Fundamentals of inertial focusing in microchannels J Zhou, I Papautsky Lab on a Chip 13 (6), 1121-1132, 2013 | 469 | 2013 |
Isolation of circulating tumor cells in non-small-cell-lung-cancer patients using a multi-flow microfluidic channel J Zhou, A Kulasinghe, A Bogseth, K O’Byrne, C Punyadeera, I Papautsky Microsystems & nanoengineering 5 (1), 8, 2019 | 174 | 2019 |
Modulation of aspect ratio for complete separation in an inertial microfluidic channel J Zhou, PV Giridhar, S Kasper, I Papautsky Lab on a Chip 13 (10), 1919-1929, 2013 | 172 | 2013 |
Viscoelastic microfluidics: progress and challanges J Zhou, I Papautsky Microsystems & Nanoengineering 6, 113, 2020 | 162 | 2020 |
Enhanced size-dependent trapping of particles using microvortices J Zhou, S Kasper, I Papautsky Microfluidics and nanofluidics 15, 611-623, 2013 | 93 | 2013 |
Vortex-aided inertial microfluidic device for continuous particle separation with high size-selectivity, efficiency, and purity X Wang, J Zhou, I Papautsky Biomicrofluidics 7 (4), 2013 | 93 | 2013 |
Capture of circulating tumour cell clusters using straight microfluidic chips A Kulasinghe, J Zhou, L Kenny, I Papautsky, C Punyadeera Cancers 11 (1), 89, 2019 | 85 | 2019 |
Label-free microfluidic sorting of microparticles J Zhou, P Mukherjee, H Gao, Q Luan, I Papautsky APL Bioengineering 3 (4), 041504, 2019 | 80 | 2019 |
Microfluidic systems for hydrodynamic trapping of cells and clusters Q Luan, C Macaraniag, J Zhou, I Papautsky Biomicrofluidics 14 (3), 2020 | 69 | 2020 |
Single stream inertial focusing in low aspect-ratio triangular microchannels P Mukherjee, X Wang, J Zhou, I Papautsky Lab on a Chip 19 (1), 147-157, 2019 | 65 | 2019 |
Isolation of cells from whole blood using shear-induced diffusion J Zhou, C Tu, Y Liang, B Huang, Y Fang, X Liang, I Papautsky, X Ye Scientific reports 8 (1), 9411, 2018 | 63 | 2018 |
Rapid prototyping of soft lithography masters for microfluidic devices using dry film photoresist in a non-cleanroom setting P Mukherjee, F Nebuloni, H Gao, J Zhou, I Papautsky Micromachines 10 (3), 192, 2019 | 58 | 2019 |
A microfluidic chip for cell patterning utilizing paired microwells and protein patterns C Tu, B Huang, J Zhou, Y Liang, J Tian, L Ji, X Liang, X Ye Micromachines 8 (1), 1, 2016 | 40 | 2016 |
Size-dependent enrichment of leukocytes from undiluted whole blood using shear-induced diffusion J Zhou, I Papautsky Lab on a Chip 19 (20), 3416-3426, 2019 | 31 | 2019 |
The label-free separation and culture of tumor cells in a microfluidic biochip J Zhou, C Tu, Y Liang, B Huang, Y Fang, X Liang, X Ye Analyst 145, 1706-1715, 2020 | 29 | 2020 |
Modulation of rotation-induced lift force for cell filtration in a low aspect ratio microchannel J Zhou, PV Giridhar, S Kasper, I Papautsky Biomicrofluidics 8 (4), 2014 | 26 | 2014 |
Microfluidic techniques for isolation, formation, and characterization of circulating tumor cells and clusters C Macaraniag, Q Luan, J Zhou, I Papautsky APL bioengineering 6 (3), 2022 | 24 | 2022 |
A flexible cell concentrator using inertial focusing C Tu, J Zhou, Y Liang, B Huang, Y Fang, X Liang, X Ye Biomedical Microdevices 19, 1-12, 2017 | 22 | 2017 |
Non-small cell lung carcinoma spheroid models in agarose microwells for drug response studies Q Luan, JH Becker, C Macaraniag, MG Massad, J Zhou, T Shimamura, ... Lab on a Chip 22, 2364-2375, 2022 | 20 | 2022 |
Study of the union method of microelectrode array and AFM for the recording of electromechanical activities in living cardiomyocytes J Tian, C Tu, B Huang, Y Liang, J Zhou, X Ye European Biophysics Journal 46, 495-507, 2017 | 15 | 2017 |