scispace - formally typeset
Journal ArticleDOI

Channel innovations for inertial microfluidics

TLDR
The purpose of this review is to provide guidance for the continued study of innovative channel designs to improve further the accuracy and throughput of inertial microfluidics.
Abstract
Inertial microfluidics has gained significant attention since first being proposed in 2007 owing to the advantages of simplicity, high throughput, precise manipulation, and freedom from an external field. Superior performance in particle focusing, filtering, concentrating, and separating has been demonstrated. As a passive technology, inertial microfluidics technology relies on the unconventional use of fluid inertia in an intermediate Reynolds number range to induce inertial migration and secondary flow, which depend directly on the channel structure, leading to particle migration to the lateral equilibrium position or trapping in a specific cavity. With the advances in micromachining technology, many channel structures have been designed and fabricated in the past decade to explore the fundamentals and applications of inertial microfluidics. However, the channel innovations for inertial microfluidics have not been discussed comprehensively. In this review, the inertial particle manipulations and underlying physics in conventional channels, including straight, spiral, sinusoidal, and expansion-contraction channels, are briefly described. Then, recent innovations in channel structure for inertial microfluidics, especially channel pattern modification and unconventional cross-sectional shape, are reviewed. Finally, the prospects for future channel innovations in inertial microfluidic chips are also discussed. The purpose of this review is to provide guidance for the continued study of innovative channel designs to improve further the accuracy and throughput of inertial microfluidics.

read more

Citations
More filters
Journal ArticleDOI

Microfluidics for Drug Development: From Synthesis to Evaluation.

TL;DR: A comprehensive review of the entire microfluidics-based drug development system, from drug synthesis to drug evaluation, is provided in this paper, where the challenges in the current status and the prospects for future development are discussed.
Journal ArticleDOI

Label-Free Isolation of Exosomes Using Microfluidic Technologies.

TL;DR: Exosomes are cell-derived structures packaged with lipids, proteins, and nucleic acids, and they exist in diverse bodily fluids and are involved in physiological and pathological processes as discussed by the authors.
Journal ArticleDOI

Multiphysics microfluidics for cell manipulation and separation: a review

TL;DR: In this article , a review of multiphysics microfluidics is presented, which combines multiple functional physical processes in a micro-fluidic platform and reassess the feasibility of coupling multiple physical processes.
Journal Article

Continuous removal of small nonviable suspended mammalian cells and debris from bioreactors using inertial microfluidics

TL;DR: This study demonstrates the efficient removal of small (<10 μm) nonviable cells from bioreactors while maintaining viable cells using inertial microfluidic cell sorting devices and characterize their performance.
Journal ArticleDOI

Microfluidic platforms for the manipulation of cells and particles

Hadi Afsaneh, +1 more
- 01 Aug 2022 - 
TL;DR: In this paper , the authors present a concise review on the operation principles of various cell/particle manipulation methods and explain their merits and limitations, and some of the novel mechanisms that exhibit great potential in the cell or particle manipulation.
References
More filters
Journal ArticleDOI

Ror2 signaling regulates Golgi structure and transport through IFT20 for tumor invasiveness

TL;DR: It is found that intraflagellar transport 20 mediates the ability of Ror2 signaling to induce the invasiveness of tumors that lack primary cilia, and IFT20 regulates the nucleation of Golgi-derived microtubules by affecting the GM130-AKAP450 complex.
Journal ArticleDOI

The origins and the future of microfluidics

TL;DR: The manipulation of fluids in channels with dimensions of tens of micrometres — microfluidics — has emerged as a distinct new field that has the potential to influence subject areas from chemical synthesis and biological analysis to optics and information technology.
Journal ArticleDOI

The present and future role of microfluidics in biomedical research

TL;DR: The progress made by lab-on-a-chip microtechnologies in recent years is analyzed, and the clinical and research areas in which they have made the greatest impact are discussed.
Journal ArticleDOI

Continuous inertial focusing, ordering, and separation of particles in microchannels

TL;DR: The ability to differentially order particles of different sizes, continuously, at high rates, and without external forces in microchannels is expected to have a broad range of applications in continuous bioparticle separation, high-throughput cytometry, and large-scale filtration systems.
Related Papers (5)