Single photon emission computed tomography (SPECT) is obtained by the injection of one of a series of compounds that cross the blood-brain barrier and are distributed in the brain according to regional perfusion or to the density of a given receptor. The regional brain distribution of the injected compound can be measured because it is bound to a radioactive substance that emits photons. Emitted photons are collimated to facilitate determining their source and detected with sodium iodine crystal detectors. Finally, the techniques of CT are used to reconstruct the density of photons emitted by each volume element (voxel) of the brain. Less expensive and more widely distributed in nuclear medicine departments than positron emission tomography, SPECT is currently used mainly in the evaluation for epilepsy surgery, of cerebrovascular disease, and of the parkinsonian and other neurodegenerative syndromes. In this article, we discuss the technological aspects of brain SPECT and its clinical neurological applications.

译文

单光子发射计算机断层扫描 (SPECT) 是通过注射一系列化合物中的一种来获得的,这些化合物穿过血脑屏障,并根据区域灌注或给定受体的密度分布在大脑中。可以测量注入的化合物的区域大脑分布,因为它与发射光子的放射性物质结合。发射的光子被准直以方便确定其来源,并使用钠碘晶体检测器进行检测。最后,CT技术用于重建大脑每个体积元素 (体素) 发射的光子密度。与正电子发射断层扫描相比,SPECT在核医学部门的成本更低,分布更广泛,目前主要用于评估癫痫手术,脑血管疾病以及帕金森病和其他神经退行综合征。在本文中,我们讨论了脑SPECT的技术方面及其临床神经应用。

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