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Erschienen in: Annals of Hematology 4/2018

23.01.2018 | Original Article

Computer-driven quantitative image analysis in the assessment of tumor cell and T cell features in diffuse large B cell lymphomas

verfasst von: Francesco Gaudio, Roberto Tamma, Giuseppe Ingravallo, Tommasina Perrone, Filomena Emanuela Laddaga, Mariastella De Candia, Eugenio Maiorano, Domenico Ribatti, Giorgina Specchia

Erschienen in: Annals of Hematology | Ausgabe 4/2018

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Abstract

Diffuse large B cell lymphoma (DLBCL) is recognized as the most common non-Hodgkin lymphoma subtype. Advanced high-resolution digital scans of pathology slides have enabled the development of computer-based image analysis algorithms that may assist pathologists in quantifying immunohistochemical stains. In this retrospective study, we reviewed data from 29 patients affected by DLBCL. In order to evaluate the number of tumor cells and microenvironment T cells, we performed an analysis of CD20, Ki67, and CD3 counts, assessed with the Positive Pixel Count algorithm embedded in the Aperio ImageScope software. A lower tumor cell count was observed in patients with a non-germinal center immunophenotype, high LDH, splenomegaly and an IPI ≥ 3. A lower number of CD3 was observed in patients with bulky disease, an IPI ≥ 3 and disease stage 3–4. Overall, these data confirm that quantitative analysis of the tumor cells and of the tumor microenvironment by means of computer-driven quantitative image analysis may add new information in DLBCL diagnosis.
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Metadaten
Titel
Computer-driven quantitative image analysis in the assessment of tumor cell and T cell features in diffuse large B cell lymphomas
verfasst von
Francesco Gaudio
Roberto Tamma
Giuseppe Ingravallo
Tommasina Perrone
Filomena Emanuela Laddaga
Mariastella De Candia
Eugenio Maiorano
Domenico Ribatti
Giorgina Specchia
Publikationsdatum
23.01.2018
Verlag
Springer Berlin Heidelberg
Erschienen in
Annals of Hematology / Ausgabe 4/2018
Print ISSN: 0939-5555
Elektronische ISSN: 1432-0584
DOI
https://doi.org/10.1007/s00277-017-3212-6

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