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首页> 外文期刊>Nuclear Medicine Communications >Ga-67 scintigraphic imaging: role of combined optimized energy photopeaks and scatter correction in improving lesion detectability.
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Ga-67 scintigraphic imaging: role of combined optimized energy photopeaks and scatter correction in improving lesion detectability.

机译:Ga-67闪烁显像:结合优化的能量光峰和散射校正在改善病变可检测性中的作用。

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BACKGROUND: The detection of lymphoma in gallium imaging is largely affected by image quality as Ga-67 emits three different energies with the highest contributing to septal penetration and image noise. Therefore, determining an optimal imaging protocol is crucial in the diagnosis and staging of lymphoma. The aim of this study was to further investigate the effect of using two energy windows rather than three (in improving signal-to-noise ratio, contrast, and resolution). In addition, application of the triple-energy-window (TEW) scatter correction method and its influence on lesion detectability have also been studied with emphasis placed on minimum detectable lesion and contrast. METHODS: An anthropomorphic torso phantom with chest lesion of different sizes and locations was used. Static planar and single-photon emission computed tomographic images for various lesion sizes and contrasts were acquired using the two different acquisition protocols. Contrast, resolution, and image noise were determined by the lesion-to-background ratio, full width at half maximum, and uniformity measurements, respectively. The TEW scatter compensation method was applied on two peaks-acquired images using two subwindows. RESULTS: Significant improvement (32%) in contrast was found in images acquired with two photopeaks in both planar and single-photon emission computed tomography (P<0.05). Observers' performance was significantly in favor of two photopeaks (P=0.003). The minimum detectable lesion was found to be 7 mm with an object ratio of 5 : 1 in two peaks images. This lesion, however, was not detectable in three photopeaks. Lesion detectability was significantly improved with the TEW scatter compensation method (P<0.01). CONCLUSION: Images acquired using two peaks were found to be superior to those normally used in clinical practice (i.e. three energies). The TEW scatter compensation method was found to be useful in improving Ga-67 image quality and lesion detectability. Thus, it is advised to reconsider using two photopeaks in gallium imaging with TEW scatter correction.
机译:背景:镓成像中淋巴瘤的检测很大程度上受图像质量的影响,因为Ga-67发射三种不同的能量,其中最高的能量有助于间隔穿透和图像噪声。因此,确定最佳的成像方案对于淋巴瘤的诊断和分期至关重要。这项研究的目的是进一步研究使用两个能量窗口而不是三个能量窗口的效果(在提高信噪比,对比度和分辨率方面)。此外,还研究了三能窗口散射校正方法的应用及其对病变可检测性的影响,重点是最小可检测的病变和对比度。方法:使用具有不同大小和位置的胸部病变的拟人躯干体模。使用两种不同的采集协议采集了各种病变大小和对比度的静态平面和单光子发射计算机断层图像。对比度,分辨率和图像噪声分别由病变与背景的比率,半峰全宽和均匀度测量确定。使用两个子窗口将TEW散射补偿方法应用于两个峰值采集的图像。结果:在平面和单光子发射计算机断层扫描中,两个光峰采集的图像相比,对比度有显着提高(32%)(P <0.05)。观察者的表现明显优于两个光电峰值(P = 0.003)。在两个峰图像中发现最小可检测到的病变为7 mm,目标比率为5:1。但是,在三个光电峰值中均未检测到此病变。 TEW散射补偿法显着改善了病变的可检测性(P <0.01)。结论:发现使用两个峰获得的图像优于临床实践中通常使用的图像(即三个能量)。发现TEW散射补偿方法对于改善Ga-67图像质量和病变检测能力是有用的。因此,建议在使用TEW散射校正的镓成像中重新考虑使用两个光电峰值。

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