Federated Learning in Genetics: Extended Analysis of Accuracy, Performance and Privacy Trade-offs (2402.14527v2)
Abstract: Machine learning on large-scale genomic or transcriptomic data is important for many novel health applications. For example, precision medicine tailors medical treatments to patients on the basis of individual biomarkers, cellular and molecular states, etc. However, the data required is sensitive, voluminous, heterogeneous, and typically distributed across locations where dedicated machine learning hardware is not available. Due to privacy and regulatory reasons, it is also problematic to aggregate all data at a trusted third party. Federated learning is a promising solution to this dilemma, because it enables decentralized, collaborative machine learning without exchanging raw data. In this paper, we perform comparative experiments with the federated learning frameworks TensorFlow Federated and Flower. Our test case is the training of disease prognosis and cell type classification models. We train the models with distributed transcriptomic data, considering both data heterogeneity and architectural heterogeneity. We measure model quality, robustness against privacy-enhancing noise and computational performance. We evaluate the resource overhead of a federated system from both client and global perspectives and assess benefits and limitations. Each of the federated learning frameworks has different strengths. However, our experiments confirm that both frameworks can readily build models on transcriptomic data, without transferring personal raw data to a third party with abundant computational resources. This paper is the extended version of https://link.springer.com/chapter/10.1007/978-3-031-63772-8_26.
- tshark: Command line network protocol analyzer. https://www.wireshark.org/docs/man-pages/tshark.html (2024), accessed on: 20.01.2024
- Fair Internet Report: Internet in the usa - stats and figures. URL: https://fairinternetreport.com/United-States, accessed on: 19.12.2023
- Google: Tensorflow federated: Machine learning on decentralized data. https://www.tensorflow.org/federated (25-11-2023)
- Leo Seeger: Benchmarkingfederated. URL: https://github.com/leoseg/BenchmarkingFederated (2024), accessed on: 20.01.2024
Sponsor
Paper Prompts
Sign up for free to create and run prompts on this paper using GPT-5.
Top Community Prompts
Collections
Sign up for free to add this paper to one or more collections.