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首页> 外文期刊>Journal of Biomedical Science and Engineering >Comparative Study of Imaging Characteristics of I-125 Imaging Using the Siemens Inveon Scanner and Siemens Symbia TruePoint
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Comparative Study of Imaging Characteristics of I-125 Imaging Using the Siemens Inveon Scanner and Siemens Symbia TruePoint

机译:使用西门子Inveon扫描仪和Siemens Symbia TruePoint进行I-125成像的成像特性的比较研究

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Objective: Although Iodine-125 (125I) has been widely used for in vitro studies because of its relatively long half-life (60.1 days), 125I imaging is limited because of its low energy (27 - 35 keV), even in an animal-dedicated system. In this study, imaging characteristics of 125I were assessed using a small animal-dedicated imaging system and clinical scanner. Methods: Using the Siemens Inveon and Siemens Symbia TruePoint systems, imaging characteristics such as resolution, sensitivity, and image quality were compared. Mouse high resolution (MHR-0.5), mouse general purpose (MGP-1.0), and mouse high sensitivity (MHS-2.0) collimators were used for the Inveon scanner, and low energy high-resolution (LEHR) and low energy all-purpose (LEAP) collimators were used for the Symbia TruePoint. For animal imaging, 16.8 MBq of 125I was administered to BALB/c mice intravenously, and the planar image and single-photon emission computed tomography (SPECT) were obtained using both scanners. Results: The resolution of 125I for the Inveon scanner was 3.98 mm full width at half maximum (FWHM) at a 30-mm distance with the MHR-0.5 collimator, and the value of Symbia scanner was 8.72 mm FWHM at a 30-mm distance with the LEHR collimator. The sensitivity of 125I for the Inveon scanner was 21.87 cps/MBq, and the value for the clinical scanner was 30.55 cps/MBq. The planar images of mice were successfully obtained at the level of evaluating specific binding in both scanners. Conclusion: 125I small animal imaging can be achieved with a clinical scanner. This result may enhance the utilization of 125I small animal imaging using a clinical scanner.
机译:目的:尽管碘125(125I)由于其相对较长的半衰期(60.1天)而被广泛用于体外研究,但125I成像因其能量低(27-35 keV)而受到限制,即使在动物中也是如此专用系统。在这项研究中,使用小型动物专用成像系统和临床扫描仪评估了125I的成像特征。方法:使用Siemens Inveon和Siemens Symbia TruePoint系统,比较了成像特性,例如分辨率,灵敏度和图像质量。 Inveon扫描仪使用了鼠标高分辨率(MHR-0.5),鼠标通用(MGP-1.0)和鼠标高灵敏度(MHS-2.0)准直仪,以及低能高分辨率(LEHR)和低能通用(LEAP)准直仪用于Symbia TruePoint。对于动物成像,向BALB / c小鼠静脉内给药16.8 MBq的125I,并使用两个扫描仪获得平面图像和单光子发射计算机断层扫描(SPECT)。结果:使用MHR-0.5准直仪,Inveon扫描仪的125I分辨率为30mm距离处的半峰全宽(FWHM)为3.98 mm,Symbia扫描仪的30mm距离处的分辨率为8.72 mm FWHM使用LEHR准直仪。 Inveon扫描仪的125 I灵敏度为21.87 cps / MBq,临床扫描仪的值为30.55 cps / MBq。在评估两个扫描仪中特异性结合的水平上成功获得了小鼠的平面图像。结论:使用临床扫描仪可以实现125I小动物成像。该结果可以提高使用临床扫描仪对125I小动物成像的利用率。

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