Archive for November, 2014

New YouTube Videos

Towards microfluidic-based depletion of stiff and fragile human red cells that accumulate during blood storage 

  

Development of the centrifugal multiplex RT-LAMP—ICS microdevice for influenza A virus subtyping 
   

Microfluidic Continuous Flow Digital Loop-Mediated Isothermal Amplification (LAMP) 

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Dancing Magnetotactic Bacteria wins the 2014 microTAS Video Competition

Lab on a Chip congratulates Tijmen Hageman and colleagues, winners of the first μTAS Video Competition, created in partnership with Dolomite Microfluidics and supported by the CBMS (the Chemical and Biological Microsystems Society).

At the μTAS conference in October 2014 Lab on a Chip Executive Editor, Harpal Minhas (above left) and  Dolomite Microfluidics Group Chief Sales Officer, Omar Jina (above right) presented Tijmen (above middle) with his award and a $2500 gift certificate to spend on dolomite equipment.

Prior to the conference, μTAS participants were invited to submit short, scientifically or educationally focused videos. The winning group, a collaboration of researchers from the University of Twente and the Korean Institute of Science and Technology produced a video demonstrating that bacteria can be manipulated by a magnetic field by using magnets to teach bacteria to line dance – and it looks like they had a lot of fun during the making!

Watch ‘Line Dancing Magnetotactic Bacteria‘ online now!


Ph.D student, Tijmen Hageman directed the video titled ‘Magnetotactic Bacteria.’

“The idea of dancing bacteria existed for some time already, and we decided to make it all in the style of Texas. We think we succeeded in introducting these extraordinary organisms to the public in a remarkable way and hope it will have made our research more visible,” he explains.

Like many studens, Tijmen is currently undecided about what to do after completion of his Ph.D. “I have some years left, and who knows…more videos prehaps” he says.

Tijmen can not take full credit for the winning video and we would also like to congratulate the following for their contribution:

Andreas Manz: Actor (bacteria)

Tijmen Hageman: Actor, director

Marc Pichel: Writer/ideas, cultivation

Caspar Abelmann: Animations

Line dancers: Ahyeon Gyeon, Jaewon Hwang, Jang Mi, Sangin Park, Jooyoung Im, Deepti Mittal, Marc Pichel and Tijmen Hageman

And the rest of the team for ideas and feedback!

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New YouTube Videos

A microfluidic device and automatic counting system for the study of C. elegans reproductive aging  

 
High-throughput Mapping of Brain-wide Activity in Awake and Drug-responsive Vertebrates  

 
Microfluidic cellular enrichment and separation through differences in viscoelastic deformation  

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The Sphere wins the 2014 Art in Science Competition

Congratulations to David Castro, winner of Under the Looking Glass: Art from the World of Small Science, sponsored by NIST and Lab on a Chip.

The winning photograph for the seventh annual art in science competition was announced last week at the µTAS 2014 Conference. The research group, from the King Abdullah University of Science and Technology (KAUST) in Saudi Arabia were presented with a certificate and a financial reward. Their photograph will be featured on the cover of an upcoming issue of Lab on a Chip. Make sure you don’t miss it – register for our e-alerts now!

And the winning photograph is… THE SPHERE

More about ‘The Sphere’

Photographed by David Castro and David Conchouso, is the top view of a rotating 40uL aqueous droplet, suspended at the interface between two fluids, inside a square cuvette. The droplet contains an assay of functionalized latex beads, agglutinating in the presence of human C-reactive protein. This entry was selected as the winning photograph due to its aesthetic eye appeal, artistic allure and scientific merit.

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New YouTube Videos

Design of a 2D no-flow chamber to monitor hematopoietic stem cells

Multiplexed Fluidic Plunger Mechanism for the Measurement of Red Blood Cell Deformability

A droplet-to-digital (D2D) microfluidic device for single cell assays

Self-Powered One-Touch Blood Extraction System: Novel Polymer-Capped Hollow Microneedle Integrated with Pre-Vacuum Actuator

A Quantitative Microfluidic Angiogenesis Screen for Studying Anti-Angiogenic Therapeutic Assay

Inducing microscopic thermal lesions for the dissection of functional cell networks on a chip

Electrokinetic Study on 3D Nanochannel Networks Constructed by Spatially Controlled Nanoparticle Assembly

Droplet microfluidic system for sequential generation of lipid bilayers and transmembrane electrical recordings

A Siphonage Flow and Thread-based Low-cost Platform Enables Quantitative and Sensitive Assay

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