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  3. 3D Virtual Histopathology by Phase-Contrast X-Ray Micro-CT for Follicular Thyroid Neoplasms
 

3D Virtual Histopathology by Phase-Contrast X-Ray Micro-CT for Follicular Thyroid Neoplasms

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BORIS DOI
10.48620/77477
Publisher DOI
10.1109/TMI.2024.3372602
PubMed ID
38437150
Description
Histological analysis is the core of follicular thyroid carcinoma (FTC) classification. The histopathological criteria of capsular and vascular invasion define malignancy and aggressiveness of FTC. Analysis of multiple sections is cumbersome and as only a minute tissue fraction is analyzed during histopathology, under-sampling remains a problem. Application of an efficient tool for complete tissue imaging in 3D would speed-up diagnosis and increase accuracy. We show that X-ray propagation-based imaging (XPBI) of paraffin-embedded tissue blocks is a valuable complementary method for follicular thyroid carcinoma diagnosis and assessment. It enables a fast, non-destructive and accurate 3D virtual histology of the FTC resection specimen. We demonstrate that XPBI virtual slices can reliably evaluate capsular invasions. Then we discuss the accessible morphological information from XPBI and their significance for vascular invasion diagnosis. We show 3D morphological information that allow to discern vascular invasions. The results are validated by comparing XPBI images with clinically accepted histology slides revised by and under supervision of two experienced endocrine pathologists.
Date of Publication
2024-07-30
Publication Type
Article
Language(s)
en
Contributor(s)
Tajbakhsh, Kiarash
Stanowska, Olgaorcid-logo
Institute of Tissue Medicine and Pathology, Clinical Pathology
Institute of Tissue Medicine and Pathology
Zboray, Robert
Neels, Antonia
Perren, Aurelorcid-logo
Institute of Tissue Medicine and Pathology
Additional Credits
Institute of Tissue Medicine and Pathology
Institute of Tissue Medicine and Pathology, Clinical Pathology
Series
IEEE Transactions on Medical Imaging
Publisher
Institute of Electrical and Electronics Engineers (IEEE)
ISSN
0278-0062
1558-254X
Access(Rights)
restricted
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