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Microfluidics in cell biology part b : microfluidics in single cells / edited by Matthieu Piel, Daniel Fletcher, Junsang Doh

By: Contributor(s): Material type: TextTextLanguage: English Series: Methods in Cell Biology ; Volume 147Publisher: ©2018Edition: First EditionDescription: xv, 231 pages : 24 cm illustrations (chiefly color)Content type:
  • text
Media type:
  • unmediated
Carrier type:
  • volume
ISBN:
  • 9780128142820
Subject(s): LOC classification:
  • QH585 PIE
Online resources:
Contents:
Section 1. Microfluidics for micro-organisms. Drug delivery and temperature control in microfluidic chips during live-cell imaging experiments -- Controllable stress paterns over multi-generation timescale in microfluidic devices -- A bacterial antibiotic resistance accelerator and applications -- A microfluidic fluidized bed to capture, amplify and detect bacteria from raw samples -- Section 2. Microfluidics for cell migration. Micro-engineered "pillar forests" to study cell migration in complex but controlled 3D environments -- Measuring spontaneous neutrophil motility signatures from a drop of blood using microfluidics -- Directing cell migration on flat substrates and in confinement with microfabrication and microfluidics -- 3D cell migration in the presence of chemical gradients using microfluidics -- Section 3. Microfluidics for cell mechanics. Microfluidics for cell sorting and single cell analysis from whole blood -- High-throughput single-cell mechanical phenotyping with real-time deformability cytometry -- A microfluidic cell-trapping device to study dynamic host-microbe interactions at the single-cell level -- Mechano-chemostats to study the effects of compressive stress on yeast.
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Holdings
Item type Current library Collection Call number Status Date due Barcode
Books Books GSU Library Epoch General Stacks NFIC QH585PIE (Browse shelf(Opens below)) Available 50000001841

Includes bibliographical references.

Section 1. Microfluidics for micro-organisms. Drug delivery and temperature control in microfluidic chips during live-cell imaging experiments --
Controllable stress paterns over multi-generation timescale in microfluidic devices --
A bacterial antibiotic resistance accelerator and applications --
A microfluidic fluidized bed to capture, amplify and detect bacteria from raw samples --
Section 2. Microfluidics for cell migration. Micro-engineered "pillar forests" to study cell migration in complex but controlled 3D environments --
Measuring spontaneous neutrophil motility signatures from a drop of blood using microfluidics --
Directing cell migration on flat substrates and in confinement with microfabrication and microfluidics --
3D cell migration in the presence of chemical gradients using microfluidics --
Section 3. Microfluidics for cell mechanics. Microfluidics for cell sorting and single cell analysis from whole blood --
High-throughput single-cell mechanical phenotyping with real-time deformability cytometry --
A microfluidic cell-trapping device to study dynamic host-microbe interactions at the single-cell level --
Mechano-chemostats to study the effects of compressive stress on yeast.

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