用低温射频线圈技术提高小型啮齿动物的心血管,神经血管和肾脏磁共振成像

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Research in pathologies of the brain, heart and kidney have gained immensely from the plethora of studies that have helped shape new methods in magnetic resonance (MR) for characterizing preclinical disease models. Methodical probing into preclinical animal models by MR is invaluable since it allows a careful interpretation and extrapolation of data derived from these models to human disease. In this review we will focus on the applications of cryogenic radiofrequency (RF) coils in small animal MR as a means of boosting image quality (e.g., by supporting MR microscopy) and making data acquisition more efficient (e.g., by reducing measuring time); both being important constituents for thorough investigational studies on animal models of disease. This review attempts to make the (bio)medical imaging, molecular medicine, and pharmaceutical communities aware of this productive ferment and its outstanding significance for anatomical and functional MR in small rodents. The goal is to inspire a more intense interdisciplinary collaboration across the fields to further advance and progress non-invasive MR methods that ultimately support thorough (patho)physiological characterization of animal disease models. In this review, current and potential future applications for the RF coil technology in cardiovascular, neurovascular, and renal disease will be discussed.
机译:大量的研究已帮助大脑,心脏和肾脏的病理学研究,这些研究帮助塑造了表征临床前疾病模型的磁共振(MR)新方法。 MR对临床前动物模型进行系统的探索是非常宝贵的,因为它可以对从这些模型得出的数据进行仔细的解释和外推到人类疾病。在这篇综述中,我们将重点关注低温射频(RF)线圈在小动物MR中的应用,以提高图像质量(例如通过支持MR显微镜)并提高数据采集效率(例如通过减少测量时间);两者都是进行彻底的疾病动物模型研究的重要组成部分。这项审查试图使(生物)医学成像,分子医学和药学界意识到这种生产性发酵及其对小型啮齿动物的解剖学和功能性MR的突出意义。目的是激发跨领域更广泛的跨学科合作,以进一步推进和发展无创MR方法,这些方法最终支持动物疾病模型的彻底(病理)生理表征。在这篇综述中,将讨论射频线圈技术在心血管,神经血管和肾脏疾病中的当前和潜在的未来应用。

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