Evaluating the Impact of Rare Variants on Gene Expression Using Expression CROP-Sequencing, Emily Greenwood, Georgia Tech
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Inflammation Associated Immune Impairment Drives Rapid Progression in Multiple Myeloma, William Pilcher
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BREAK
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Single Cell Multiomic Analysis of the Role of Arid1b in Fetal Brain Development and Neurodevelopmental Disorders, Yonina Loskove, Emory
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Arterial cell Reprogramming Induced by Disturbed Flow and Hypercholesterolemia During Atherogenesis, Christian Park, Georgia Tech
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Integrated Single-nuclei and Spatial Transcriptomic Approach Reveals Acute Endothelial Injury During Vein Grafting Procedures Validated by RNAScope, Marina Michaud, Emory
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PFHpA Alters Lipid Metabolism and Increases the Risk of MASLD in Youth—a Translational Research Framework, Brittney Baumert, Keck School of Medicine
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Lunch
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KEYNOTE TALK II: Is Spatial Omics the New Single Cell Omics?, Jasmine Plummer, St. Jude Children's Research Hospital
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Making a Model: Examining Distinct Transcriptional Programs Between Perianal Crohn’s Disease Patient-Derived Organoids and Corresponding Mucosal Epithelium Using Single-Cell Transcriptomics, Shanta …
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A Single-cell RNA Sequence Approach in Assessing P311’s Impact on the Brown Adipocyte Heterogeneity in Brown Adipose Tissue, Steven Moreton, Morehouse School of Medicine
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Accelerating Breakthroughs Using Single Cell and Spatial Tools, Ryan Mote, Science and Technology Advisor, 10X Genomics
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In-situ Sequencing with the G4X: Enabling Spatial Biology at Scale, Fred Souret, Lead, US East Sequencing and Spatial Sales, Singular Genomics
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MMRF Initiated Projects to Reveal Immune Microenvironment of Multiple Myeloma at a Single Cell Resolution, Chaitanya Chuck Acharya, Lead Scientist, Multiple Myeloma Research Foundation
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OUT
Description:
Dive into the cutting-edge world of single-cell genomics and spatial biology at this 7-hour 20-minute conference recording from Georgia Tech Research. Explore keynote talks on integrative modeling of multiscale single-cell spatial epigenomes and the future of spatial omics. Discover groundbreaking research on rare variants' impact on gene expression, inflammation in multiple myeloma, fetal brain development, atherogenesis, vein grafting procedures, and lipid metabolism in youth. Learn about advancements in single-cell transcriptomics for Crohn's disease and brown adipose tissue research. Gain insights from industry experts on accelerating breakthroughs using single-cell and spatial tools, in-situ sequencing technologies, and initiatives to reveal the immune microenvironment of multiple myeloma at single-cell resolution.
AWSOM24 Conference - AI and Machine Learning in Single Cell Genomics