Take any combination of the following features: supramolecular structures with a specific fluorescent probe localized as you would like; nanoscale spatial reso- tion; tailor-made molecular and/or solid-state fluorescing nanostructures; us- friendly and/or high- throughput fluorescence techniques; the ability to do wh- ever you wish with just one single (supra)molecule; utilization of non-linear optical processes; and,last but not least,physical understanding of the processes resu- ing in a (biological) functionality at the single molecule level. What you will then have is some recent progress in physics,chemistry,and the life sciences leading to the development of a new tool for research and application. This was amply demonstrated at the 8th Conference on Methods and Applications of Fluorescence: Probes,Imaging,and Spectroscopy held in Prague,the Czech Republic on August 24th-28th, 2003. This formed a crossroad of ideas from a variety of natural science and technical research fields and biomedical applications in particular. This volume - the third book in the Springer-Verlag Series on Fluorescence - reviews some of the most characteristic topics of the multidisciplinary area of fluorescence applications in life sciences either presendted directly at th 8th MAF Conference or considered to be a cruical development in the field. In the initial contribution in Part 1 - Basics and Advanced Approaches,the - itors explain the basics of fluorescence and illustrate the relationship between some modern fluorescence techniques and classical approaches. The second contrigution by B.
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Part 1: Fluorescence Spectroscopy: Basics and Advanced Approaches,- 1. M. Hof, V. Fidler, R. Hutterer: Basics of Fluorescence Spectroscopy in Bio-sciences .- 2. B. Valeur: Pulse, Phase Fluorimetries: An Objective Comparison .- 3. S. Kalinin, M. Isaksson, L.B.-Å. Johansson: Non-exponential Fluorescence of Electronically Coupled Donors Contain Distance Information .- 4. O.J. Rolinski, D.J.S. Birch: Fluorescence Nanatomography: Recent Progress, Constraints and Opportunities .- 5. J. Sýkora, R. Hutterer, M. Hof: Solvent Relaxation as a Tool for Probing Micro-polarity and –fluidity .- 6. N.L. Thompson, J.K. Pero: Total Internal Reflection Fluorescence Microscopy: Applications in Biophysics .- 7. J. Enderlein: Single Molecule Spectroscopy: Basics and Applications.- Part 2: Application of Fluorescence Spectroscopy in Biological Membranes.- 8. G. Duportail: Rafts Microdomains in Model Membranes as Revealed by Fluorescence Quenching .- 9. L.A. Bagatolli: The Lateral Structure of Lipid Membranes as Seen by Fluorescence Microscopy .- Part 3: Application of Fluorescence Spectroscopy in Protein Studies.- 10. A. Saxena, J.B. Udgaonkar, G. Krishnamoorthy: Protein Dynamics and Protein Folding Dynamics Revealed by Time-Resolved Fluorescence .- 11. J. Azoulay, S. Bernacchi, H. Beltz, J.-P. Clamme, E. Piemont, E. Schaub, D. Ficheux, B. Roques, J.-L. Darlix, Y. Mély: Time-resolved Fluorescence and Two-photon FCS Investigation of the Interaction of HIV-1 Nucleocapsid Protein with Hairpin Loop Oligonucleotides.- Part 4: Application of Fluorescence Spectroscopy to DNA and Drug Delivery.- 12. N. Adjimatera, A.P. Neal, I.S. Blagbrough: Fluorescence Techniques in Non-viral Gene Therapy .- 13. K. Bryl, M. Langner: Fluorescence Applications in Targeted Drug Delivery.- Part 5: Fluorescence Spectroscopy in Cells: FCS and Quantum Dots.- 14. R. Brock: Fluorescence Correlation Spectroscopy in Cell Biology .- 15. M.R. Warnement, S.J. Rosenthal: Fluorescent Quantum Dots: Properties andApplications .- 16. O. Minet, C. Dressler, J. Beuthan: Heat Stress of Cancer Cells: Fluorescence Imaging of Structural Changes with Quantum DotsTM 605 and AlexaTM 488
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Buch. Condizione: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -Take any combination of the following features: supramolecular structures with a specific fluorescent probe localized as you would like; nanoscale spatial reso- tion; tailor-made molecular and/or solid-state fluorescing nanostructures; us- friendly and/or high- throughput fluorescence techniques; the ability to do wh- ever you wish with just one single (supra)molecule; utilization of non-linear optical processes; and,last but not least,physical understanding of the processes resu- ing in a (biological) functionality at the single molecule level. What you will then have is some recent progress in physics,chemistry,and the life sciences leading to the development of a new tool for research and application. This was amply demonstrated at the 8th Conference on Methods and Applications of Fluorescence: Probes,Imaging,and Spectroscopy held in Prague,the Czech Republic on August 24th 28th, 2003. This formed a crossroad of ideas from a variety of natural science and technical research fields and biomedical applications in particular. This volume the third book in the Springer-Verlag Series on Fluorescence reviews some of the most characteristic topics of the multidisciplinary area of fluorescence applications in life sciences either presendted directly at th 8th MAF Conference or considered to be a cruical development in the field. In the initial contribution in Part 1 Basics and Advanced Approaches,the - itors explain the basics of fluorescence and illustrate the relationship between some modern fluorescence techniques and classical approaches. The second contrigution by B. 328 pp. Englisch. Codice articolo 9783540223382
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