Dependence of nanodosimetric spectra on the sensitive volume length and ion drift in an ion-counting nanodosemeter

Author:

Shchemelinin S.,Hilgers G.,Gargioni E.,Grosswendt B.,Breskin A.,Chechik R.

Publisher

Oxford University Press (OUP)

Subject

Public Health, Environmental and Occupational Health,Radiology Nuclear Medicine and imaging,General Medicine,Radiation,Radiological and Ultrasound Technology

Reference11 articles.

1. Garty, G., Schulte, R., Shchemelinin, S., Grosswendt, B., Leloup, C., Assaf, G., Breskin, A., Chechik, R. and Bashkirov, V. First attempts at prediction of DNA clustered-lesion yields using nanodosimetric data. 14-th Int. Symposium on Microdosimetry, November 13–18, 2005, Venice, Italy.

2. D'Souza, D. I. and Harrison, L. Repair of clustered uracil DNA damage in Escherichia Coli. Nucleic Acid Res. 31, 4573–4581 (2003).

3. Dianov, G. L., Timchenko, T. V., Sinitsina, O. I., Kuzminov, A. V., Medvedev, O. A. and Salaganik, R. I. Repair of uracil residues closely spaced on the opposite strand of plasmid DNA results in double strand break and deletion formation. Mol. Gen. Genet. 225, 448–452 (1991).

4. Garty, G., Shchemelinin, S., Breskin, A., Chechik, R., Assaf, G., Orion, I., Bashkirov, V., Schulte, R. and Grosswendt, B. The performance of a novel ion-counting nanodosimeter. Nucl. Instrum. Methods Phys. Res. A492, 212–235 (2002).

5. Garty, G. Development of ion-counting nanodosimetry and evaluation of its relevance to radiation biology. PhD Thesis, Weizmann Institute of Science, Rehovot, Israel (2004).

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