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It covers diffusion-kinetic processes in radiation tracks and secondary reactions in the bulk coolant.
The number of radiation tracks in each cell is calculated based on random function, and the absorbed dose is calculated as the accumulation of the radiation tracks.
R i, j (t) is the absorbed dose calculated based on the number of radiation tracks (Eq. (1)).
The number of radiation tracks in grid position (i, j) at time t is represented by a random variable K i, j (t).
However, the radiation dose is really the result of the random traversal of radiation tracks and the absorbed dose in each cell is non-uniform, particularly following low-dose irradiation.
Similar(55)
Preliminary results from a mechanistic model based on a coupling between radiation track-structure features and explicitly-modelled, non-overlapping chromosome territories are presented.
The values of the autocorrelation function demonstrate the effect of the directionality of the radiation track on the spatial arrangements of inactivated cells in tissue.
There are several computer programs or combination of programs for radiation tracking and other information in tissues by using Monte Carlo simulation [1].
It is defined as the combination of two or more lesions, comprising strand breaks, oxidatively generated base damage, abasic sites within one or two DNA helix turns, created by the passage of a single radiation track.
The radiation track produces constant quantities of virtual signals represented by a "unit".
The expected value of the absorbed dose given by one radiation track, D1track, was set to 1.0×10−3 Gy.
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