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Spatial transcriptomics and multiomics in cancer research

Spatial context matters in complex biology. From cancer prevention to cancer biology, and for both translational and clinical studies, multiomic spatial […]

New Commercial Developments in Spatial Transcriptomics

This feature on spatial transcriptomics technology is adapted from parts of Chapters 1 & 2 of the 2023 Spatial and […]

Updated computational tools for spatial transcriptomics analysis

Spatial molecular analysis is not new. However, many subcellular, high-multiplex and multi-omics spatial methods have only emerged over the past […]

PRECAST: A Novel Method for Integration of Spatial Transcriptomics Data

A new study has revealed the development of PRECAST, a data integration method for multiple spatial transcriptomics datasets. Spatially resolved […]

An overview of single-cell RNA sequencing and spatial transcriptomics

Single-cell RNA sequencing (scRNA-seq) has become the most established and widely used technique within single-cell analysis. Spatial transcriptomics is quickly […]

A Spotlight On: Spatial Transcriptomics – Jeffrey Moffitt, Assistant Professor, Harvard Medical School

Jeffrey Moffitt is an Assistant Professor at Boston Children’s Hospital and Harvard Medical School. His lab uses state-of-the-art spatially resolved […]

Resolving tissue heterogeneity in bone, kidney and liver cancer using in situ spatial transcriptomics

The winners of the 2021 Spatial Biology EACR & NanoString Grant program, in collaboration with Illumina, will present cancer research […]

A guide to spatial transcriptomics

Today, multi-omics studies have been conducted extensively, revealing information about gene expression changes, cellular function and homeostasis. As a result, […]

Spatial transcriptomics can unravel cellular interactions in Alzheimer’s disease

This article was compiled from a recent webinar, delivered by Professor Bart de Strooper, who is the Director of UK […]

Single-Cell & Spatial ONLINE

The advent of single-cell analysis has allowed us to fine tune biological investigations down to the level of individual cells. […]