Explore a new class of spatial technology for use with formalin-fixed paraffin-embedded (FFPE) samples. This workflow ...
One of the most stubborn problems in modern genomics has finally been given a serious new contender. Single-cell RNA ...
Spatial transcriptomics is revolutionizing the study of tissue architecture, cellular states, and tumor-immune interactions in clinical specimens. This presentation introduces the principles and ...
Malva can search RNA sequences across millions of individual cells in seconds without requiring researchers to download enormous datasets or use a reference genome. The platform has indexed more than ...
New simulator and computational tools generate realistic ‘virtual tissues’ and map cell-to-cell ‘conversations’ from spatial transcriptomics data, potentially accelerating AI-driven discoveries in ...
In this Teach Me in 10 episode, Dr. Christina Chang from Takara Bio USA introduces a new class of spatial technology for use ...
Since its inception, spatial biology has proven a revolutionary frontier in life science research. However, there is still plenty of room for growth in the systems we use to conduct spatial biology ...
Every tissue in the human body is a mosaic. Tumor biopsies, blood samples, and frozen sections of diseased organs all contain ...
Stellaromics, Inc., the leader in 3D spatial multi-omics, today announced the first commercial placements of its Pyxa® platform, the industry's first solution for true 3D spatial multi-omics in intact ...