Biophotonics, Part A: 360 (Methods in Enzymology)


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Engineering

Jovin Dynamic fluorescence anisotropy imaging microscopy in the frequency domain rFLIM. Cellular response to laser radiation in fluorescence microscopes. Tirlapur Cellular and subcellular perturbations during multiphoton microscopy. Gill, G. Palmer, and N. Ramanujam Steady-state fluorescence imaging of Neoplasia. Herman, B. Maliwal, H. Lin, and J. Frequency-domain fluorescence microscopy with the LED as a light source. Brelje, M.

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Wessendorf, and R. Sorenson Multicolor laser scanning confocal immunofluorescence microscopy: Practical applications and limitations. Matsumoto Ed. Gratton and M. Laser sources for confocal microscopy.

Table of Contents

Pawley Ed. Wolleschensky, M. Dickinson, and S. Fraser Group-velocity dispersion and fiber delivery in multiphoton laser scanning microscopy. Limkeman A continuously variable frequency cross-correlation phase fluorometer with picosecond resolution. Jameson, C. Croney, and P.

Pitfalls and Their Remedies in Time-Resolved Fluorescence Spectroscopy and Microscopy

Moens Fluorescence: Basic concepts, practical aspects, and some anecdotes. Bebelaar Compensator for the time dispersion in a monochromator. Long Lakowicz, G. Laczko, and I. Gryczynski Berndt and J. Laczko, I. Gryczynski, Z. Gryczynski, W.

Annales de Physique

Wiczk, H. Malak, and J. A GHz frequency-domain fluorometer. A superheterodyning microwave frequency-domain fluorometer. Barbieri, F. De Piccoli, M.

What determines the uncertainty of phase and modulation measurements in frequency domain fluorometry. Franceschini, S. Fantini, and E. LEDs in frequency-domain spectroscopy of tissues. De Piccoli, and E. Synthesizers phase noise in frequency-domain fluorometry. Piston, G. Marriott, T.

Radivoyevich, R. Clegg, T. Jovin, and E. Wide-band acousto-optic light modulator for frequency domain fluorometry and phosphorimetry. Gratton, B. Feddersen, and M.

Parallel acquisition of fluorescence decay using array detectors. Canonica, J. Forrer, and U.

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Wild Improved timing resolution using small side-on photomultipliers in single photon counting. Gordon and P. Selvin A microcontroller-based failsafe for single photon counting modules. Lemasters Ed. French University of Illinois at Urbana—Champaign. Becker and A. Bergmann Berndt Application of gain-modulated avalanche photodiodes in phase-sensitive fluorescence spectroscopy. Optics Commun. Pouget, J. Mugnier, and B.

Correction of timing errors in multifrequency phase modulation fluorometry.

E: Sci. Gauduchon and Ph. Wahl Pulse fluorimetry of tyrosyl peptides. Wijnaendts van Resandt, R.

P-14 Module 23 Purification of enzymes I

Vogel, and S. Provencher Double beam fluorescence lifetime spectrometer with subpicosecond resolution: Application to aqueous tryptophan. Zuker, A. Szabo, L. Bramall, D. Krajcarski, and B. Frey PBG-D peak peptide phosphate phosphorylated protein proton quench radical Raman rapid rate constant reaction intermediate redox reduction residue resonance S.

Withers sample Schiff base shown in Fig solution species spectra spectroscopy spectrum stability steady-state stopped-flow structure studies substrate subunit synthase EC synthetase syringe technique titration transfer turnover UMP-NeuAc urate urate oxidase VOLUME wild-type. Regulators and Effectors Cumulative Subject Index Volumes Mass Spectrometry Edited by Fahmy, E. Colombelli, A. Besser, H. Reynaud, P. Girard, E. Caussinus, U. Haselmann, J. Small, U. Schwarz, E. Stelzer Mechanosensing in actin stress fibers revealed by a close correlation between force and protein localization J.

Cell Sci. Stelzer, D. Holzer, F. Buss, G. Griffiths, A. Rohrbach Filopodia act as phagocytic tentacles and pull with discrete steps and a load-dependent velocity PNAS , 28 , , Supplementary Movies: Movie1. Anes, P. Peyron, L. Staali, L. Jordao, M. Gutierrez, H. Kress, M.

Biophotonics, Part A: 360 (Methods in Enzymology) Biophotonics, Part A: 360 (Methods in Enzymology)
Biophotonics, Part A: 360 (Methods in Enzymology) Biophotonics, Part A: 360 (Methods in Enzymology)
Biophotonics, Part A: 360 (Methods in Enzymology) Biophotonics, Part A: 360 (Methods in Enzymology)
Biophotonics, Part A: 360 (Methods in Enzymology) Biophotonics, Part A: 360 (Methods in Enzymology)
Biophotonics, Part A: 360 (Methods in Enzymology) Biophotonics, Part A: 360 (Methods in Enzymology)
Biophotonics, Part A: 360 (Methods in Enzymology) Biophotonics, Part A: 360 (Methods in Enzymology)
Biophotonics, Part A: 360 (Methods in Enzymology) Biophotonics, Part A: 360 (Methods in Enzymology)

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