Image-Guided Precision Manipulation of Cells and Nanoparticles in Microfluidics

dc.contributor.advisorShapiro, Benjaminen_US
dc.contributor.authorCummins, Zacharyen_US
dc.contributor.departmentBioengineeringen_US
dc.contributor.publisherDigital Repository at the University of Marylanden_US
dc.contributor.publisherUniversity of Maryland (College Park, Md.)en_US
dc.date.accessioned2016-06-22T05:48:08Z
dc.date.available2016-06-22T05:48:08Z
dc.date.issued2016en_US
dc.description.abstractManipulation of single cells and particles is important to biology and nanotechnology. Our electrokinetic (EK) tweezers manipulate objects in simple microfluidic devices using gentle fluid and electric forces under vision-based feedback control. In this dissertation, I detail a user-friendly implementation of EK tweezers that allows users to select, position, and assemble cells and nanoparticles. This EK system was used to measure attachment forces between living breast cancer cells, trap single quantum dots with 45 nm accuracy, build nanophotonic circuits, and scan optical properties of nanowires. With a novel multi-layer microfluidic device, EK was also used to guide single microspheres along complex 3D trajectories. The schemes, software, and methods developed here can be used in many settings to precisely manipulate most visible objects, assemble objects into useful structures, and improve the function of lab-on-a-chip microfluidic systems.en_US
dc.identifierhttps://doi.org/10.13016/M2RR36
dc.identifier.urihttp://hdl.handle.net/1903/18216
dc.language.isoenen_US
dc.subject.pqcontrolledBiomedical engineeringen_US
dc.subject.pqcontrolledNanotechnologyen_US
dc.subject.pquncontrolledcirculating tumor cellsen_US
dc.subject.pquncontrolledCTCsen_US
dc.subject.pquncontrolledlab-on-a-chipen_US
dc.subject.pquncontrolledmicrofluidicsen_US
dc.subject.pquncontrollednanowiresen_US
dc.subject.pquncontrolledquantum dotsen_US
dc.titleImage-Guided Precision Manipulation of Cells and Nanoparticles in Microfluidicsen_US
dc.typeDissertationen_US

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