Spatially-resolved omics-data enable researchers to precisely distinguish cell types in tissue and explore their spatial interactions, enabling deep understanding of tissue functionality. To understand what causes or deteriorates a disease and identify related biomarkers, clinical researchers regularly perform large-scale cohort studies, requiring the comparison of such data at cellular level. In such studies, with little a-priori knowledge of what to expect in the data, explorative data analysis is a necessity. Here, we present an interactive visual analysis workflow for the comparison of cohorts of spatially-resolved omics-data. Our workflow allows the comparative analysis of two cohorts based on multiple levels-of-detail, from simple abu...
Single cell multi- 'Omics and Spatial Transcriptomics are prominent technological highlights of rece...
Single cell multi- 'Omics and Spatial Transcriptomics are prominent technological highlights of rece...
Single Cell multi- 'Omics and Spatial Transcriptomics are prominent technological highlights of rece...
Spatially-resolved omics-data enable researchers to precisely distinguish cell types in tissue and e...
Multiplex immunofluorescence (mIF) imaging technology facilitates the study of the tumour microenvir...
The deeper understanding of an organism's pathology is important for developing treatments. Over cen...
Tissue functionality is determined by the characteristics of tissue-resident cells and their interac...
Automated microscopy and computational image analysis has transformed cell biology, providing quanti...
Single-cell technologies have emerged as powerful tools to analyze complex tissues at the single-cel...
Recent decades have witnessed the dawn of an era of molecular biology as a data science. Technologic...
Complex diseases, such as cancer, have traditionally been studied using genetic data, or images alon...
Spatial mapping of heterogeneity in gene expression in cancer tissues can improve our understanding ...
The composition of the tumor microenvironment (TME)–the malignant, immune, and stromal cells implica...
Spatial transcriptomic and proteomic technologies have provided new opportunities to investigate cel...
Abstract Spatial omics technologies enable a deeper understanding of cellular organizations and inte...
Single cell multi- 'Omics and Spatial Transcriptomics are prominent technological highlights of rece...
Single cell multi- 'Omics and Spatial Transcriptomics are prominent technological highlights of rece...
Single Cell multi- 'Omics and Spatial Transcriptomics are prominent technological highlights of rece...
Spatially-resolved omics-data enable researchers to precisely distinguish cell types in tissue and e...
Multiplex immunofluorescence (mIF) imaging technology facilitates the study of the tumour microenvir...
The deeper understanding of an organism's pathology is important for developing treatments. Over cen...
Tissue functionality is determined by the characteristics of tissue-resident cells and their interac...
Automated microscopy and computational image analysis has transformed cell biology, providing quanti...
Single-cell technologies have emerged as powerful tools to analyze complex tissues at the single-cel...
Recent decades have witnessed the dawn of an era of molecular biology as a data science. Technologic...
Complex diseases, such as cancer, have traditionally been studied using genetic data, or images alon...
Spatial mapping of heterogeneity in gene expression in cancer tissues can improve our understanding ...
The composition of the tumor microenvironment (TME)–the malignant, immune, and stromal cells implica...
Spatial transcriptomic and proteomic technologies have provided new opportunities to investigate cel...
Abstract Spatial omics technologies enable a deeper understanding of cellular organizations and inte...
Single cell multi- 'Omics and Spatial Transcriptomics are prominent technological highlights of rece...
Single cell multi- 'Omics and Spatial Transcriptomics are prominent technological highlights of rece...
Single Cell multi- 'Omics and Spatial Transcriptomics are prominent technological highlights of rece...