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首页> 外文期刊>Medical Physics >Proof of concept for low-dose molecular breast imaging with a dual-head CZT gamma camera. Part I. Evaluation in phantoms
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Proof of concept for low-dose molecular breast imaging with a dual-head CZT gamma camera. Part I. Evaluation in phantoms

机译:使用双头CZT伽马相机进行低剂量分子乳房成像的概念验证。第一部分:体模评估

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摘要

Purpose: Molecular breast imaging (MBI) is a nuclear medicine technology that uses dual-head cadmium zinc telluride (CZT) gamma cameras to image functional uptake of a radiotracer, Tc-99m sestamibi, in the breast. An important factor in adoption of MBI in the screening setting is reduction of the necessary administered dose of Tc-99m sestamibi from the typically used dose of 740 MBq to approximately 148 MBq, such that MBI's whole-body effective dose is comparable to that of screening mammography. Methods that increase MBI count sensitivity may allow a proportional reduction in the necessary administered dose. Our objective was to evaluate the impact of two count sensitivity improvement methods on image quality by evaluating count sensitivity, spatial resolution, and lesion contrast in phantom simulations. Methods: Two dual-head CZT-based MBI systems were studied: LumaGem and Discovery NM 750b. Two count sensitivity improvement methods were implemented: registered collimators optimized for dedicated breast imaging and widened energy acceptance window optimized for use with CZT. System sensitivity, spatial resolution, and tumor contrast-to-noise ratio (CNR) were measured comparing standard collimation and energy window setting 126-154 keV (10, -10) with optimal collimation and a wide energy window 110-154 keV (10, -21). Results: Compared to the standard collimator designs and energy windows for these two systems, use of registered optimized collimation and wide energy window increased system sensitivity by a factor of 2.8-3.6. Spatial resolution decreased slightly for both systems with new collimation. At 3 cm from the collimator face, LumaGem's spatial resolution was 4.8 and 5.6 mm with standard and optimized collimation; Discovery NM 750b's spatial resolution was 4.4 and 4.6 mm with standard and optimized collimation, respectively. For both systems, at tumor depths of 1 and 3 cm, use of optimized collimation and wide energy window significantly improved CNR compared to standard settings for tumors 8.0 and 9.2 mm in diameter. At the closer depth of 1 cm, optimized collimation and wide energy window also significantly improved CNR for 5.9 mm tumors on Discovery NM 750b. Conclusions: Registered optimized collimation and wide energy window yield a substantial gain in count sensitivity and measurable gain in CNR, with some loss in spatial resolution compared to the standard collimator designs and energy windows used on these two systems. At low-count densities calculated to represent doses of 148 MBq, this tradeoff results in adequate count density and lesion contrast for detection of lesions 8 mm in the middle of a typical breast (3 cm deep) and lesions 6 mm close to the collimator (1 cm deep).
机译:目的:分子乳腺成像(MBI)是一种核医学技术,它使用双头碲化镉锌(CZT)伽马相机对乳房中放射性示踪剂Tc-99m的司他他比的功能摄取进行成像。在筛查环境中采用MBI的重要因素是将Tc-99m西司他比的必要给药剂量从通常使用的740 MBq减少到大约148 MBq,因此MBI的全身有效剂量与筛查相当乳腺摄影。增加MBI计数敏感性的方法可允许按比例减少必要的给药剂量。我们的目标是通过在幻像模拟中评估计数灵敏度,空间分辨率和病变对比度来评估两种计数灵敏度改进方法对图像质量的影响。方法:研究了两个基于CZT的双头MBI系统:LumaGem和Discovery NM 750b。实施了两种提高计数灵敏度的方法:针对专用乳房成像进行优化的配准准直器,以及与CZT一起使用优化的加宽能量接受窗口。通过将标准准直和能量窗设置为126-154 keV(10,-10)与最佳准直和宽能量窗110-154 keV(10)进行比较,测量了系统灵敏度,空间分辨率和肿瘤对比噪声比(CNR) ,-21)。结果:与这两个系统的标准准直仪设计和能量窗口相比,使用已注册的优化准直和宽能量窗口可将系统灵敏度提高2.8-3.6倍。两个具有新准直功能的系统的空间分辨率均略有下降。在距准直仪面3 cm处,LumaGem在标准和优化准直条件下的空间分辨率分别为4.8和5.6 mm。使用标准准直仪和优化准直仪,Discovery NM 750b的空间分辨率分别为4.4和4.6 mm。对于两种系统,在肿瘤深度分别为1和3 cm时,与直径为8.0和9.2 mm的肿瘤的标准设置相比,使用优化的准直和宽的能量窗口可显着改善CNR。在更近的1 cm深度处,优化的准直和宽能窗也极大地改善了Discovery NM 750b上5.9 mm肿瘤的CNR。结论:与这两个系统上使用的标准准直仪设计和能量窗相比,注册的优化准直和宽能量窗可显着提高CNR的计数灵敏度和可测量的增益,但空间分辨率方面有所损失。在计算的低计数密度下代表148 MBq的剂量时,这种折衷会导致足够的计数密度和病变对比度,以检测典型乳腺中部8 mm(深3 cm)的病变和靠近准直仪6 mm的病变( 1厘米深)。

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