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image: Massively Parallel Perturbations

Massively Parallel Perturbations

By | March 1, 2017

Scientists combine CRISPR gene editing with single-cell sequencing for genotype-phenotype screens.

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image: Infographic: Single-Cell CRISPR Screens

Infographic: Single-Cell CRISPR Screens

By | March 1, 2017

See how two new methods track responses to unique genetic manipulations in numerous individual cells in parallel.

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image: Using Raman Spectroscopy to Identify Cell Types

Using Raman Spectroscopy to Identify Cell Types

By | December 1, 2016

Improvements in instruments and statistical tools allow the capture and analysis of large data sets.

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image: Top 10 Innovations 2016

Top 10 Innovations 2016

By | December 1, 2016

This year’s list of winners celebrates both large leaps and small (but important) steps in life science technology.

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image: Single-Cell RNA Sequencing Reveals Neuronal Diversity

Single-Cell RNA Sequencing Reveals Neuronal Diversity

By | June 23, 2016

Using a new approach to analyze the transcriptomes of thousands of individual cell nuclei in postmortem brains, researchers identify multiple neuronal subtypes.

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image: AACR Q&A: Elaine Mardis

AACR Q&A: Elaine Mardis

By | April 18, 2016

The genomics pioneer shares the sessions she most looks forward to at this year’s American Association for Cancer Research annual meeting.

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image: Top Technical Advances 2015

Top Technical Advances 2015

By | December 24, 2015

The Scientist’s choice of major improvements in imaging, optogenetics, single-cell analyses, and CRISPR

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image: Single-Cell Suck-and-Spray

Single-Cell Suck-and-Spray

By | December 1, 2015

A nanoscopic needle and a mass spectrometer reveal the contents of individual cells.

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image: Hiding in Plain Sight

Hiding in Plain Sight

By | March 31, 2015

Researchers using metagenomics and single-cell sequencing identify a potential new bacterial phylum.

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image: Singularly Alluring

Singularly Alluring

By | June 1, 2014

Microfluidic tools and techniques for investigating cells, one by one

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