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Active droplet sorting in microfluidics: a review

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TLDR
This review presents state-of-the-art technologies which are implemented to efficiently sort droplets and classify the concepts according to the type of energy implemented into the system.
Abstract
The ability to manipulate and sort droplets is a fundamental issue in droplet-based microfluidics. Various lab-on-a-chip applications can only be realized if droplets are systematically categorized and sorted. These micron-sized droplets act as ideal reactors which compartmentalize different biological and chemical reagents. Array processing of these droplets hinges on the competence of the sorting and integration into the fluidic system. Recent technological advances only allow droplets to be actively sorted at the rate of kilohertz or less. In this review, we present state-of-the-art technologies which are implemented to efficiently sort droplets. We classify the concepts according to the type of energy implemented into the system. We also discuss various key issues and provide insights into various systems.

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Non-coalescence of oppositely charged drops

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Magnetic Actuation Systems for Miniature Robots: A Review

TL;DR: A review on the state-of-the-art magnetic actuation systems for miniature robots is presented in this paper, with the goal of providing readers with a better understanding of magnetic actuators and guidance for future system design.
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Functional TCR T cell screening using single-cell droplet microfluidics

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Hydrogel Biomaterials for Stem Cell Microencapsulation.

TL;DR: Stem cell encapsulation in uniform micro-sized hydrogels and their transplantation in vivo have recently garnered great attention for minimally invasive administration and the enhancement of therapeutic activities of the transplanted stem cells.
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High-throughput screening technologies for enzyme engineering

TL;DR: These emerging enzyme engineering platforms, which in some cases enable the screening of greater than 10 million enzyme variants, are discussed, and benefits and limitations of each technology are highlighted.
References
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Journal ArticleDOI

Real time quantitative PCR.

TL;DR: Unlike other quantitative PCR methods, real-time PCR does not require post-PCR sample handling, preventing potential PCR product carry-over contamination and resulting in much faster and higher throughput assays.
Journal ArticleDOI

Rapid prototyping of microfluidic systems in poly(dimethylsiloxane)

TL;DR: A procedure that makes it possible to design and fabricate microfluidic systems in an elastomeric material poly(dimethylsiloxane) (PDMS) in less than 24 h by fabricating a miniaturized capillary electrophoresis system is described.
Journal ArticleDOI

Monolithic microfabricated valves and pumps by multilayer soft lithography

TL;DR: An extension to the soft lithography paradigm, multilayersoft lithography, with which devices consisting of multiple layers may be fabricated from soft materials is described, to build active microfluidic systems containing on-off valves, switching valves, and pumps entirely out of elastomer.
PatentDOI

Microfluidic large scale integration

TL;DR: The fluidic multiplexor as discussed by the authors is a combinatorial array of binary valve patterns that exponentially increases the processing power of a network by allowing complex fluid manipulations with a minimal number of inputs.
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