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  2. Radiation-induced cancer - Wikipedia

    en.wikipedia.org/wiki/Radiation-induced_cancer

    Cancer is a stochastic effect of radiation, meaning that it only has a probability of occurrence, as opposed to deterministic effects which always happen over a certain dose threshold. The consensus of the nuclear industry, nuclear regulators, and governments, is that the incidence of cancers due to ionizing radiation can be modeled as ...

  3. Linear no-threshold model - Wikipedia

    en.wikipedia.org/wiki/Linear_no-threshold_model

    In very high dose radiation therapy, it was known at the time that radiation can cause a physiological increase in the rate of pregnancy anomalies; however, human exposure data and animal testing suggests that the "malformation of organs appears to be a deterministic effect with a threshold dose", below which no rate increase is observed. [19]

  4. Radiobiology - Wikipedia

    en.wikipedia.org/wiki/Radiobiology

    High radiation dose gives rise to deterministic effects which reliably occur above a threshold, and their severity increases with dose. Deterministic effects are not necessarily more or less serious than stochastic effects; either can ultimately lead to a temporary nuisance or a fatality. Examples of deterministic effects are:

  5. Relative biological effectiveness - Wikipedia

    en.wikipedia.org/wiki/Relative_biological...

    RBEs can be used for either cancer/hereditary risks or for harmful tissue reactions (deterministic) effects. Tissues have different RBEs depending on the type of effect. For high LET radiation (i.e., alphas and neutrons), the RBEs for deterministic effects tend to be lower than those for stochastic effects. [1]

  6. Radiation protection - Wikipedia

    en.wikipedia.org/wiki/Radiation_protection

    The application of radiation can aid the patient by providing doctors and other health care professionals with a medical diagnosis, but the exposure of the patient should be reasonably low enough to keep the statistical probability of cancers or sarcomas (stochastic effects) below an acceptable level, and to eliminate deterministic effects (e.g ...

  7. Chronic radiation syndrome - Wikipedia

    en.wikipedia.org/wiki/Chronic_radiation_syndrome

    Dose rates high enough to cause the acute form (> ~0.1 Gy/h) are fatal long before onset of the chronic form. The lower threshold for chronic radiation syndrome is between 0.7 and 1.5 Gy, at dose rates above 0.1 Gy/yr. [3] This condition is primarily known from the Kyshtym disaster, where 66 cases were diagnosed.

  8. Radiation exposure - Wikipedia

    en.wikipedia.org/wiki/Radiation_exposure

    The International Commission on Radiological Protection (ICRP) describes how deterministic effects, or harmful tissue reactions, occur. [5] There is a threshold dose which causes clinical radiation damage of cells in the body. [5] As the dose increases, the severity of injury increases. [5] This also impairs tissue recovery. [5]

  9. Sievert - Wikipedia

    en.wikipedia.org/wiki/Sievert

    The deterministic (acute tissue damage) effects that can lead to acute radiation syndrome only occur in the case of acute high doses (≳ 0.1 Gy) and high dose rates (≳ 0.1 Gy/h) and are conventionally not measured using the unit sievert, but use the unit gray (Gy). A model of deterministic risk would require different weighting factors (not ...

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