Affiliation:
1. Department of Pathology and Laboratory Medicine Weill Cornell Medicine New York New York USA
2. Department of Pathology University of Utah Salt Lake City Utah USA
Abstract
AbstractMultiparameter flow cytometry data is visually inspected by expert personnel as part of standard clinical disease diagnosis practice. This is a demanding and costly process, and recent research has demonstrated that it is possible to utilize artificial intelligence (AI) algorithms to assist in the interpretive process. Here we report our examination of three previously published machine learning methods for classification of flow cytometry data and apply these to a B‐cell neoplasm dataset to obtain predicted disease subtypes. Each of the examined methods classifies samples according to specific disease categories using ungated flow cytometry data. We compare and contrast the three algorithms with respect to their architectures, and we report the multiclass classification accuracies and relative required computation times. Despite different architectures, two of the methods, flowCat and EnsembleCNN, had similarly good accuracies with relatively fast computational times. We note a speed advantage for EnsembleCNN, particularly in the case of addition of training data and retraining of the classifier.
Funder
National Institutes of Health
Cited by
1 articles.
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1. Issue highlights—July 2024;Cytometry Part B: Clinical Cytometry;2024-07