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Single-cell RNA sequencing (scRNA-seq) has revolutionized modern biology, allowing scientists to study the expression of ...
Researchers at EMBL Barcelona have quantitatively evaluated the risk of undetected artefacts in single-cell RNA sequencing ...
What Is Driving the Market? Ongoing technological advancements remain the core driver. Enhanced cell capture efficiency, barcoding innovations, next-generation library preparation kits, and ...
Plant stem cells are crucial for the world's food supply, animal feed, and fuel production. They lay the foundation for how ...
Over the past decade, single-cell sequencing technologies have revolutionized biological research by enabling high-resolution molecular profile analysis of individual cells within complex populations.
The enteric nervous system (ENS), the largest division of autonomic nervous system, is a tantalizing frontier in neuroscience. With the advent of single-cell transcriptomics, the ENS has been ...
New tool classifies cell types from single-cell RNA sequencing data with speed and accuracy, processing 650k cells in 6 ...
A new review in eGastroenterology highlights how single-cell transcriptomics is revolutionizing our understanding of acute ...
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Single-cell transcriptomics reveals new players in liver regeneration
The liver is remarkable for its ability to regenerate after injury, yet when this process fails, acute liver failure (ALF) ...
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