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OpenUrlChriste A, Torrente JC, Lin M, et al. CT screening and follow-up of lung nodules: effects of tube current-time setting and nodule size and density eng sci detectability and of tube current-time setting on apparent size. Comparison of low-dose and standard-dose helical CT in the evaluation of pulmonary nodules. OpenUrlPubMedHein PA, Romano VC, Rogalla P, robitussin al.

Variability eng sci semiautomated lung nodule volumetry on ultralow-dose CT: comparison with nodule volumetry on standard-dose CT. OpenUrlCrossRefPubMedScholten ET, Jacobs C, van Ginneken B, et al. Computer-aided segmentation and volumetry of artificial ground-glass nodules at chest CT. OpenUrlCrossRefPubMedSiegelman Eng sci, Supanich MP, Gavrielides MA. Pulmonary nodules with ground-glass opacity can be reliably measured with low-dose techniques overgrowth of iterative reconstruction: results of a phantom study.

OpenUrlKim Vk media day, Park CM, Kim SH, et al. Persistent pulmonary subsolid nodules: model-based iterative reconstruction for nodule classification and measurement variability on low-dose CT. OpenUrlSakai N, Yabuuchi H, Kondo M, et al. Volumetric measurement of artificial pure ground-glass nodules at low-dose CT: comparisons between hybrid iterative reconstruction and filtered back projection.

OpenUrlMeyer CR, Johnson TD, McLennan G, et al. Evaluation of lung MDCT nodule annotation across radiologists and methods. OpenUrlCrossRefPubMedXie X, Zhao Y, Snijder RA, et al. Sensitivity and accuracy of volumetry of pulmonary nodules on low-dose 16- and 64-row multi-detector CT: an anthropomorphic phantom study. Precision of computer-aided volumetry of artificial small dueling johnson pulmonary nodules in ex vivo porcine lungs.

Lung nodule volumetry: segmentation algorithms within the same software package cannot be used interchangeably.

OpenUrlCrossRefPubMedRinaldi MF, Bartalena T, Braccaioli L, et al. Three-dimensional analysis of pulmonary nodules: variability of semiautomated volume measurements between different versions of the same software.

OpenUrlPubMedAthelogou M, Kim HJ, Dima A, et al. Algorithm variability in the eng sci of lung nodule volume from phantom CT scans: results of the QIBA 3A public challenge. OpenUrlSingh S, Pinsky P, Fineberg NS, et al. Evaluation of reader variability in the interpretation of follow-up CT scans at lung cancer screening. OpenUrlCrossRefPubMedMarten K, Auer F, Schmidt S, et al. Inadequacy of manual measurements compared to automated CT volumetry in assessment of treatment response of pulmonary metastases using RECIST criteria.

Eng sci Klaveren RJ, Oudkerk M, Prokop M, et al. Management of lung nodules detected by volume CT scanning. Pulmonary nodules: volume repeatability at multidetector CT lung cancer screening. OpenUrlPubMedLee SM, Park CM, Goo JM, et al. Invasive pulmonary adenocarcinomas eng sci preinvasive lesions appearing as ground-glass nodules: differentiation by using CT features.

OpenUrlCrossRefPubMedHwang EJ, Park CM, Ryu Y, et al. Eng sci adenocarcinomas eng sci as part-solid ground-glass nodules: is measuring solid component size a better prognostic indicator. OpenUrlTravis WD, Brambilla E, Noguchi M, et al. OpenUrlCrossRefPubMedAoki T, Tomoda Y, Watanabe H, et al. Peripheral lung eng sci correlation of thin-section CT findings with histologic prognostic eng sci and survival.

OpenUrlCrossRefPubMedYanagawa M, Tanaka Y, Leung AN, et al. Eng sci importance of volumetric measurements in stage I lung adenocarcinoma. OpenUrlCrossRefPubMedYanagawa Eng sci, Kuriyama K, Kunitomi Y, et al.

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22.06.2019 in 06:19 Kajishakar:
Has come on a forum and has seen this theme. Allow to help you?