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Tutorial: guidelines for the experimental design of single-cell RNA sequencing studies
by
Picelli, Simone
, Heyn, Holger
, Moutinho, Catia
, Lafzi, Atefeh
in
Data analysis
/ Data interpretation
/ Data processing
/ Datasets
/ Decision analysis
/ Decision making
/ Design
/ Design of experiments
/ Experiments
/ Gene expression
/ Gene sequencing
/ Genomes
/ Guidelines
/ Phenotyping
/ Ribonucleic acid
/ RNA
/ Sample preparation
2018
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Tutorial: guidelines for the experimental design of single-cell RNA sequencing studies
by
Picelli, Simone
, Heyn, Holger
, Moutinho, Catia
, Lafzi, Atefeh
in
Data analysis
/ Data interpretation
/ Data processing
/ Datasets
/ Decision analysis
/ Decision making
/ Design
/ Design of experiments
/ Experiments
/ Gene expression
/ Gene sequencing
/ Genomes
/ Guidelines
/ Phenotyping
/ Ribonucleic acid
/ RNA
/ Sample preparation
2018
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Tutorial: guidelines for the experimental design of single-cell RNA sequencing studies
by
Picelli, Simone
, Heyn, Holger
, Moutinho, Catia
, Lafzi, Atefeh
in
Data analysis
/ Data interpretation
/ Data processing
/ Datasets
/ Decision analysis
/ Decision making
/ Design
/ Design of experiments
/ Experiments
/ Gene expression
/ Gene sequencing
/ Genomes
/ Guidelines
/ Phenotyping
/ Ribonucleic acid
/ RNA
/ Sample preparation
2018
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Tutorial: guidelines for the experimental design of single-cell RNA sequencing studies
Journal Article
Tutorial: guidelines for the experimental design of single-cell RNA sequencing studies
2018
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Overview
Single-cell RNA sequencing is at the forefront of high-resolution phenotyping experiments for complex samples. Although this methodology requires specialized equipment and expertise, it is now widely applied in research. However, it is challenging to create broadly applicable experimental designs because each experiment requires the user to make informed decisions about sample preparation, RNA sequencing and data analysis. To facilitate this decision-making process, in this tutorial we summarize current methodological and analytical options, and discuss their suitability for a range of research scenarios. Specifically, we provide information about best practices for the separation of individual cells and provide an overview of current single-cell capture methods at different cellular resolutions and scales. Methods for the preparation of RNA sequencing libraries vary profoundly across applications, and we discuss features important for an informed selection process. An erroneous or biased analysis can lead to misinterpretations or obscure biologically important information. We provide a guide to the major data processing steps and options for meaningful data interpretation. These guidelines will serve as a reference to support users in building a single-cell experimental framework—from sample preparation to data interpretation—that is tailored to the underlying research context.
Publisher
Nature Publishing Group
Subject
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