Vibrational Spectroscopy in Protein Research : From Purified Proteins to Aggregates and Assemblies. Dieser Artikel ist nicht verfügbar.
Sprache: Englisch
Verlag: Elsevier Science Mai 2020, 2020
- Softcover
- Neu

Anbieter: AHA-BUCH GmbH, Einbeck, DeutschlandAHA-BUCH GmbH
Verkäufer:in bei ZVAB seit 14. August 2006
Zustand: Neu
EUR 356,96
Artikelbeschreibung des Verkäufers
Neuware - Vibrational Spectroscopy in Protein Research offers a thorough discussion of vibrational spectroscopy in protein research, providing researchers with clear, practical guidance on methods employed, areas of application, and modes of analysis. With chapter contributions from international leaders in the field, the book addresses basic principles of vibrational spectroscopy in protein research, instrumentation and technologies available, sampling methods, quantitative analysis, origin of group frequencies, and qualitative interpretation. In addition to discussing vibrational spectroscopy for the analysis of purified proteins, chapter authors also examine its use in studying complex protein systems, including protein aggregates, fibrous proteins, membrane proteins and protein assemblies. Emphasis throughout the book is placed on applications in human tissue, cell development, and disease analysis, with chapters dedicated to studies of molecular changes that occur during disease progression, as well as identifying changes in tissues and cells in disease studies.…
Bestandsnummer des Verkäufers 9780128186107
- Titel
- Vibrational Spectroscopy in Protein Research : From Purified Proteins to Aggregates and Assemblies
- Autor
- Igor K Lednev
- Verlag
- Elsevier Science Mai 2020
- Erscheinungsjahr
- 2020
- Zustand
- Neu
- Einband
- Taschenbuch
- Sprache
- Englisch
- ISBN-10
- 0128186100
- ISBN-13
- 9780128186107
- Artikelgewicht
- 1.250 Gramm
- Abmessungen
- 235x191x38 mm
Vibrational Spectroscopy in Protein Research offers a thorough discussion of vibrational spectroscopy in protein research, providing researchers with clear, practical guidance on methods employed, areas of application, and modes of analysis. With chapter contributions from international leaders in the field, the book addresses basic principles of vibrational spectroscopy in protein research, instrumentation and technologies available, sampling methods, quantitative analysis, origin of group frequencies, and qualitative interpretation. In addition to discussing vibrational spectroscopy for the analysis of purified proteins, chapter authors also examine its use in studying complex protein systems, including protein aggregates, fibrous proteins, membrane proteins and protein assemblies.
Emphasis throughout the book is placed on applications in human tissue, cell development, and disease analysis, with chapters dedicated to studies of molecular changes that occur during disease progression, as well as identifying changes in tissues and cells in disease studies.
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Über die Autorin bzw. den Autor
Dr. Malgorzata Baranska leads the Raman Imaging Group at The Jagiellonian University, Kraków, Poland. In her research, Dr. Baranska focuses on analyzing bioactive compounds using spectroscopic methods, particularly modern Raman techniques. The main direction of her research is related to development treatments for life style diseases, including new drugs of endothelium bioactivity.
Dr. Igor Lednev received his PhD degree from The Moscow Institute of Physics and Technology, Russian Federation before joining the University of Albany as faculty. As an academic visitor, he worked in several leading laboratories around the world including the United Kingdom, Japan, Canada, and Germany. Dr. Lednev’s current research is focused on the development and application of novel laser spectroscopy for biomedical and forensic applications.
Dr. Bayden R. Wood is an Australian Research Council Future Fellow working at the Centre for Biospectroscopy located in the School of Chemistry, Monash University, Malborne, Australia. His research is concerned primarily with vibrational spectroscopy of tissues, cells, and biomolecules, and monitoring home aggregation in single living red blood cells associated with erythrocyte disorders, including malaria and sickle cell disease, using resonance Raman spectroscopy.
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