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Bone SPECT-based segmented attenuation correction for quantitative analysis of bone metastasis (B-SAC): comparison with CT-based attenuation correction

机译:用于定量分析骨转移(B-SAC)的基于骨SPECT的分段衰减校正:与基于CT的衰减校正的比较

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摘要

BackgroundEvidence has shown the clinical usefulness of measuring the metastatic tumor burden of bone for prognostic assessment especially in prostate cancer; quantitative evaluation by dedicated SPECT is difficult due to the lack of attenuation correction (AC) method.We developed a novel method for attenuation correction using bone SPECT emission data (bone SPECT-based segmented attenuation correction; B-SAC) where emission data were virtually segmented into three tissues (i.e., bone, soft tissue, and air). Then, the pixel values in SPECT were replaced by 50 for the virtual soft tissue, and − 1000 for the virtual air. The replaced pixel values for the virtual bone were based on the averaged CT values of the normal vertebrae (B-SACN) or the metastatic bones (B-SACM). Subsequently, the processed SPECT data (i.e., SPECT value) were supposed to realize CT data (i.e., CT value) that were used for B-SAC. The standardized uptake values (SUVs) of 112 metastatic bone tumors in 15 patients with prostate cancer were compared between CTAC with scatter correction (SC) and resolution recovery (RR) and the following reconstruction conditions: B-SACN (+)SC(+)RR(+), B-SACM (+)SC(+)RR(+), uniform AC(UAC)(+)SC(+)RR(+), AC(−)SC(+)RR(+), and no correction (NC).
机译:背景证据表明,测量骨的转移性肿瘤负荷以进行预后评估特别是在前列腺癌中具有临床实用性;由于缺乏衰减校正(AC)方法,很难通过专用SPECT进行定量评估。我们开发了一种使用骨骼SPECT发射数据(基于骨SPECT的分段衰减校正; B-SAC)进行衰减校正的新方法,其中发射数据实际上是分为三个组织(即骨骼,软组织和空气)。然后,将SPECT中的像素值替换为虚拟软组织的50和虚拟空气的-air1000。虚拟骨骼的替换像素值基于正常椎骨(B-SACN)或转移性骨骼(B-SACM)的平均CT值。随后,假定处理后的SPECT数据(即,SPECT值)实现用于B-SAC的CT数据(即,CT值)。比较了15例前列腺癌患者中112例转移性骨肿瘤的标准化摄取值(SUVs)与散点校正(SC)和分辨率恢复(RR)的CTAC以及以下重建条件:B-SACN(+)SC(+) RR(+),B-SACM(+)SC(+)RR(+),均匀AC(UAC)(+)SC(+)RR(+),AC(-)SC(+)RR(+),并且没有更正(NC)。

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