Detecting shared mis-splicing across blood cancers using long-read single-cell RNA sequencing
In this webinar, discover how long-read single-cell RNA sequencing with the PacBio Kinnex single-cell RNA kit successfully validated shared mis-splicing patterns in adult and pediatric AML. See how innovative computational approaches helped identify dominant splicing subtypes that drive disease progression, providing insight into underlying mechanisms and revealing isoform-level differences linked to disease prognosis. Get cutting-edge research insights delivered straight to your screen—subscribe today. 👉 https://www.youtube.com/user/PacificB... Learn more about PacBio at https://pacb.com/ Legal & Trademarks: Visit https://www.pacb.com/legal-and-tradem...

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PacBio HiFi Sequencing for Cancer Genomics at AACR 2025

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Single-cell RNA sequencing with MAS-Seq. When genes are not enough.

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Natural History for Jamuar Syndrome (UGDH-related disorder) - Sarah Poliquin PhD

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HiFi long-read sequencing in All of Us: structural variants in disease

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PacBio HiFi sequencing for human microbiome research

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Mapping Immune Recovery: TCR Diversity After Allogeneic Transplantation

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Single Cell Sequencing - Eric Chow (UCSF)

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Which country has the best education in the world? - The Global Story podcast, BBC World Service

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New methods to characterize VNTR variation in human genomes.

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Next Generation Sequencing 1: Overview - Eric Chow (UCSF)

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Discovery of Novel Imaging Agents Through Molecular Evolution

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Single-Cell Isoform Analysis of the Nervous System

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HiFi long-read sequencing for CRISPR-Cas9 editing outcomes

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How AI Cracked the Protein Folding Code and Won a Nobel Prize

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Fast and Reliable Gene Synthesis for Optimized Protein Expression

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Long reads meet spatial for cancer research

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This cell just changed biology

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6. Human Behavioral Biology: Molecular Behavior Genetics 2 by Robert Sapolsky

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AlphaFold - The Most Useful Thing AI Has Ever Done

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