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Next-Generation Sequencing – Multimedia

Video: important factors to consider when designing your RNA-seq experiment
Video
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Important Factors to Consider When Designing Your RNA-Seq Experiment

Designing an RNA-Seq experiment is a multi-faceted process that requires careful planning and execution. From selecting the right assay to optimizing library preparation, every decision impacts the quality of your results.
Man in a red shirt wearing a medical mask, coughing while standing near a window with sunlight streaming in
App Note / Case Study

Achieve Comprehensive Viral Detection Using NGS Target Enrichment

This application note explores how an innovative panel provides a comprehensive tool for infectious disease research and public health monitoring.
3D illustration of a DNA double helix with red and blue molecules, overlaid on a genetic code sequence background
App Note / Case Study

Effective Novel Virus Detection Using a Comprehensive NGS Panel

This application note explores how this advanced technology is a powerful tool for public health monitoring and viral discovery research.
Abstract illustration of the human gut microbiome, showcasing diverse microbes in a stylized digestive tract on a blue background.
App Note / Case Study

Boost the Efficiency of Metagenomic Microbiome Analysis

This application note explores an automated workflow that enhances DNA extraction and sequencing efficiency for stool samples, minimizing human error and delivering high-quality data on microbial communities.
3D rendering of single cells in a green colouring on a dark green background.
eBook

Optimize Tissue Dissociation for Single-Cell Research

This eBook highlights proven strategies for tissue dissociation, offering practical insights to enhance cell yield, reduce variability and safeguard sample integrity.
A snippet of spatial transcriptomics in neuroscience infographic on a dark navy background.
Infographic

Spatial Transcriptomics in Neuroscience

Single-cell RNA sequencing (scRNA-seq) approaches can provide transcriptomic profiles of individual cells isolated from brain tissue.
Promotional graphic for MGI featuring Dr. Samantha Mendonsa, discussing the innovative DNBSEQ sequencing technology in the 'Teach Me in 10' series.
Video

Teach Me in 10: Changing the norms of NGS, what’s so special about MGI’s DNBSEQ technology?

In this Q&A episode, Dr. Samantha Mendonsa discusses groundbreaking innovations like nanoball technology and versatile sequencing platforms that enhance accuracy, streamline workflows and support diverse research needs.
Digital illustration of single cells under microscopic analysis, highlighting advancements in imaging for cellular diagnostics
App Note / Case Study

Achieve Accurate Cell Counts for Single-Cell Analysis

This application note presents an efficient solution for this task, ensuring precise cell and nuclei counting to perform effective single-cell analyses.
Illustration of a scientist in a lab surrounded by equipment, representing diagnostic research and testing.
How To Guide

How To Streamline Diagnostic Development and Manufacturing

This comprehensive guide explores a portfolio of molecular and immunodiagnostics solutions to enhance both lab and point-of-care applications.
Illustration of a scientist holding an illuminated object, examining DNA molecules and chromosomes, depicting genetic research.
Infographic

Reveal the Power of the 6-Base Genome

This infographic explores how this "6-base genome" approach helps researchers better understand gene expression and disease mechanisms by integrating epigenetic markers with genetic data.
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