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基于卷积神经网络方法的 177Lu-SPECT/CT 肾脏剂量学自动肾脏分割中的活性浓度估计。

ACTIVITY CONCENTRATION ESTIMATION IN AUTOMATED KIDNEY SEGMENTATION BASED ON CONVOLUTION NEURAL NETWORK METHOD FOR 177LU-SPECT/CT KIDNEY DOSIMETRY.

机构信息

Department of Medical Physics and Biomedical Engineering (MFT), Sahlgrenska University Hospital, Gothenburg, Sweden.

Department of Clinical Physiology, Sahlgrenska University Hospital, Gothenburg, Sweden.

出版信息

Radiat Prot Dosimetry. 2021 Oct 12;195(3-4):164-171. doi: 10.1093/rpd/ncab079.

Abstract

For 177Lu-DOTATATE treatments, dosimetry based on manual kidney segmentation from computed tomography (CT) is accurate but time consuming and might be affected by misregistration between CT and SPECT images. This study develops a convolution neural network (CNN) for automated kidney segmentation that accurately aligns CT segmented volume of interest (VOI) to the kidneys in SPECT images. The CNN was trained with SPECT/CT images performed over the abdominal area of 137 patients treated with 177Lu-DOTATATE. Activity concentrations in automated and manual segmentations were strongly correlated for both kidneys (r > 0.96, p < 0.01) in the testing cohort (n = 20). The Bland-Altman analyses demonstrated higher accuracy for the CNN segmentation compared to the manual segmented kidneys without VOI adjustment. The CNN demonstrated a potential for accurate kidney segmentation. The CNN was a fast and robust approach for assessment of activity concentrations in SPECT images, and performed equally well as the manual segmentation method.

摘要

对于 177Lu-DOTATATE 治疗,基于 CT 手动肾脏分割的剂量学是准确的,但耗时且可能受到 CT 和 SPECT 图像之间配准的影响。本研究开发了一种卷积神经网络 (CNN) 用于自动肾脏分割,可将 CT 分割的感兴趣区域 (VOI) 准确地与 SPECT 图像中的肾脏对齐。该 CNN 使用 177Lu-DOTATATE 治疗的 137 名患者的腹部区域进行的 SPECT/CT 图像进行了训练。在测试队列(n=20)中,自动和手动分割的活性浓度与两个肾脏都具有很强的相关性(r>0.96,p<0.01)。Bland-Altman 分析表明,与未进行 VOI 调整的手动分割肾脏相比,CNN 分割具有更高的准确性。CNN 显示出准确的肾脏分割的潜力。CNN 是评估 SPECT 图像中活性浓度的快速而强大的方法,并且与手动分割方法一样表现良好。

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