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Single-Cell Analysis – Multimedia

6 Microfluidic Researchers You Should Follow content piece image
Listicle

6 Microfluidic Researchers You Should Follow

In this list we take a look at 6 researchers whose contributions have helped (and are continuing to help) drive the field forward.
Single Cell Analysis in Diagnostics content piece image
Video

Single Cell Analysis in Diagnostics

Professor Ulf Landegren of Uppsala University talks single cell analysis.
How Are Our Genes Regulated? content piece image
Video

How Are Our Genes Regulated?

Rickard Sandberg has developed a method of single-cell analysis that provides groundbreaking molecular insight into the properties and function of cells.
App Note / Case Study

Automated Low-volume DNA Normalisation and NGS Library Prep for Single-cell Analysis

This application note presents data from Prof. Stephen Quake’s lab, Stanford University, USA on the use of TTP Labtech’s automated low-volume liquid handlers for miniaturising DNA normalisation and library prep volumes for singlecell analysis.
App Note / Case Study

Using the µEncapsulator 1 to Capture Single Cells in Droplets with Beads

In order to simplify high throughput single cell methods, Dolomite has developed the µEncapsulator 1 System, a compact module that simply and securely holds a droplet generating chip, convenient sample reservoirs, and an output reservoir
App Note / Case Study

Approaching Single-Cell Sequencing by Understanding NGS Library Complexity and Bias

This application note describes the sequence coverage performance andp reservation of molecular complexity of next generation sequencing (NGS) libraries generated from human and microbial genomic DNA using the Accel-NGS™ 2S DNA Library Kit for whole-genome sequencing (WGS) on the Illumina® platform.
Single Cell Analysis of Voltage-gated Potassium Channels for Electrophysiological Properties of Rat Hypothalamic Paraventricular Nucleus Neurons content piece image
Poster

Single Cell Analysis of Voltage-gated Potassium Channels for Electrophysiological Properties of Rat Hypothalamic Paraventricular Nucleus Neurons

The hypothalamic paraventricular nucleus (PVN), an integrating site in the regulation of neuroendocrine and autonomic nervous systems, is composed of heterogeneous neurons, type I and type II, based on their electrophysiological properties. Single cell real-time RT-PCR analysis was made to investigate the molecular basis underlying the properties. The results suggest that Kv1.3, Kv4.2 and Kv4.3 potassium channels are the potential candidates in determining the electrophysiological properties in
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