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Explore Type 2 diabetes prevalence in Latino populations with Dr. Jose Florez's insightful presentation on genetic and environmental factors.
Explore tissue-specific transcriptomes for drug target prioritization and disease risk prediction. Learn about TWAS, co-localization, polygenic risk scores, and phenome-wide scans in genetics research.
Explore the mechanism of protein antibiotics through the study of bacteriophage lysis proteins, focusing on Protein E's inhibition of MraY and its implications for novel therapeutic development.
Explore challenges in training infinitely large neural networks with Mikhail Belkin. Gain insights into foundational advances in machine learning for biomedical applications.
Explore challenges in evaluating FDA-approved medical AI devices and learn from a pioneering clinical trial assessing an AI for cardiac conditions.
Explore TACIT, a toolkit for relating enhancer genetic variation to complex phenotypes. Learn about tissue-aware conservation inference and its applications in medical and population genetics.
Explore cell death modulation for disease treatment with Amanda Ouchida in the René Salazar Speaker Series at Broad Institute.
Explore cutting-edge machine learning techniques for inferring single-cell profiles from histology images and generating omics data from various imaging modalities, bridging the gap between imaging and genomics.
Explore strategies to combat food waste and promote sustainability through innovative approaches and practical solutions.
Explore time series machine learning applications in healthcare, focusing on ICU data analysis, explainability tools, and real-time evaluation for improved patient outcomes.
Explore machine learning applications in protein engineering with Jennifer Listgarten. Gain insights into cutting-edge techniques and their impact on biomedical research.
Explore statistical genetics techniques for identifying HLA alleles associated with complex diseases. Learn about human genetic variation, genotyping, and data analysis methods in population genetics.
Explore causal cell types in human diseases through GWAS and functional genomics integration. Learn about colocalization, TWAS, and TCSC for identifying disease-critical genes and tissues.
Explore challenges and solutions for including sexual and gender minorities in precision medicine research, addressing underrepresentation and improving health outcomes for LGBTQ+ communities.
Explore STACI, a novel method for analyzing single-cell data to uncover cell type-specific genetic effects on gene expression and disease risk.
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