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第二届马里奥·S·韦拉尼医学博士纪念讲座:核心脏病学的未来十年

Second Annual Mario S. Verani, MD, Memorial Lecture: Nuclear cardiology, the next 10 years.

作者信息

Zaret Barry L

机构信息

Department of Internal Medicine, Yale University School of Medicine, New Haven, CT 06520, USA.

出版信息

J Nucl Cardiol. 2004 Jul-Aug;11(4):393-407. doi: 10.1016/j.nuclcard.2004.05.001.

Abstract

The nuclear cardiology of the future will be based on new clinical and biologic targets. It will be driven by modern concepts of molecular and cell biology and molecular genetics. A major effort involves detection of atherosclerosis and vascular vulnerability. Approaches include targeting proliferating smooth muscle cells, angiogenesis, vascular injury, inflammation through a variety of mechanisms, defining cell death and protease activation, and imaging gene expression. Another new clinical target involves imaging stem cells and various progenitor cells. To meet these new objectives, advanced imaging technology is required. This involves the development of micro-single photon emission computed tomography and micro-positron emission tomography systems as well as fusion technology involving radiologic computed tomography imaging together with nuclear imaging. Vascular lesion detection imaging may require intravascular detectors. The future of nuclear cardiology, based on molecular imaging, is extraordinarily exciting. The newly defined biologic targets will allow the answering of many of the key clinical questions that will dominate cardiovascular care in cardiovascular investigation over the next decade.

摘要

未来的核心脏病学将基于新的临床和生物学靶点。它将由分子和细胞生物学以及分子遗传学的现代概念驱动。一项主要工作涉及动脉粥样硬化和血管易损性的检测。方法包括通过多种机制靶向增殖的平滑肌细胞、血管生成、血管损伤、炎症,定义细胞死亡和蛋白酶激活,以及成像基因表达。另一个新的临床靶点涉及对干细胞和各种祖细胞进行成像。为实现这些新目标,需要先进的成像技术。这涉及微单光子发射计算机断层扫描和微正电子发射断层扫描系统的开发,以及将放射计算机断层扫描成像与核成像相结合的融合技术。血管病变检测成像可能需要血管内探测器。基于分子成像的核心脏病学的未来令人无比兴奋。新定义的生物学靶点将有助于解答许多关键的临床问题,这些问题将在未来十年主导心血管疾病研究中的心血管护理。

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