Reconstruction of heterogeneity through single cell transcriptional profiling has greatly advanced our understanding of the spatial liver transcriptome in recent years. However, global transcriptional differences across lobular units remain elusive in physical space. Here, we apply Spatial Transcriptomics to perform transcriptomic analysis across sectioned liver tissue. We confirm that the heterogeneity in this complex tissue is predominantly determined by lobular zonation. By introducing novel computational approaches, we enable transcriptional gradient measurements between tissue structures, including several lobules in a variety of orientations. Further, our data suggests the presence of previously transcriptionally uncharacterized struc...
In this Perspective, we discuss the current status and advances in spatial transcriptomics technolog...
Characterizing the expression level of genes (transcriptome) in cells and tis- sues is essential for...
Spatial patterns of gene expression manifest at scales ranging from local (e.g., cell-cell interacti...
Reconstruction of heterogeneity through single cell transcriptional profiling has greatly advanced o...
Reconstruction of spatial heterogeneity through single-cell transcriptional profiling has greatly ad...
Spatially resolved transcriptomics has greatly expanded our knowledge of complex multicellular biolo...
Analysis of the pattern of proteins or messenger RNAs (mRNAs) in histological tissue sections is a c...
Transcriptome analysis allows the study of gene expression of human tissues and it is a valuable too...
Spatially resolved transcriptomic analyses can reveal molecular insights underlying tissue structure...
The rapid development of spatial transcriptomics (ST) techniques has allowed the measurement of tran...
Recent advances in spatially resolved transcriptomics have greatly expandedthe knowledge of complex ...
Emerging spatial technologies, including spatial transcriptomics and spatial epigenomics, are becomi...
Spatial and molecular characteristics determine tissue function, yet high-resolution methods to capt...
The mammalian liver is composed of repeating hexagonal units termed lobules. Spatially resolved sing...
Recent developments in spatially resolved transcriptomics (SRT) technologies have enabled scientists...
In this Perspective, we discuss the current status and advances in spatial transcriptomics technolog...
Characterizing the expression level of genes (transcriptome) in cells and tis- sues is essential for...
Spatial patterns of gene expression manifest at scales ranging from local (e.g., cell-cell interacti...
Reconstruction of heterogeneity through single cell transcriptional profiling has greatly advanced o...
Reconstruction of spatial heterogeneity through single-cell transcriptional profiling has greatly ad...
Spatially resolved transcriptomics has greatly expanded our knowledge of complex multicellular biolo...
Analysis of the pattern of proteins or messenger RNAs (mRNAs) in histological tissue sections is a c...
Transcriptome analysis allows the study of gene expression of human tissues and it is a valuable too...
Spatially resolved transcriptomic analyses can reveal molecular insights underlying tissue structure...
The rapid development of spatial transcriptomics (ST) techniques has allowed the measurement of tran...
Recent advances in spatially resolved transcriptomics have greatly expandedthe knowledge of complex ...
Emerging spatial technologies, including spatial transcriptomics and spatial epigenomics, are becomi...
Spatial and molecular characteristics determine tissue function, yet high-resolution methods to capt...
The mammalian liver is composed of repeating hexagonal units termed lobules. Spatially resolved sing...
Recent developments in spatially resolved transcriptomics (SRT) technologies have enabled scientists...
In this Perspective, we discuss the current status and advances in spatial transcriptomics technolog...
Characterizing the expression level of genes (transcriptome) in cells and tis- sues is essential for...
Spatial patterns of gene expression manifest at scales ranging from local (e.g., cell-cell interacti...