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铊-201作为一种心肌显像剂。

Thallium-201 as a myocardial imaging agent.

作者信息

Strauss H W, Pitt B

出版信息

Semin Nucl Med. 1977 Jan;7(1):49-58. doi: 10.1016/s0001-2998(77)80007-x.

Abstract

The field of myocardial perfusion imaging has made many advances but still is in its infancy. The limitations in the technology at this time include limited instrument resolution of 6-9 mm, intrinsic at the energy of the mercury x-ray; significant Rayleigh scatter, which is particularly distrubing because this scatter cannot be removed by pulse-height analysis; and an effective half-life of thallium in the myocardium, which makes repeated imaging over a short period of time very difficult. Although hopes for the development of a technetium-labeled myocardial imaging tracer have burnt brightly, no new agents are presently in sight. Resolution with a technetium-labeled tracer would almost double that of thallium, and the dose that could be administered to the patient would increase by at least a factor of 4. The effective half-life of the tracer in the myocardium would permit multiple images to be obtained at least in the same day. Even with the limitations of the current techniques, however, myocardial perfusion imaging can make a real contribution to the care of the patients with heart disease. Thallium is now produced commercially and reasonably easily obtained. Extraction of thallium by the myocardium is probably somewhat, but not exactly, analogous to potassium. The tracer has major applications in defining shape and size of the heart, thickness of muscle, and especially myocardial ischemia and infarction. This review is aimed at providing a current perspective of these uses.

摘要

心肌灌注成像领域已取得诸多进展,但仍处于起步阶段。目前该技术存在的局限性包括:仪器分辨率有限,在汞X射线能量下固有分辨率为6 - 9毫米;存在显著的瑞利散射,这尤其令人困扰,因为这种散射无法通过脉冲高度分析消除;以及铊在心肌中的有效半衰期,这使得在短时间内进行重复成像非常困难。尽管开发锝标记的心肌成像示踪剂的希望曾十分高涨,但目前尚无新的制剂出现。使用锝标记的示踪剂分辨率几乎是铊的两倍,并且可以给予患者的剂量至少会增加四倍。示踪剂在心肌中的有效半衰期将允许至少在同一天获得多张图像。然而,即便当前技术存在局限性,心肌灌注成像仍可为心脏病患者的护理做出切实贡献。铊目前已商业化生产且相对容易获取。心肌对铊的摄取可能在某种程度上(但并非完全)类似于对钾的摄取。该示踪剂在确定心脏的形状和大小、心肌厚度,尤其是心肌缺血和梗死方面有主要应用。本综述旨在提供这些用途的当前观点。

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