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High resolution spatially resolved transcriptomic atlas of kidney injury and repair by RNA hybridization-based in situ sequencing [10X Visium]
PubMed Full text in PMC Similar studies
High resolution spatially resolved transcriptomic atlas of kidney injury and repair by RNA hybridization-based in situ sequencing
High resolution spatially resolved transcriptomic atlas of kidney injury and repair by RNA hybridization-based in situ sequencing [ISS, Cartana]
Spatially resolved transcriptomic analysis of acute kidney injury in a female murine model
PubMed Full text in PMC Similar studies SRA Run Selector
Cell profiling of acute kidney injury reveals conserved cellular responses to injury
Advantages of single nucleus over single cell RNA-seq in adult kidney
The Single Cell Transcriptomic Landscape of Early Human Diabetic Nephropathy
Single-cell transcriptomic sampling of regenerating aged mouse hindlimb muscle
Spatial RNA sequencing of regenerating mouse hindlimb muscle
Single-cell transcriptomic sampling of regenerating mouse muscle tissue
Single-nuclear transcriptomics reveals a diversity of proximal tubule cell states in a dynamic response to acute kidney injury.
An atlas of healthy and injured cell states and niches in the human kidney [scRNA-Seq]
Spatial localization with Spatial Transcriptomics for an atlas of healthy and injured cell states and niches in the human kidney [Visium ST]
An atlas of healthy and injured cell states and niches in the human kidney
An atlas of healthy and injured cell states and niches in the human kidney [snCv3]
An atlas of healthy and injured cell states and niches in the human kidney [scCv3]
An atlas of healthy and injured cell states and niches in the human kidney [Slide-seq2]
An atlas of healthy and injured cell states and niches in the human kidney [SNARE-Seq2]
De novo analysis of bulk RNA-seq data at spatially resolved single-cell resolution
Predicting proximal tubule failed repair drivers through regularized regression analysis of single cell multiomic sequencing
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