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International Union of Crystallography Monographs on Crystallography

Biological Small Angle Scattering

Theory and Practice

Grant, Thomas D. (Staff Scientist, Staff Scientist, BioXFEL Science and Technology Center, School of Medicine and Biomedical Sciences, University at Buffalo, SUNY) & Lattman, Eaton E. (Professor of Structural Biology, Professor of Structural Biology, School of Medicine and Biomedical Sciences, University at Buffalo, SUNY) & Snell, Edward H. (President and Chief Executive Officer, President and Chief Executive Officer, Hauptman-Woodward Medical Research Institute)

Biological Small Angle Scattering

International Union of Crystallography Monographs on Crystallography

Biological Small Angle Scattering

Theory and Practice

International Union of Crystallography Monographs on Crystallography: Biological Small Angle Scattering

 

Small angle solution scattering is now often applied to biological problems. When applied in appropriate circumstances with carefully structured questions, the technique can provide unique information not available from other techniques.


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Beschrijving International Union of Crystallography Monographs on Crystallography: Biological Small Angle Scattering

Small angle solution scattering (SAS) is increasingly being applied to biological problems. It is a complementary technique that, when applied in appropriate circumstances with carefully structured questions, can provide unique information not available from other techniques. While small angle solution scattering has been around for some time, a confluence of recent developments has dramatically enhanced its power. Intense third generation X-ray sources, low noise detectors, development of new algorithms and the computational power to take advantage of these have all matured, and use of free-electron x-ray laser sources is on the horizon. Whole new classes of experiments and analyses have been created as a result. These include the generation of molecular envelopes, the ability to do time-resolved studies, and the ability to account for structural changes using modelling based on the SAS data. The technical improvements have also reduced the amount of time and material needed to carry out an experiment. Beamtime at synchrotron sources is in demand, workshops on the subject are popular and researchers adopting the technique as part of their repertoire are growing. With these in mind, this book was written to guide structural biologists who may wish to adopt the technique, understand its strengths and weaknesses or just have a general interest in its potential.


ISBN
9780199670871
Pagina's
284
Verschenen
Serie
International Union of Crystallography Monographs on Crystallography
NUR
931
Druk
1
Uitvoering
Hardback
Taal
Engels
Uitgever
OUP Oxford