Bashir Adil, Gropler Robert J
Division of Radiological Sciences, Cardiovascular Imaging Laboratory, Edward Mallinckrodt Institute of Radiology, St Louis, MO 63110, USA.
Cardiol Clin. 2009 May;27(2):291-310, Table of Contents. doi: 10.1016/j.ccl.2008.12.004.
Flexibility in myocardial substrate metabolism for energy production is fundamental to cardiac health. This loss in plasticity or flexibility leads to overdependence on the metabolism of an individual category of substrates, with the predominance in fatty acid metabolism characteristic of diabetic heart disease and the accelerated glucose use associated with pressure-overload left ventricular hypertrophy being prime examples. There is a strong demand for accurate noninvasive imaging approaches of myocardial substrate metabolism that can facilitate the crosstalk between the bench and the bedside, leading to improved patient management paradigms. In this article potential future applications of metabolic imaging, particularly radionuclide approaches, for assessment of cardiovascular disease are discussed.
心肌底物代谢在能量产生方面的灵活性是心脏健康的基础。这种可塑性或灵活性的丧失会导致过度依赖某一类底物的代谢,糖尿病性心脏病以脂肪酸代谢为主以及压力超负荷导致的左心室肥厚伴有葡萄糖利用加速就是典型例子。对于能够促进基础研究与临床实践之间相互交流从而改进患者管理模式的心肌底物代谢精确无创成像方法有着强烈需求。本文讨论了代谢成像,特别是放射性核素方法在评估心血管疾病方面未来可能的应用。