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Explore spatially resolved, single-cell transcriptomics to understand tissue organization and cellular heterogeneity in biological systems, presented by Vizgen co-founder Jiang He.
Explore a comprehensive structural variation map of Han Chinese genomes using long-read sequencing, uncovering genetic insights and implications for human evolution and disease.
Explore high-throughput diagnostics and sequencing for COVID-19 control, including testing methods, sample tracking, and variant monitoring at the Pandemic Response Lab NYC.
Explore liquid biopsy techniques for early detection of gynecological cancers, focusing on ovarian cancer. Learn about current challenges and potential advancements in screening methods for improved patient outcomes.
Explore how low error rate long-reads improve metagenome assembly, enabling identification of long variant haplotypes in microbial communities. Learn about overcoming challenges in separating closely related organisms.
Explore NGS bioinformatics software for non-invasive aneuploidy analysis, focusing on safety, integration, and flexibility in molecular diagnostics workflows.
Explore cutting-edge single-cell sequencing techniques and workflows for successful whole transcriptome profiling. Learn from experts about revolutionary technologies enabling parallel analysis of thousands of cells.
Explore best practices for single cell and spatial transcriptomics, uncovering complex biological systems with high-resolution approaches. Gain insights from an expert in genomics and earn PACE credits.
Explore genome sequencing, from genotype to phenotype, with a focus on telomere length and its implications for aging, disease, and health disparities in minority populations.
Explore sex and gender differences in COPD, focusing on epigenetic findings related to disease susceptibility, severity, and aging. Gain insights from a respiratory epidemiologist on this leading cause of death.
Explore promoter and isoform diversity in cancer transcriptomes using long-read RNA sequencing. Gain insights into alternative promoters' role in gene regulation and their impact on cancer research.
Explore single-cell gene expression analysis for revealing complex cell populations, uncovering regulatory relationships, and visualizing gene expression differences across cell types.
Explore complete human genome assemblies, unlocking insights into complex regions and revolutionizing genetics. Gain new perspectives on genome biology and structure through telomere-to-telomere chromosome analysis.
Explore the groundbreaking assembly of human chromosome 8, unraveling its structure, function, and evolutionary history. Gain insights into centromere evolution and the resolution of long-standing genomic gaps.
Explore epigenetic clocks in mammals, their accuracy across species, and implications for aging research. Gain insights into DNA methylation's role in biological aging and lifespan.
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