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Molecular biology / Laboratory techniques / Spectroscopy / Fluorescence / Biophysics / Förster resonance energy transfer / Fluorescence correlation spectroscopy / Macromolecular crowding / Hybridization probe / Chemistry / Biology / Science


Hybridization kinetics is different inside cells Ingmar Schoen, Hubert Krammer, and Dieter Braun1 Systems Biophysics, Center for Nanoscience, Ludwig Maximilians Universita¨t Mu¨nchen, Amalienstraße 54, 80799 Munich, G
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Document Date: 2012-08-18 20:15:43


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Munich / London / New York / /

Company

Eq / Nikon / SSB / Philips / Visitron Systems / /

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nucleoprotein network / homology search / chemical reactions / nonradiative fluorescence resonance energy transfer / genetic networks / chemical mechanisms / stroboscopic fluorescence imaging / biological networks / in vivo imaging / in vivo test systems / fluorescence resonance energy transfer / presented imaging modality / free buffer solution / oil-immersion objective / lock-in detection imaging microscopy / power-law dependence / direct imaging / time-lapse imaging / chemical and physiological perspective / temperature oscillation protocol / aqueous solutions / imaging / kinetic imaging contrast / homologous search / /

NaturalFeature

FRET channel / /

Organization

Center for Nanoscience / /

Person

Ludwig Maximilians Universita / Philip Altpeter / Hermann Gaub / William A. Eaton / Philipp Baaske / Philipp Tinnefeld / Ann Fornof / Ulrich Gerland / Dean Astumian / Markku Kulomaa / Hubert Krammer / Hilmar Strickfaden / Franz Weinert / /

Position

rhodamine green Author / mediator / St John PM / Fisher / representative / messenger / /

ProvinceOrState

New York / /

Technology

Genomics / Proteomics / laser / DNA delivery / Hybridization / spectroscopy / DNA binding / temperature oscillation protocol / Recombination / DNA Hybridization / /

URL

www.pnas.org/cgi/content/full / www.pnas.org兾cgi兾doi兾10.1073兾pnas.0901313106 / /

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