Explore how computational genomics bridges biology and data science to decode the complex language of life through DNA analysis, AI applications, and multi-omics integration.
Explore the fascinating world of miRNA target databases and how computational predictions combined with experimental data are mapping the complex conversations inside our cells.
Explore how interpretable machine learning is revolutionizing our understanding of RNA splicing, revealing nature's hidden instructions with profound implications for medicine and biology.
Discover how KINOMO, a computational framework using non-negative matrix factorization, is revolutionizing our understanding of tumor heterogeneity through single-cell RNA sequencing analysis.
Explore how discriminative learning revolutionizes biological sequence analysis, enabling breakthroughs in gene prediction and motif discovery.
How scientists turn billions of genetic fragments into medical miracles through next-generation sequencing data analysis
Explore the statistical framework powering Array CGH technology and its revolutionary impact on genetic diagnosis and research.
Discover how computational optimization is revolutionizing microarray reference sample design, improving reproducibility and data quality in genomic research.
Exploring how statisticians and data scientists are developing sophisticated methods to navigate the genomic data flood with precision.
Explore how computational biology is transforming medicine through groundbreaking research from ACM-BCB 2013, featuring genomic analysis and future healthcare applications.