Digital acoustofluidics enables contactless and programmable liquid handling
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Po-Hsun Huang | Peng Li | Zhenhua Tian | Chuyi Chen | Shujie Yang | Tony Jun Huang | Feng Guo | Zhangming Mao | Liqiang Ren | T. Huang | Zhenhua Tian | John Mai | Steven Peiran Zhang | James P. Lata | Chuyi Chen | Feng Guo | Liqiang Ren | Zhangming Mao | Po-Hsun Huang | P. Li | Shujie Yang | James Lata | John Mai | T. Huang | J. Mai | Peng Li
[1] R. Fair,et al. Electrowetting-based actuation of liquid droplets for microfluidic applications , 2000 .
[2] I. Mezić,et al. Chaotic Mixer for Microchannels , 2002, Science.
[3] David Quéré,et al. Liquid marbles , 2001, Nature.
[4] T. Huang,et al. Acoustic separation of circulating tumor cells , 2015, Proceedings of the National Academy of Sciences.
[5] S. Quake,et al. Microfluidic Large-Scale Integration , 2002, Science.
[6] J. Michael Ramsey,et al. The burgeoning power of the shrinking laboratory , 1999, Nature Biotechnology.
[7] C. Kim,et al. Electrowetting and electrowetting-on-dielectric for microscale liquid handling , 2002 .
[8] A. Lee,et al. Droplet microfluidics. , 2008, Lab on a chip.
[9] A. Wixforth,et al. Planar chip device for PCR and hybridization with surface acoustic wave pump. , 2005, Lab on a chip.
[10] Erika Check Hayden. The automated lab. , 2014, Nature.
[11] Subra Suresh,et al. Isolation of exosomes from whole blood by integrating acoustics and microfluidics , 2017, Proceedings of the National Academy of Sciences.
[12] B. Mattiasson,et al. Perfluorochemicals in biotechnology , 1987 .
[13] Dino Di Carlo,et al. Optofluidic fabrication for 3D-shaped particles , 2015, Nature Communications.
[14] Vivien Marx,et al. Pouring over liquid handling , 2013, Nature Methods.
[15] Daniel Ahmed,et al. Rotational manipulation of single cells and organisms using acoustic waves , 2016, Nature Communications.
[16] A. Flewitt,et al. SAW Streaming in ZnO Surface Acoustic Wave Micromixer and Micropump , 2007, 2007 IEEE Sensors.
[17] Erika Check Hayden,et al. The automated lab , 2014, Nature.
[18] Julien Reboud,et al. Shaping acoustic fields as a toolset for microfluidic manipulations in diagnostic technologies , 2012, Proceedings of the National Academy of Sciences.
[19] Miyuki Maezawa,et al. Applications of Acoustic Streaming to Microfluidic Devices , 2016 .
[20] E. H. Trinh,et al. Compact acoustic levitation device for studies in fluid dynamics and material science in the laboratory and microgravity , 1985 .
[21] Sriram Subramanian,et al. Holographic acoustic elements for manipulation of levitated objects , 2015, Nature Communications.
[22] R. Fair,et al. An integrated digital microfluidic lab-on-a-chip for clinical diagnostics on human physiological fluids. , 2004, Lab on a chip.
[23] Yong Qing Fu,et al. Surface acoustic wave induced streaming and pumping in 128° Y-cut LiNbO3 for microfluidic applications , 2009 .
[24] Jing Zhao,et al. Biomarkers for the diagnosis, prognosis, and evaluation of treatment efficacy for traumatic brain injury , 2011, Neurotherapeutics.
[25] Mohammad A. Qasaimeh,et al. Microfluidic quadrupole and floating concentration gradient , 2011, Nature communications.
[26] Manu Prakash,et al. Synchronous universal droplet logic and control , 2015, Nature Physics.
[27] Christoph Gauer,et al. Flat fluidics: a new route toward programmable biochips , 2003, SPIE MOEMS-MEMS.
[28] Dimos Poulikakos,et al. Acoustophoretic contactless transport and handling of matter in air , 2013, Proceedings of the National Academy of Sciences.
[29] Aaron R Wheeler,et al. Pluronic additives: a solution to sticky problems in digital microfluidics. , 2008, Langmuir : the ACS journal of surfaces and colloids.
[30] L. Mahadevan,et al. The “Cheerios effect” , 2005 .
[31] Dino Di Carlo,et al. Hydrodynamic stretching of single cells for large population mechanical phenotyping , 2012, Proceedings of the National Academy of Sciences.
[32] S. Cho,et al. Creating, transporting, cutting, and merging liquid droplets by electrowetting-based actuation for digital microfluidic circuits , 2003 .
[33] Aaron Wheeler,et al. Putting Electrowetting to Work , 2008, Science.
[34] B. Khuri-Yakub,et al. Nozzleless droplet formation with focused acoustic beams , 1989 .
[35] Xiang Zhang,et al. Generation of acoustic self-bending and bottle beams by phase engineering , 2014, Nature Communications.
[36] J. Friend,et al. Planar microfluidic drop splitting and merging. , 2015, Lab on a chip.
[37] K. Audus,et al. Digital microfluidics. , 2012, Annual review of analytical chemistry.
[38] Martyn Hill,et al. Acoustofluidics 17: theory and applications of surface acoustic wave devices for particle manipulation. , 2012, Lab on a chip.
[39] Peer Fischer,et al. Holograms for acoustics , 2016, Nature.
[40] Jiseok Lim,et al. Controlling molecular transport in minimal emulsions , 2016, Nature Communications.
[41] Allon M. Klein,et al. Droplet Barcoding for Single-Cell Transcriptomics Applied to Embryonic Stem Cells , 2015, Cell.
[42] S. Quake,et al. Monolithic microfabricated valves and pumps by multilayer soft lithography. , 2000, Science.
[43] Peng Li,et al. Surface acoustic wave microfluidics. , 2013, Lab on a chip.
[44] K. Takano,et al. Protein crystal growth with a two-liquid system and stirring solution. , 2004, Journal of synchrotron radiation.
[45] Martin Wiklund,et al. Acoustofluidics 14: Applications of acoustic streaming in microfluidic devices. , 2012, Lab on a chip.
[46] S. Quake,et al. Microfluidics: Fluid physics at the nanoliter scale , 2005 .
[47] Leslie Y Yeo,et al. Unique fingering instabilities and soliton-like wave propagation in thin acoustowetting films , 2012, Nature Communications.
[48] O. Velev,et al. On-chip manipulation of free droplets , 2003, Nature.
[49] Jun-ichi Yoshida,et al. Submillisecond organic synthesis: Outpacing Fries rearrangement through microfluidic rapid mixing , 2016, Science.
[50] N. Neff,et al. Reconstructing lineage hierarchies of the distal lung epithelium using single cell RNA-seq , 2014, Nature.
[51] S. Quake,et al. Dynamic pattern formation in a vesicle-generating microfluidic device. , 2001, Physical review letters.
[52] Subra Suresh,et al. Three-dimensional manipulation of single cells using surface acoustic waves , 2016, Proceedings of the National Academy of Sciences.