首页> 外文期刊>The Journal of Nuclear Medicine >Dual-isotope SPECT using simultaneous acquisition of 99mTc and 123I radioisotopes: a double-injection technique for peri-ictal functional neuroimaging.
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Dual-isotope SPECT using simultaneous acquisition of 99mTc and 123I radioisotopes: a double-injection technique for peri-ictal functional neuroimaging.

机译:使用同时采集99mTc和123I放射性同位素的双同位素SPECT:用于双眼周神经功能成像的双重注射技术。

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摘要

The acquisition of multiple radiotracer studies at different time points during a neurological event permits the study of different functional activation states in humans. Peri-ictal SPECT is a promising technique for localizing the epileptogenic zone and would be enhanced by the ability to acquire sequentially coregistered ictal and postictal SPECT images of a single seizure. This study was designed to develop and validate an accurate method for the simultaneous acquisition of 99mTc and 123I SPECT images of the brain. METHODS: A multicompartment, transaxial Hoffman brain-slice phantom was filled with 99mTc, 123I or a 3:1 mixture of the two isotopes. Planar and SPECT images were acquired by a dual-head gamma camera system equipped with parallel and fanbeam collimators, respectively. Thirty-two energy windows (2 keV width) were acquired over the energy range 120-184 keV. From the planar data, the signal-to-noise characteristics and crosstalk were measured for each energy window and used to devise an energy window acquisition strategy that was then applied to the SPECT data. Three summed energy windows were created: a primary 99mTc image (130-146 keV), a primary 123I image (152-168 keV) and a secondary 99mTc crosstalk image (134-140 keV). A fraction (0.041) of the 99mTc crosstalk image was subtracted from the 123I image. No crosstalk correction was performed on the primary 99mTc image. RESULTS: (a) Planar images: results showed 1.3% crosstalk in the 123I image compared with 19.7% for a 10% asymmetric energy window alone. 123I crosstalk into the 99mTc window was 2.79% and was relatively constant with changes in the location of the 99mTc energy window. (b) Tomographic images: results showed 1.51% 99mTc crosstalk in the 123I image compared with 12.44% for the uncorrected image and 3.70% 123I crosstalk in the 99mTc image. CONCLUSION: An effective technique for the simultaneous acquisition of 99mTc and 123I radiotracer distributions in the brain has been developed and validated in a phantom model and should have clinical application in peri-ictal functional activation studies of the brain.
机译:在神经事件期间的不同时间点进行的多个放射性示踪剂研究的获得允许研究人类中不同的功能激活状态。围壁SPECT是用于定位癫痫发生区的一种有前途的技术,并且通过获取单个癫痫发作的顺序共同记录的经壁和后壁SPECT图像的能力将得到增强。本研究旨在开发和验证同时采集大脑99mTc和123I SPECT图像的准确方法。方法:用99mTc,123I或两种同位素的3:1混合物填充多室跨轴霍夫曼脑切片体模。平面图像和SPECT图像分别通过配备了平行光束准直仪和扇形光束准直仪的双头伽马相机系统采集。在120-184 keV的能量范围内获得了32个能量窗口(宽度为2 keV)。从平面数据中,测量每个能量窗口的信噪比特性和串扰,并用于设计能量窗口采集策略,然后将该策略应用于SPECT数据。创建了三个总的能量窗口:主要的99mTc图像(130-146 keV),主要的123I图像(152-168 keV)和次要的99mTc串扰图像(134-140 keV)。从123I图像中减去了99mTc串扰图像的一小部分(0.041)。没有对原始的99mTc图像进行串扰校正。结果:(a)平面图像:结果显示123I图像中的串扰为1.3%,而仅10%的不对称能量窗口则为19.7%。进入99mTc窗口的123I串扰为2.79%,并且随着99mTc能量窗口的位置变化而相对恒定。 (b)断层图像:结果显示123I图像中的99mTc串扰为1.51%,而未校正图像中为12.44%,99mTc图像中为3.70%123I串扰。结论:已开发出一种同时采集大脑中99mTc和123I放射性示踪剂的有效技术,并已在幻像模型中对其进行了验证,该技术应在脑的周向功能激活研究中得到临床应用。

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