A new analysis method based on digital microfluidics developed by researchers at the University of Toronto (U of T) Institute of Biomaterials and Biomedical Engineering could eventually eliminate the ...
Digital microfluidics and biochip technologies represent a rapidly evolving interdisciplinary field that integrates principles of physics, chemistry and engineering to manipulate discrete droplets ...
CAMBRIDGE, UK & BILLERICA, Mass.--(BUSINESS WIRE)--Nuclera, a fast-growing biotech company developing enzymatic protein and gene synthesis technologies, and E Ink, the leading innovator of electronic ...
(Nanowerk Spotlight) For decades, microfluidics has held promise as a revolutionary technology, yet widespread adoption outside research labs has remained elusive. Microfluidic devices enable precise ...
Drug developers are consistently aiming to enhance clinical relevance in drug discovery. CRISPR has emerged as a versatile tool to accelerate the entire drug discovery process, with arrayed CRISPR ...
Digital microfluidic biochips represent a transformative approach in the field of biochemical analysis, offering a high degree of flexibility, scalability and automation in sample preparation. By ...
A research paper by scientists at Beijing Institute of Technology and City University of Hong Kong presented a versatile electrodynamics simulation model designed to analyze the driving forces of ...
(Nanowerk Spotlight) Microfluidics, the science of manipulating tiny amounts of fluid in micro-scale devices, has long held promise for revolutionizing fields like medical diagnostics, chemistry, and ...
Dr. Schertzer is primarily interested in droplet based microfluidic technologies for applications in point of care medical diagnostics, multiphase heat transfer and energy generation. His ...
Digital SPR TM is a next-generation technology for characterizing biomolecular interactions. By combining digital microfluidics (DMF) with SPR, digital SPR systems can effectively bypass common ...
When synthesizing nanoscale liposomes, the ability to control vesicle size helps define their pharmaceutical properties. Conventional microfluidic liposome synthesis methods, however, are limited in ...
With the continuous advancement of biomedical research toward high-throughput, precision, and personalized approaches, traditional experimental methods have shown obvious limitations in reaction ...
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