精确肿瘤学
模式
计算机科学
数据集成
数据科学
精密医学
大数据
领域(数学)
模态(人机交互)
透视图(图形)
人工智能
医学
医学物理学
数据挖掘
病理
社会学
纯数学
社会科学
数学
作者
Kevin M. Boehm,Pegah Khosravi,R. Vanguri,Jianjiong Gao,Sohrab P. Shah
出处
期刊:Nature Reviews Cancer
[Springer Nature]
日期:2021-10-18
卷期号:22 (2): 114-126
被引量:258
标识
DOI:10.1038/s41568-021-00408-3
摘要
Advances in quantitative biomarker development have accelerated new forms of data-driven insights for patients with cancer. However, most approaches are limited to a single mode of data, leaving integrated approaches across modalities relatively underdeveloped. Multimodal integration of advanced molecular diagnostics, radiological and histological imaging, and codified clinical data presents opportunities to advance precision oncology beyond genomics and standard molecular techniques. However, most medical datasets are still too sparse to be useful for the training of modern machine learning techniques, and significant challenges remain before this is remedied. Combined efforts of data engineering, computational methods for analysis of heterogeneous data and instantiation of synergistic data models in biomedical research are required for success. In this Perspective, we offer our opinions on synthesizing complementary modalities of data with emerging multimodal artificial intelligence methods. Advancing along this direction will result in a reimagined class of multimodal biomarkers to propel the field of precision oncology in the coming decade. This Perspective proposes that data from multiple modalities, including molecular diagnostics, radiological and histological imaging and codified clinical data, should be integrated by multimodal machine learning models to advance the prognosis and treatment management of patients with cancer.
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