DEFINED BIOLOGICAL MODELS OF HIGH-LET RADIATION LESIONS
Author:
Affiliation:
1. Institute of Medical Radiation Biology, University of Duisburg-Essen Medical School, Essen, Germany
2. University of Texas Southwestern Medical Center, UT, Department of Radiation Oncology, Dallas, Texas
Funder
Bundesministerium für Bildung und Forschung
Publisher
Oxford University Press (OUP)
Subject
Public Health, Environmental and Occupational Health,Radiology Nuclear Medicine and imaging,General Medicine,Radiation,Radiological and Ultrasound Technology
Link
http://academic.oup.com/rpd/article-pdf/183/1-2/60/28670100/ncy248.pdf
Reference26 articles.
1. DNA double-strand-break complexity levels and their possible contributions to the probability for error-prone processing and repair pathway choice;Schipler;Nucl. Acids Res.,2013
2. DNA double-strand-break repair in higher eukaryotes and its role in genomic instability and cancer: cell cycle and proliferation-dependent regulation;Mladenov;Semin. Cancer Biol.,2016
3. Induction and repair of DNA double strand breaks: the increasing spectrum of non-homologous end joining pathways;Mladenov;Mutat. Res.,2011
4. Gamma-H2AX in recognition and signaling of DNA double-strand breaks in the context of chromatin;Kinner;Nucl. Acids Res.,2008
5. The DNA-damage response in human biology and disease;Jackson;Nature,2009
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