Measuring direct current trans-epithelial electrical resistance in organ-on-a-chip microsystems.
about
Microfluidic organ-on-chip technology for blood-brain barrier researchRobust fluidic connections to freestanding microfluidic hydrogelsA microfluidics-based in vitro model of the gastrointestinal human-microbe interfaceEmulating Host-Microbiome Ecosystem of Human Gastrointestinal Tract in Vitro.Tissue Chips to aid drug development and modeling for rare diseases.Detection of frequency-dependent endothelial response to oscillatory shear stress using a microfluidic transcellular monitor.Recreating blood-brain barrier physiology and structure on chip: A novel neurovascular microfluidic bioreactor.Co-culture of Living Microbiome with Microengineered Human Intestinal Villi in a Gut-on-a-Chip Microfluidic Device.Finite element modeling to analyze TEER values across silicon nanomembranes.A compartmentalized microfluidic chip with crisscross microgrooves and electrophysiological electrodes for modeling the blood-retinal barrier.Placental Drug Transport-on-a-Chip: A Microengineered In Vitro Model of Transporter-Mediated Drug Efflux in the Human Placental Barrier.Fitting tissue chips and microphysiological systems into the grand scheme of medicine, biology, pharmacology, and toxicology.Organ-On-A-Chip Platforms: A Convergence of Advanced Materials, Cells, and Microscale Technologies.Fabrication and Validation of an Organ-on-chip System with Integrated Electrodes to Directly Quantify Transendothelial Electrical Resistance.Cardiac microphysiological devices with flexible thin-film sensors for higher-throughput drug screening.Organs-on-Chips with combined multi-electrode array and transepithelial electrical resistance measurement capabilities.Organs-on-chips with integrated electrodes for trans-epithelial electrical resistance (TEER) measurements of human epithelial barrier function.Stretchable impedance sensor for mammalian cell proliferation measurements.A multi-chamber microfluidic intestinal barrier model using Caco-2 cells for drug transport studies.Microfluidic Organ-on-a-Chip Models of Human Intestine.Gellan Gum/Pectin Beads Are Safe and Efficient for the Targeted Colonic Delivery of Resveratrol.Medium throughput breathing human primary cell alveolus-on-chip modelEngineering and monitoring cellular barrier models
P2860
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P2860
Measuring direct current trans-epithelial electrical resistance in organ-on-a-chip microsystems.
description
2015 nî lūn-bûn
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2015年の論文
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2015年学术文章
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2015年学术文章
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2015年学术文章
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2015年学术文章
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2015年学术文章
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2015年学术文章
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2015年學術文章
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name
Measuring direct current trans ...... organ-on-a-chip microsystems.
@en
Measuring direct current trans ...... organ-on-a-chip microsystems.
@nl
type
label
Measuring direct current trans ...... organ-on-a-chip microsystems.
@en
Measuring direct current trans ...... organ-on-a-chip microsystems.
@nl
prefLabel
Measuring direct current trans ...... organ-on-a-chip microsystems.
@en
Measuring direct current trans ...... organ-on-a-chip microsystems.
@nl
P2093
P2860
P50
P356
P1433
P1476
Measuring direct current trans ...... organ-on-a-chip microsystems.
@en
P2093
Albert van den Berg
Daniel Levner
Donald E Ingber
Geraldine A Hamilton
Jean-Phillipe Frimat
Loes I Segerink
Marinke W van der Helm
P2860
P304
P356
10.1039/C4LC01219D
P577
2015-02-01T00:00:00Z