Optical trapping of individual human immunodeficiency viruses in culture fluid reveals heterogeneity with single-molecule resolution.

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Optical trapping of individual human immunodeficiency viruses in culture fluid reveals heterogeneity with single-molecule resolution. is …
instance of (P31):
scholarly articleQ13442814

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P6179Dimensions Publication ID1052488169
P356DOI10.1038/NNANO.2014.140
P932PMC publication ID4125448
P698PubMed publication ID25038779
P5875ResearchGate publication ID264054744

P50authorXimiao HouQ83397821
P2093author name stringWei Cheng
Hanna Song
Jin H Kim
Yuanjie Pang
P2860cites workStep detection in single-molecule real time trajectories embedded in correlated noiseQ34637759
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Single-base pair unwinding and asynchronous RNA release by the hepatitis C virus NS3 helicaseQ41820638
Protein friction limits diffusive and directed movements of kinesin motors on microtubulesQ43292289
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Calibration of optical tweezers with positional detection in the back focal planeQ57252571
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Optical trappingQ24669585
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Single-molecule protein unfolding and translocation by an ATP-fueled proteolytic machine.Q30473723
Microscopes for fluorimeters: the era of single molecule measurementsQ30491005
Controlled photonic manipulation of proteins and other nanomaterialsQ30525376
Length and dipole moment of TMV by laser signal‐averaging transient electric birefringenceQ30873839
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Single molecule measurements and molecular motorsQ33323668
Efficient optical trapping and visualization of silver nanoparticlesQ33326874
Alignment, rotation, and spinning of single plasmonic nanoparticles and nanowires using polarization dependent optical forcesQ33520506
Manipulation of single molecules in biologyQ33536472
Use of tapered amplifier diode laser for biological-friendly high-resolution optical trapping.Q33679856
Isolation of human immunodeficiency virus type 1 cores: retention of Vpr in the absence of p6(gag).Q33807166
Human immunodeficiency virus type 1 Nef functions at the level of virus entry by enhancing cytoplasmic delivery of virionsQ33866230
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Single-molecule detection using continuous wave excitation of two-photon fluorescence.Q33994531
Expanding the optical trapping range of lipid vesicles to the nanoscale.Q34072156
Optical trapping and manipulation of viruses and bacteriaQ34183243
The complex folding network of single calmodulin moleculesQ34228218
Force as a useful variable in reactions: unfolding RNAQ34280037
Phenotypic properties of transmitted founder HIV-1Q34336058
Envelope glycoprotein incorporation, not shedding of surface envelope glycoprotein (gp120/SU), Is the primary determinant of SU content of purified human immunodeficiency virus type 1 and simian immunodeficiency virusQ34364045
Super-resolution microscopy reveals specific recruitment of HIV-1 envelope proteins to viral assembly sites dependent on the envelope C-terminal tail.Q34611178
P433issue8
P407language of work or nameEnglishQ1860
P921main subjectheterogeneityQ928498
P304page(s)624-630
P577publication date2014-07-20
P1433published inNature NanotechnologyQ920399
P1476titleOptical trapping of individual human immunodeficiency viruses in culture fluid reveals heterogeneity with single-molecule resolution
P478volume9

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