PATH-06. IMAGE-BASED MACHINE LEARNING CLASSIFIER FOR PEDIATRIC POSTERIOR FOSSA TUMOR HISTOPATHOLOGY
العنوان: | PATH-06. IMAGE-BASED MACHINE LEARNING CLASSIFIER FOR PEDIATRIC POSTERIOR FOSSA TUMOR HISTOPATHOLOGY |
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المؤلفون: | Lydia T. Tam, Wasif Bala, Hannes Vogel, Kristen W. Yeom, Jonathan Lavezo, Seth C. Lummus |
المصدر: | Neuro-Oncology |
بيانات النشر: | Oxford University Press, 2020. |
سنة النشر: | 2020 |
مصطلحات موضوعية: | Medulloblastoma, Ependymoma, Cancer Research, medicine.medical_specialty, Learning classifier system, Computer science, Posterior fossa, medicine.disease, Pathology and Molecular Diagnosis, Oncology, Path (graph theory), medicine, AcademicSubjects/MED00300, Histopathology, AcademicSubjects/MED00310, Neurology (clinical), Radiology, Image based |
الوصف: | BACKGROUND Pediatric posterior fossa (PF) tumors can include astrocytomas, ependymomas, and medulloblastomas, all of which demonstrate unique histopathology. Whole slide image analyses can be time consuming and difficult. Therefore, we used machine learning to create a screenshot-based histopathology image classifier that can distinguish between types of pediatric PF tumors. METHODS We took 179 histopathology slides from Stanford University, dated from 2008–2019: 87 astrocytomas, 42 ependymomas, and 50 medulloblastomas, per pathology report. Each slide was viewed under a microscope at 20x. Then, a screenshot was taken of the region of interest representative of principal slide pathology, confirmed by a trained neuropathologist. These screenshots were used to train Resnet-18 models pre-trained on the ImageNet dataset and modified to predict three classes. Various models with different hyperparameters were trained using a random hyperparameter search method. Trained models were evaluated using 5-fold cross-validation, assigning 20% of the dataset for validation with each evaluation. Qualitative analysis of model performance was assessed by creating Class Activation Map (CAM) representations of image predictions. RESULTS The top performing Resnet-18 model achieved a cross-validation F1 of 0.967 on categorizing screenshots of tumor pathology into three types. Qualitative analysis using CAMs indicated the model was able to identify salient distinguishing features of each tumor type. CONCLUSIONS We present a PF lesion classifier capable of distinguishing between astrocytomas, ependymomas, and medulloblastomas based on a histopathology screenshot. Given its ease of use, this tool has potential as an educational tool in an academic setting. |
اللغة: | English |
تدمد: | 1523-5866 1522-8517 |
URL الوصول: | https://explore.openaire.eu/search/publication?articleId=doi_dedup___::0e4014370936d532b0eb54ea59dbc052 http://europepmc.org/articles/PMC7715725 |
حقوق: | OPEN |
رقم الأكسشن: | edsair.doi.dedup.....0e4014370936d532b0eb54ea59dbc052 |
قاعدة البيانات: | OpenAIRE |
تدمد: | 15235866 15228517 |
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