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Items: 1 to 20 of 24

1.

Imaging of Pressure- and Electrokinetically Driven Flows through Open Capillaries.

Paul PH, Garguilo MG, Rakestraw DJ.

Anal Chem. 1998 Jul 1;70(13):2459-67. doi: 10.1021/ac9709662.

PMID:
21644766
2.

Diffusion coefficient measurements in microfluidic devices.

Culbertson CT, Jacobson SC, Michael Ramsey J.

Talanta. 2002 Feb 11;56(2):365-73.

PMID:
18968508
3.

Fast multi-tau real-time software correlator for dynamic light scattering.

Magatti D, Ferri F.

Appl Opt. 2001 Aug 20;40(24):4011-21.

PMID:
18360435
4.

Heating by absorption in the focus of an objective lens.

Schönle A, Hell SW.

Opt Lett. 1998 Mar 1;23(5):325-7.

PMID:
18084500
5.
6.

Two-focus fluorescence correlation spectroscopy: a new tool for accurate and absolute diffusion measurements.

Dertinger T, Pacheco V, von der Hocht I, Hartmann R, Gregor I, Enderlein J.

Chemphyschem. 2007 Feb 19;8(3):433-43.

PMID:
17269116
7.

Studying slow membrane dynamics with continuous wave scanning fluorescence correlation spectroscopy.

Ries J, Schwille P.

Biophys J. 2006 Sep 1;91(5):1915-24. Epub 2006 Jun 16.

8.

Spatial fluorescence cross-correlation spectroscopy.

Jaffiol R, Blancquaert Y, Delon A, Derouard J.

Appl Opt. 2006 Feb 20;45(6):1225-35.

PMID:
16523786
9.

Performance of fluorescence correlation spectroscopy for measuring diffusion and concentration.

Enderlein J, Gregor I, Patra D, Dertinger T, Kaupp UB.

Chemphyschem. 2005 Nov 11;6(11):2324-36.

PMID:
16273566
10.

Observation volumes and {gamma}-factors in two-photon fluorescence fluctuation spectroscopy.

Nagy A, Wu J, Berland KM.

Biophys J. 2005 Sep;89(3):2077-90. Epub 2005 Jul 1.

11.

Measuring fast dynamics in solutions and cells with a laser scanning microscope.

Digman MA, Brown CM, Sengupta P, Wiseman PW, Horwitz AR, Gratton E.

Biophys J. 2005 Aug;89(2):1317-27. Epub 2005 May 20.

12.

Position-sensitive scanning fluorescence correlation spectroscopy.

Skinner JP, Chen Y, Müller JD.

Biophys J. 2005 Aug;89(2):1288-301. Epub 2005 May 13.

13.

Molecular photobleaching kinetics of Rhodamine 6G by one- and two-photon induced confocal fluorescence microscopy.

Eggeling C, Volkmer A, Seidel CA.

Chemphyschem. 2005 May;6(5):791-804. Review.

PMID:
15884061
14.

Partitioning of NaPi cotransporter in cholesterol-, sphingomyelin-, and glycosphingolipid-enriched membrane domains modulates NaPi protein diffusion, clustering, and activity.

Inoue M, Digman MA, Cheng M, Breusegem SY, Halaihel N, Sorribas V, Mantulin WW, Gratton E, Barry NP, Levi M.

J Biol Chem. 2004 Nov 19;279(47):49160-71. Epub 2004 Sep 7.

15.

Spatial-temporal studies of membrane dynamics: scanning fluorescence correlation spectroscopy (SFCS).

Ruan Q, Cheng MA, Levi M, Gratton E, Mantulin WW.

Biophys J. 2004 Aug;87(2):1260-7.

16.

Art and artefacts of fluorescence correlation spectroscopy.

Enderlein J, Gregor I, Patra D, Fitter J.

Curr Pharm Biotechnol. 2004 Apr;5(2):155-61.

PMID:
15078149
17.

Photodynamics of red fluorescent proteins studied by fluorescence correlation spectroscopy.

Schenk A, Ivanchenko S, Röcker C, Wiedenmann J, Nienhaus GU.

Biophys J. 2004 Jan;86(1 Pt 1):384-94.

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