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首页> 外文期刊>Physics in medicine and biology. >Clinical impact of time-of-flight and point response modeling in PET reconstructions: a lesion detection study.
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Clinical impact of time-of-flight and point response modeling in PET reconstructions: a lesion detection study.

机译:飞行时间和点响应模型在PET重建中的临床影响:病变检测研究。

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摘要

Time-of-flight (TOF) and point spread function (PSF) modeling have been shown to improve PET reconstructions, but the impact on physicians in the clinical setting has not been thoroughly investigated. A lesion detection and localization study was performed using simulated lesions in real patient images. Four reconstruction schemes were considered: ordinary Poisson OSEM (OP) alone and combined with TOF, PSF, and TOF + PSF. The images were presented to physicians experienced in reading PET images, and the performance of each was quantified using localization receiver operating characteristic. Numerical observers (non-prewhitening and Hotelling) were used to identify optimal reconstruction parameters, and observer SNR was compared to the performance of the physicians. The numerical models showed good agreement with human performance, and best performance was achieved by both when using TOF + PSF. These findings suggest a large potential benefit of TOF + PSF for oncology PET studies, especially in the detection of small, low-intensity, focal disease in larger patients.
机译:飞行时间(TOF)和点扩散函数(PSF)建模已显示可改善PET重建,但尚未充分研究其对临床环境中医生的影响。使用真实患者图像中的模拟病变进行了病变检测和定位研究。考虑了四种重建方案:单独的普通泊松OSEM(OP),并与TOF,PSF和TOF + PSF结合使用。图像被呈现给具有阅读PET图像经验的医生,并且使用定位接收器的操作特性来量化每个图像的性能。数值观察者(非预增白和霍特林)用于确定最佳重建参数,并将观察者SNR与医生的表现进行比较。数值模型显示出与人类表现良好的一致性,并且在同时使用TOF + PSF时均达到了最佳表现。这些发现表明,TOF + PSF对于肿瘤PET研究具有巨大的潜在益处,尤其是在检测较大患者中的小,低强度,局灶性疾病方面。

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