Exploring the human brain with automated high-plex immunofluorescence: focus on Multiple Sclerosis disease

Exploring the human brain with automated high-plex immunofluorescence: focus on Multiple Sclerosis disease

Spatial resolution of Alzheimer’s disease using automated high-plex immunofluorescence

Spatial resolution of Alzheimer’s disease using automated high-plex immunofluorescence

Decoding Neuro-Immune Interactions: Spatial Multiomics Analysis of Mouse Brain via same-section RNA and Protein co-detection

Decoding Neuro-Immune Interactions: Spatial Multiomics Analysis of Mouse Brain via same-section RNA and Protein co-detection

Spatially resolved integrated omics profiling for ADC targets in Urothelial Carcinoma

Spatially resolved integrated omics profiling for ADC targets in Urothelial Carcinoma

Dissecting the immune landscape in EBV+ classical Hodgkin lymphoma following IL-23 inhibition using single-cell hyperplex immunofluorescence analysis: A case report

Dissecting the immune landscape in EBV+ classical Hodgkin lymphoma following IL-23 inhibition using single-cell hyperplex immunofluorescence analysis: A case report

EBV-positive Hodgkin lymphoma with immunosuppressive microenvironment during IL-23 inhibitor therapy for psoriasis

Reversible Downregulation of HLA Class I in Adenoid Cystic Carcinoma

Discover the power of spatial multiomics: RNAscope™ HiPlex Pro on COMET™

Multiomic mapping of the brain: same-section, fully-automated spatial RNA and protein detection on mouse frozen tissues

Multiomic mapping of the brain: same-section, fully-automated spatial RNA and protein detection on mouse frozen tissues

Acute kidney injury results in long-term alterations of kidney lymphatics in mice