Takara Bio USA collaborates with Illumina on a single-cell-resolution spatial mapping workflow, presented at AGBT 2026.
The human lymphatic system is notoriously difficult to map due to its size and variability among individuals. Spatial ...
The biotechnology services provider expanded its offerings with advanced gene expression analysis technology for research ...
Advances in 3D spatial multiomics are changing how researchers study tissue architecture. We spoke with Stellaromics' CEO, Dr. Todd Dickinson, to learn how this approach preserves structure and ...
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 ...
IRB Barcelona has launched Spain’s first fully integrated spatial omics platform, allowing researchers to capture cells' ...
Researchers mapped nearly 91,000 healthy bone marrow cells from donors aged two to 32, creating the first pediatric atlas.
What do healthy bone marrow cells in children look like? For the first time, researchers have mapped this out. Scientists at the Princess Máxima Center examined nearly 91,000 individual bone marrow ...
On this episode of GEN Live, we deliver a full debrief on the news from AGBT—critical to understanding where NGS, spatial, single-cell, and multiomics are headed.
Some results have been hidden because they may be inaccessible to you
Show inaccessible results