0
Your cart

Your cart is empty

Browse All Departments
  • All Departments
Price
  • R2,500 - R5,000 (2)
  • -
Status
Brand

Showing 1 - 2 of 2 matches in All Departments

Radiation Damage in Biomolecular Systems (Hardcover, 2012): Gustavo Garcia Gomez-Tejedor, Martina Christina Fuss Radiation Damage in Biomolecular Systems (Hardcover, 2012)
Gustavo Garcia Gomez-Tejedor, Martina Christina Fuss
R4,324 Discovery Miles 43 240 Ships in 10 - 15 working days

Since the discovery of X-rays and radioactivity, ionizing radiations have been widely applied in medicine both for diagnostic and therapeutic purposes. The risks associated with radiation exposure and handling led to the parallel development of the field of radiation protection.
Pioneering experiments done by Sanche and co-workers in 2000 showed that low-energy secondary electrons, which are abundantly generated along radiation tracks, are primarily responsible for radiation damage through successive interactions with the molecular constituents of the medium. Apart from ionizing processes, which are usually related to radiation damage, below the ionization level low-energy electrons can induce molecular fragmentation via dissociative processes such as internal excitation and electron attachment. This prompted collaborative projects between different research groups from European countries together with other specialists from Canada, the USA and Australia.
This booksummarizes the advances achieved by these research groups after more than ten years of studies on radiation damage in biomolecular systems.

An extensive Part I deals with recent experimental and theoretical findings on radiation induced damage at the molecular level. It includes many contributions on electron and positroncollisions with biologically relevant molecules. X-ray and ion interactions are also covered. Part II addresses different approaches to radiation damage modelling. In Part III biomedical aspects of radiation effects are treated on different scales. After the physics-oriented focus of the previous parts, there is a gradual transition to biology and medicine with the increasing size of the object studied. Finally, Part IV is dedicated to current trends and novel techniques in radiation reserach and the applications hence arising. It includes new developments in radiotherapy and related cancer therapies, as well as technical optimizations of accelerators and totally new equipment designs, giving a glimpse of the near future of radiation-based medical treatments."

Radiation Damage in Biomolecular Systems (Paperback, 2012 ed.): Gustavo Garcia Gomez-Tejedor, Martina Christina Fuss Radiation Damage in Biomolecular Systems (Paperback, 2012 ed.)
Gustavo Garcia Gomez-Tejedor, Martina Christina Fuss
R4,295 Discovery Miles 42 950 Ships in 10 - 15 working days

Since the discovery of X-rays and radioactivity, ionizing radiations have been widely applied in medicine both for diagnostic and therapeutic purposes. The risks associated with radiation exposure and handling led to the parallel development of the field of radiation protection.
Pioneering experiments done by Sanche and co-workers in 2000 showed that low-energy secondary electrons, which are abundantly generated along radiation tracks, are primarily responsible for radiation damage through successive interactions with the molecular constituents of the medium. Apart from ionizing processes, which are usually related to radiation damage, below the ionization level low-energy electrons can induce molecular fragmentation via dissociative processes such as internal excitation and electron attachment. This prompted collaborative projects between different research groups from European countries together with other specialists from Canada, the USA and Australia.
This booksummarizes the advances achieved by these research groups after more than ten years of studies on radiation damage in biomolecular systems.

An extensive Part I deals with recent experimental and theoretical findings on radiation induced damage at the molecular level. It includes many contributions on electron and positroncollisions with biologically relevant molecules. X-ray and ion interactions are also covered. Part II addresses different approaches to radiation damage modelling. In Part III biomedical aspects of radiation effects are treated on different scales. After the physics-oriented focus of the previous parts, there is a gradual transition to biology and medicine with the increasing size of the object studied. Finally, Part IV is dedicated to current trends and novel techniques in radiation reserach and the applications hence arising. It includes new developments in radiotherapy and related cancer therapies, as well as technical optimizations of accelerators and totally new equipment designs, giving a glimpse of the near future of radiation-based medical treatments."

Free Delivery
Pinterest Twitter Facebook Google+
You may like...
Carriwell Seamless Drop Cup Nursing Bra…
R560 R448 Discovery Miles 4 480
St Cyprians Grade 7 School Pack - 2025
R895 Discovery Miles 8 950
Professor Snape Wizard Wand - In…
 (8)
R801 Discovery Miles 8 010
Not available
Baby Dove Soap Bar Rich Moisture 75g
R20 Discovery Miles 200
Harry Potter Wizard Wand - In…
 (3)
R800 Discovery Miles 8 000
Bad Boy Men's Smoke Watch & Sunglass Set…
 (3)
R489 Discovery Miles 4 890
Tommee Tippee - Closer to Nature Soother…
R170 R158 Discovery Miles 1 580
The Papery A5 WOW 2025 Diary - Sunflower
R349 R300 Discovery Miles 3 000
Mellerware Swiss - Plastic Floor Fan…
R371 Discovery Miles 3 710

 

Partners