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Results: 1-22 |

Table of contents of journal:

Results: 22

Authors: Elson, E
Citation: E. Elson, Fluorescence correlation spectroscopy - Theory and applications - Introduction, SPRING S CH, 65, 2001, pp. 1-6

Authors: Visser, AJWG van den Berg, PAW Hink, MA Petushkov, VN
Citation: Ajwg. Visser et al., Fluorescence correlation spectroscopy of flavins and flavoproteins, SPRING S CH, 65, 2001, pp. 9-24

Authors: Foldes-Papp, Z Kinjo, M
Citation: Z. Foldes-papp et M. Kinjo, Fluorescence correlation spectroscopy in nucleic acid analysis, SPRING S CH, 65, 2001, pp. 25-64

Authors: Qian, H Elson, EL
Citation: H. Qian et El. Elson, Strain-dependent fluorescence correlation spectroscopy: Proposing a new measurement for conformational fluctuations of biological macromolecules, SPRING S CH, 65, 2001, pp. 65-83

Authors: Matayoshi, E Swift, K
Citation: E. Matayoshi et K. Swift, Applications of FCS to protein-ligand interactions: Comparison with fluorescence polarization, SPRING S CH, 65, 2001, pp. 84-98

Authors: Pramanik, A Rigler, R
Citation: A. Pramanik et R. Rigler, FCS-analysis of ligand-receptor interactions in living cells, SPRING S CH, 65, 2001, pp. 101-131

Authors: Brock, R Jovin, TM
Citation: R. Brock et Tm. Jovin, Fluorescence correlation microscopy (FCM): Fluorescence correlation spectroscopy (FCS) in cell biology, SPRING S CH, 65, 2001, pp. 132-161

Authors: Petersen, NO
Citation: No. Petersen, FCS and spatial correlations on biological surfaces, SPRING S CH, 65, 2001, pp. 162-184

Authors: Koltermann, A Kettling, U Stephan, J Winkler, T Eigen, M
Citation: A. Koltermann et al., Dual-color confocal fluorescence spectroscopy and its application in biotechnology, SPRING S CH, 65, 2001, pp. 187-203

Authors: Meyer-Almes, FJ
Citation: Fj. Meyer-almes, Nanoparticle immunoassays: A new method for use in molecular diagnostics and high throughput pharmaceutical screening based on fluorescence correlation spectroscopy, SPRING S CH, 65, 2001, pp. 204-224

Authors: Riesner, D
Citation: D. Riesner, Protein aggregation associated with Alzheimer and prion diseases, SPRING S CH, 65, 2001, pp. 225-247

Authors: Starchev, K Wilkinson, KJ Buffle, J
Citation: K. Starchev et al., Application of FCS to the study of environmental systems, SPRING S CH, 65, 2001, pp. 251-275

Authors: Widengren, J
Citation: J. Widengren, Photophysical aspects of FCS measurements, SPRING S CH, 65, 2001, pp. 276-301

Authors: Webb, WW
Citation: Ww. Webb, Fluorescence correlation spectroscopy: Genesis, evolution, maturation and prognosis, SPRING S CH, 65, 2001, pp. 305-330

Authors: Jankowski, T Janka, R
Citation: T. Jankowski et R. Janka, ConfoCor 2 - The second generation of fluorescence correlation microscopes, SPRING S CH, 65, 2001, pp. 331-345

Authors: Mets, U
Citation: U. Mets, Antibunching and rotational diffusion in FCS, SPRING S CH, 65, 2001, pp. 346-359

Authors: Schwille, P
Citation: P. Schwille, Cross-correlation analysis in FCS, SPRING S CH, 65, 2001, pp. 360-378

Authors: Brinkmeier, M
Citation: M. Brinkmeier, Cross-correlated flow analysis in microstructures, SPRING S CH, 65, 2001, pp. 379-395

Authors: Kask, P Palo, K
Citation: P. Kask et K. Palo, Introduction to the theory of fluorescence intensity distribution analysis, SPRING S CH, 65, 2001, pp. 396-409

Authors: Muller, JD Chen, Y Gratton, E
Citation: Jd. Muller et al., Photon counting histogram statistics, SPRING S CH, 65, 2001, pp. 410-437

Authors: Thompson, NL Mitchell, JL
Citation: Nl. Thompson et Jl. Mitchell, High order autocorrelation in fluorescence correlation spectroscopy, SPRING S CH, 65, 2001, pp. 438-458

Authors: Rigler, R Wennmalm, S Edman, L
Citation: R. Rigler et al., FCS in single molecule analysis, SPRING S CH, 65, 2001, pp. 459-476
Risultati: 1-22 |