Efficient and reliable manipulation of biological particles is crucial in medical diagnosis and chemical synthesis. Inertial microfluidic devices utilizing passive hydrodynamic forces in the secondary flow have drawn considerable attention for their high throughputs, low costs, and harmless particle manipulation. However, as the dominant mechanism, the inertial lift force is difficult to quantitatively analyze because of the uncertainties of its magnitude and direction. The equilibrium position of particles varies along the migration process, thus inducing the instabilities of particle separation. Herein, we present a designable inertial microfluidic chip combining a spiral channel with periodic expansion structures for the sheathless separ...
The capability of isolating and sorting specific types of cells is crucial in life science, particul...
Inertial microfluidics is a promising approach for particle separation because of the superior advan...
Inertial microfluidics can separate microparticles in a continuous and high-throughput manner, and i...
Various mechanisms of different designs have emerged for the purpose of microparticle separation and...
Following the emergence of many blood transfusion-associated diseases, novel passive cell separation...
Passive particle manipulation using inertial and elasto-inertial microfluidics have received substan...
Passive particle manipulation using inertial and elasto-inertial microfluidics have received substan...
Inertial microfluidics is a simple, low cost, efficient size-based separation technique which is bei...
The paper reports a new method for three-dimensional observation of the location of focused particle...
Microfluidic experiments have found wide applications in medical sciences and engineering, such as c...
The birth of microsystems set the ground for technologies never imagined before, for it is not only ...
Inertial microfluidics has become a popular topic in microfluidics research for its good performance...
Inertial microfluidics has become a popular topic in microfluidics research for its good performance...
© 2019 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Recently, particle concentration and filtration us...
Microfluidic inertial focusing reliably and passively aligns small particles and cells through a com...
The capability of isolating and sorting specific types of cells is crucial in life science, particul...
Inertial microfluidics is a promising approach for particle separation because of the superior advan...
Inertial microfluidics can separate microparticles in a continuous and high-throughput manner, and i...
Various mechanisms of different designs have emerged for the purpose of microparticle separation and...
Following the emergence of many blood transfusion-associated diseases, novel passive cell separation...
Passive particle manipulation using inertial and elasto-inertial microfluidics have received substan...
Passive particle manipulation using inertial and elasto-inertial microfluidics have received substan...
Inertial microfluidics is a simple, low cost, efficient size-based separation technique which is bei...
The paper reports a new method for three-dimensional observation of the location of focused particle...
Microfluidic experiments have found wide applications in medical sciences and engineering, such as c...
The birth of microsystems set the ground for technologies never imagined before, for it is not only ...
Inertial microfluidics has become a popular topic in microfluidics research for its good performance...
Inertial microfluidics has become a popular topic in microfluidics research for its good performance...
© 2019 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Recently, particle concentration and filtration us...
Microfluidic inertial focusing reliably and passively aligns small particles and cells through a com...
The capability of isolating and sorting specific types of cells is crucial in life science, particul...
Inertial microfluidics is a promising approach for particle separation because of the superior advan...
Inertial microfluidics can separate microparticles in a continuous and high-throughput manner, and i...