Asset Type: Educational video
A new standard in repeat expansion detection & resolution of segmental duplications with HiFi reads
PacBio is changing the game of genomics with scalable and affordable, highly accurate long-reads from the Revio system. PacBio HiFi reads robustly detect the full spectrum of variation, moving beyond the limitations of other genomics technologies. In this workshop, speakers will share how HiFi sequencing can be applied to solve important clinical research problems such as fully resolving genes that lie within segmental duplications like SMN1/2 and detecting full-length repeat expansions.
Revio system by PacBio – reveal more with accurate long-read sequencing at scale
The Revio system adds affordability, high throughput, and ease of use to a foundation of long reads, exceptional accuracy and direct methylation detection.
Highly Accurate HiFi Reads for Discovery, Design, and Manufacturing of AAV Gene Therapy
Gene therapy is at an inflection point and experiencing tremendous growth. High accuracy and complete visibility are critical to the success of novel vector discovery, vector design, and manufacturing quality control for gene therapy products. This webinar illustrates why PacBio HiFi sequencing is the ideal solution due to its ability to sequence full length AAV genomes at high accuracy, which allows for detection of fragmentation, mutations, and large structural events. Short reads, qPCR, and less accurate long-read technology can miss important changes that may be present in the AAV sequence, potentially affecting the safety and efficacy of gene therapy products.
PacBio SMRT Link SARS-CoV-2 Workflow Overview
PacBio Principle Scientist Elizabeth Tseng walks through the SMRT Link SARS-CoV-2 Workflow.
Video: Introduction to SMRT Sequencing
A brief animated introduction to Pacific Biosciences’ Single Molecule, Real-Time (SMRT) Sequencing, including the SMRT Cell and ZMW (zero mode waveguide).
Introduction to highly accurate long-read sequencing (HiFi Sequencing)
Watch this short video to learn about highly accurate long-read sequencing and how HiFi reads can advance scientific discovery.