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  • Integration of CT-based Qualitative and Radiomic Features with Proteomic Variables in Patients with High-Grade Serous Ovarian Cancer: An Exploratory Analysis (TCGA-OV-Proteogenomics)

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Summary

Objectives

Info
titleData Citation

Lucian Beer, Hilal Sahin,  Ivana Blazic, Hebert Alberto Vargas, Harini Veeraraghavan,  Justin Kirby, Brenda Fevrier-Sullivan, John Freymann, Carl Jaffe, Thomas Conrads, George Maxwell, Kathleen Darcy, Erich Huang, Evis Sala. (2019) Data from Integration of CT-based Qualitative and Radiomic Features with Proteomic Variables in Patients with High-Grade Serous Ovarian Cancer: An Exploratory Analysis. DOI: 10.7937/TCIA.2019.9stoinf1

Description

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To investigate the association between CT imaging traits and texture metrics with proteomic data in patients with high-grade serous ovarian cancer (HGSOC).

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Methods

This retrospective

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, hypothesis-

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generating study

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included 20 TCGA-OV patients with HGSOC prior to primary cytoreductive surgery. Two readers independently assessed the contrast-enhanced computed tomography (CT) images and extracted 33 imaging traits, with a third reader adjudicating in the event of a disagreement. In addition, all sites of suspected HGSOC were manually segmented

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texture features were computed from each

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tumour site. Three texture features

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that represented intra-and inter-site

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tumour heterogeneity were used for

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analysis.

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An integrated analysis of transcriptomic and proteomic data identified proteins with conserved expression between primary tumour sites and metastasis.

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Correlations between protein-abundance and various CT imaging traits and texture features

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were assessed using the Kendall tau rank correlation-coefficient and the Mann-Whitney U test,

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whereas the area under the receiver-operating characteristic curve (AUC) was reported as a metric of the strength and the direction of the association.

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p values < 0.05 were considered significant.

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RESULTS:

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Results

Four proteins were

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associated with CT-based imaging traits

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, with the strongest correlation observed between the CRIP2 protein and disease in the

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mesentery (p<0.001, AUC=0.

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05).

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The abundance of three proteins was associated with texture features

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that represented intra-and inter-site

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tumour heterogeneity, with the strongest

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negative correlation

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between the CKB protein

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and

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cluster dissimilarity

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(p=0.047, 𝜏 =0.326).

Conclusion

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This study provides the first insights

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into the potential associations between standard-of-care CT imaging traits and

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texture measures of

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intra-and inter-site heterogeneity, and the abundance of several

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proteins.


Localtab Group



Localtab
activetrue
titleData Access

Data Access

Click the Download  button to save a ".tcia" manifest file to your computer, which you must open with the  NBIA Data Retriever


Data TypeDownload all or Query/Filter
Images (DICOM, 3 GB)
Image Analyses, Proteogenomic features, and Clinical data (CSV)


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Localtab
titleDetailed Description

Detailed Description





Localtab
titleCitations & Data Usage Policy

Citations & Data Usage Policy 

Public collection license

Info
title

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Data Citation

Lucian Beer

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, Hilal Sahin

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,

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  Ivana Blazic

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, Hebert Alberto Vargas

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, Harini Veeraraghavan

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,

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  Justin Kirby, Brenda Fevrier-Sullivan, John

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Freymann, Carl Jaffe, Thomas Conrads, George Maxwell, Kathleen Darcy, Erich Huang

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, Evis Sala

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. (2019) Data from Integration of CT-based Qualitative and Radiomic Features with Proteomic Variables in Patients with High-Grade Serous Ovarian Cancer: An Exploratory Analysis

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Download

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36 image features, including the 33 radiologists-scored imaging traits used in the study of Vargas et al such as lesion size and laterality, locations of peritoneal disease, nodal stations involved, and locations of metastases, and three computer-extracted texture metrics were obtained[11].

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. DOI: 10.7937/TCIA.2019.9stoinf1




Info
titlePublication Citation

Beer, L., Sahin, H., Bateman, N.W.  et al.  Integration of proteomics with CT-based qualitative and radiomic features in high-grade serous ovarian cancer patients: an exploratory analysis.  Eur Radiol  (2020). https://doi.org/10.1007/s00330-020-06755-3




Info
titleTCIA Citation

Clark K, Vendt B, Smith K, Freymann J, Kirby J, Koppel P, Moore S, Phillips S, Maffitt D, Pringle M, Tarbox L, Prior F. The Cancer Imaging Archive (TCIA): Maintaining and Operating a Public Information Repository, Journal of Digital Imaging, Volume 26, Number 6, December, 2013, pp 1045-1057. (paper)



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Localtab
titleVersions

Version 1 (Current): 2020/04/06


Data TypeDownload all or Query/Filter
Images (DICOM, 3 GB)
Image Analyses, Proteogenomic features, and Clinical data (CSV)

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