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Peer Reviewed Journal Articles

11 X. Wang, E. Jodoin, J. Jorgensen, J. Lee, J. J Markmann, S. Cataltepe, and D. Irimia, "Progressive mechanical confinement of chemotactic neutrophils induces arrest, oscillations, and retrotaxis," Journal of leukocyte biology, 2018. Link to article. 

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10 N. Krishnamoorthy, D.N. Douda, T.R. Brüggemann, I. Ricklefs, M.G. Duvall, R.E.E. Abdulnour, K. Martinod, L. Tavares, X. Wang, M.  Cernadas, E. Israel and et al., “Neutrophil cytoplasts induce Th17 differentiation and skew inflammation toward neutrophilia in severe asthma," Science Immunology, 3, eaao4747, 2018. Link to article. 

9 D. Irimia and X. Wang, “Inflammation-on-a-chip – probing immune system ex vivo, Trends in Biotechnology, 2018,” Trends in Biotechnology, 36, 923-937, 2018. Link to article. 

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8 X. Wang, Hua Gao, Nadja Dindic, Necati Kaval, and I. Papautsky, “A low-cost, plug-and-play inertial microfluidic helical capillary device for high-throughput flow cytometry,” Biomicrofluidics, 11, 014107, 2017. Link to article. 

7 X. Wang, C. Liedert, R. Liedert, and I. Papautsky, “Disposable, roll-to-roll hot embossed inertial microfluidic device for size-based sorting of microbeads and cells,” Lab Chip, 16, 1821, 2016. Link to article. (Selected as the back cover) 

6 X. Wang, X. Yang, and I. Papautsky, An integrated microfluidic vortex sorter for tunable sorting and purification of cells, Technology, i04, 88, 2016. Link to article. 

5 X. Wang, M. Zandi, C. Ho, N. Kavel and I. Papautsky, Inertial microfluidic single-stream focusing in straight microchannel, Lab Chip, 15, 1812, 2015. Link to article. (Top three most downloaded articles in Lab on a Chip in Mar 2015) (Selected as the back cover) 

 

4 X. Wang and I. Papautsky, Size-based microfluidic multimodal microparticle sorter, Lab Chip, 15, 1350, 2015. Link to article

(Top five most downloaded articles in Lab on a Chip in Jan 2015)

 

3 X. Wang, J. Zhou, and I. Papautsky, Vortex-aided inertial microfluidic device for continuous particle separation with high size-selectivity, efficiency, and purity, Biomicrofluidics, 7, 044119, 2013. Link to article.

 

2 L. Hou, J. Hagen, X. Wang, I. Papautsky, R. Naik, N. Kelley-Loughnane and J. Heikenfeld, Artificial Microfluidic Skin for In Vitro Perspiration Simulation and Testing, Lab Chip, 13, 1868, 2013. Link to article.

 

1 X. Wang, J. A. Hagen and I. Papautsky, Paper pump for passive programmable transport, Biomicrofluidics, 7, 014107, 2013. Link to article

 

Conference Proceedings

9 X. Wang, E. Jodoin, J. Jorgenson, and D. Irimia, Microfluidic single-cell assay for evaluation of neutrophil active deformability during chemotaxis, the 21st MicroTAS, 2017.

 

8 X. Wang, H. Gao and I. Papautsky, Sheath-flow-aided inertial microfluidic cell sorter for high-throughput blood sorting, the 20th MicroTAS, 2016.

 

7  X. Wang and I. Papautsky, Inertial microfluidic vortex sorter for continuous isolation of rare cells from blood with 15,000x enhanced purity, the 19th MicroTAS, Gyeongju, Korea, Oct 2015.

 

6 P. Mukherjee, X. Wang and I. Papautsky, Single stream inertial focusing in triangular microchannel, the 19th MicroTAS, Gyeongju, Korea, Oct 2015.

 

5 X. Wang and I. Papautsky, Sheathless, high-throughput single-position focusing of microparticles in a straight microchannel, the 18th MicroTAS, San Antonio, TX, USA, Oct 2014.

 

4 X. Wang, C. Liedert, R. Liedert and I. Papautsky, A low-aspect-ratio, roll-to-roll hot embossed inertial microfluidic sorter, the 18th MicroTAS, San Antonio, TX, USA, Oct 2014.

 

3 X. Wang, J. Zhou and I. Papautsky, Inertial microfluidic band-pass separations, the 17th MicroTAS, Freiburg, Germany, Oct 2013.

 

2 X. Wang, J. Zhou and I. Papautsky, Inertial separation of particles with small size-variation using self-releasing micro-vortex, Transducers’13, Barcelona, Spain, June 2013.

 

1 X. Wang, J. Zhou and I. Papautsky, Continuous rare cell extraction using self-releasing vortex in an inertial microfluidic device, the 16th MicroTAS, Okinawa, Japan, Oct 2012.

Book Chapters

X. Wang, D. Irimia, Neutrophil Chemotaxis in One Droplet of Blood Using Microfluidic Assays. In: Gautreau A. (eds) Cell Migration. Methods in Molecular Biology, vol 1749. Humana Press, New York, NY, 2018 (Selected as the book cover)

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1 X. Wang, J. Zhou, and I. Papautsky, Characterization of microfluidic devices using microparticles, in D. Li, 2nd ed., Encyclopedia of Microfluidics and Nanofluidics, Springer-Verlag, Berlin, Germany, 2013.

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Patent applications

6 J. Heikenfeld, D. Rose, I. Papautsky, W. Kang, X. Wang, M. Ratterman, Sweat sensing device communication security and compliance. 9867539 (filed 01/16/2018)

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5 J. A. Hagen, J. Heikenfeld, I. Papautsky, L. Hou, R. Naik, N. Kelly-Loughnane, M. Stone, J. Busbee, X. Wang, Sweat simulation, collection and sensing systems. 61/620,069 (filed 4/25/2012).

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4 I. Papautsky, J. Zhou and X. Wang, Microfluidic Methods for Passive Separation of Cells and Particles. 61/594,732 (filed 2/3/2012).

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3 I. Papautsky and X. Wang, Single-position focusing and sorting in straight microfluidic channels, filed Oct 24, 2014.  U.S. Patent No. 62/068,372

 

2 I. Papautsky, J. Zhou and X. Wang, Microfluidic Methods for Passive Separation of Cells and Particles, filed February 3, 2012.  U.S. Patent No. 61/594,732.

 

1 J. A. HAGEN, J. Heikenfeld, I. Papautsky, L. Hou, R. Naik, N. Kelly-Loughnane, M. Stone, J. Busbee, X. Wang, Sweat simulation, collection and sensing systems, filed April 3, 2013.  U.S. Patent No. 61/620,069

Please visit my google scholar page for a complete list of publications 

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