A new Standard DNA damage (SDD) data format
J. Schuemann, A. McNamara, J. W. Warmenhoven, N. T. Henthorn, K., Kirkby, M. J. Merchant, S. Ingram, H. Paganetti, KD. Held, J. Ramos-Mendez,, B. Faddegon, J. Perl, D. Goodhead, I. Plante, H. Rabus, H. Nettelbeck, W., Friedland, P. Kundrat, A. Ottolenghi, G. Baiocco, S. Barbieri

TL;DR
This paper introduces a standardized data format for DNA damage modeling to improve comparison and integration of different simulation models, ultimately advancing understanding of radiation-induced DNA damage and repair mechanisms.
Contribution
The paper proposes a new standard data format for DNA damage to unify simulation interfaces and facilitate model comparisons across research groups.
Findings
Standard format enables easier model comparison.
Improves understanding of DNA damage mechanisms.
Facilitates integration of physics and biological models.
Abstract
Our understanding of radiation induced cellular damage has greatly improved over the past decades. Despite this progress, there are still many obstacles to fully understanding how radiation interacts with biologically relevant cellular components to form observable endpoints. One hurdle is the difficulty faced by members of different research groups in directly comparing results. Multiple Monte Carlo codes have been developed to simulate damage induction at the DNA scale, while at the same time various groups have developed models that describe DNA repair processes with varying levels of detail. These repair models are intrinsically linked to the damage model employed in their development, making it difficult to disentangle systematic effects in either part of the modelling chain. The modelling chain typically consists of track structure Monte Carlo simulations of the physics…
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Taxonomy
MethodsRepair
