Using optical trap to measure the refractive index of a single animal virus in culture fluid with high precision

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Using optical trap to measure the refractive index of a single animal virus in culture fluid with high precision is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1364/BOE.7.001672
P932PMC publication ID4871073
P698PubMed publication ID27231613

P2093author name stringWei Cheng
Hanna Song
Yuanjie Pang
P2860cites workMicrofluidic sorting in an optical latticeQ28188475
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Microvesicles are a source of contaminating cellular proteins found in purified HIV-1 preparationsQ34423807
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The spatial variation of the refractive index in biological cellsQ36816173
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P433issue5
P921main subjectrefractive indexQ174102
P304page(s)1672-1689
P577publication date2016-04-04
P1433published inBiomedical Optics ExpressQ4915117
P1476titleUsing optical trap to measure the refractive index of a single animal virus in culture fluid with high precision
P478volume7

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cites work (P2860)
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Q36290494High sensitivity detection and sorting of infectious human immunodeficiency virus (HIV-1) particles by flow virometry
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Q40267527Recognition-mediated particle detection under microfluidic flow with waveguide-coupled 2D photonic crystals: towards integrated photonic virus detectors