Academic Publication Single-cell multi-omic and spatial profiling of human kidneys implicates the fibrotic microenvironment in kidney disease progression
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Single-cell multi-omic and spatial profiling of human kidneys implicates the fibrotic microenvironment in kidney disease progression
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Conserved spatial subtypes and cellular neighborhoods of cancer-associated fibroblasts revealed by single-cell spatial multi-omics
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CellRank 2: unified fate mapping in multiview single-cell data
Abstract Single-cell RNA sequencing allows us to model cellular state dynamics and fate decisions using expression similarity or RNA velocity to reconstruct state-change trajector...
Profiling cell identity and tissue architecture with single-cell and spatial transcriptomics
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Enhanced sensitivity and scalability with a Chip-Tip workflow enables deep single-cell proteomics
Abstract Single-cell proteomics (SCP) promises to revolutionize biomedicine by providing an unparalleled view of the proteome in individual cells. Here, we present a high-sensitiv...
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What is the core focus of the research titled 'Single-cell multi-omic and spatial profiling of human kidneys implicates the fibrotic microenvironment in kidney disease progression'?
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Are there open-source GitHub repositories related to Single-cell multi-omic and spatial profiling of human kidneys implicates the fibrotic microenvironment in kidney disease progression?
Yes, open-source projects like Robbyant/lingbot-vision (Self-supervised learning for spatial perception) are actively building upon these concepts.
Which startups are commercializing the technology behind Single-cell multi-omic and spatial profiling of human kidneys implicates the fibrotic microenvironment in kidney disease progression?
Products like Gemini Robotics ER 1.6 are bringing this to market. Their focus is: Google's SOTA robotics model for visual & spatial reasoning!.
What other academic literature is closely related to 'Single-cell multi-omic and spatial profiling of human kidneys implicates the fibrotic microenvironment in kidney disease progression'?
Yes, highly correlated activity was mapped. An entry titled 'Single-cell multi-omic and spatial profiling of human kidneys implicates the fibrotic microenvironment in kidney disease progression' discusses this: No description provided.
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Commercial Realization
Startups and Open Source tools heavily associated with the concepts explored in this paper.
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GitHubRobbyant/lingbot-vision
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GitHubpenecho/penecho
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Product HuntGemini Robotics ER 1.6
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Product HuntPangeAI
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