Artificial Intelligence in Digital Pathology for Bladder Cancer: Hype or Hope? A Systematic Review.
artificial intelligence
bladder cancer
computational pathology
computer-aided diagnosis
digital pathology
histopathology
image analysis
Journal
Cancers
ISSN: 2072-6694
Titre abrégé: Cancers (Basel)
Pays: Switzerland
ID NLM: 101526829
Informations de publication
Date de publication:
12 Sep 2023
12 Sep 2023
Historique:
received:
27
07
2023
revised:
30
08
2023
accepted:
08
09
2023
medline:
28
9
2023
pubmed:
28
9
2023
entrez:
28
9
2023
Statut:
epublish
Résumé
Bladder cancer (BC) diagnosis and prediction of prognosis are hindered by subjective pathological evaluation, which may cause misdiagnosis and under-/over-treatment. Computational pathology (CPATH) can identify clinical outcome predictors, offering an objective approach to improve prognosis. However, a systematic review of CPATH in BC literature is lacking. Therefore, we present a comprehensive overview of studies that used CPATH in BC, analyzing 33 out of 2285 identified studies. Most studies analyzed regions of interest to distinguish normal versus tumor tissue and identify tumor grade/stage and tissue types (e.g., urothelium, stroma, and muscle). The cell's nuclear area, shape irregularity, and roundness were the most promising markers to predict recurrence and survival based on selected regions of interest, with >80% accuracy. CPATH identified molecular subtypes by detecting features, e.g., papillary structures, hyperchromatic, and pleomorphic nuclei. Combining clinicopathological and image-derived features improved recurrence and survival prediction. However, due to the lack of outcome interpretability and independent test datasets, robustness and clinical applicability could not be ensured. The current literature demonstrates that CPATH holds the potential to improve BC diagnosis and prediction of prognosis. However, more robust, interpretable, accurate models and larger datasets-representative of clinical scenarios-are needed to address artificial intelligence's reliability, robustness, and black box challenge.
Identifiants
pubmed: 37760487
pii: cancers15184518
doi: 10.3390/cancers15184518
pmc: PMC10526515
pii:
doi:
Types de publication
Journal Article
Review
Langues
eng
Subventions
Organisme : European Union's Horizon 2020 Programme for Research and Innovation, under the Marie Skłodowska Curie
ID : 860627
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