线性能量转移
俄歇效应
放射化学
相对生物效应
螺旋钻
电离辐射
放射生物学
染色质
原子物理学
电子
辐照
俄歇电子能谱
化学
物理
核物理学
DNA
生物化学
作者
S. James Adelstein,Amin I. Kassis,Lisa Bodei,Giuliano Mariani
标识
DOI:10.1089/108497803322285062
摘要
Auger-electron cascades with their ability to deposit energy in extremely small volumes, typically in the range of cubic nanometers, have served as valuable probes of radiobiologic phenomena. Results from their experimental use form part of the evidence that nuclear DNA is the most radiosensitive cell element; that chromosomal aberrations and large scale double-strand breaks are correlated with reproductive survival; that neoplastic transformation and also mutagenesis are greatest at low doses with high specific ionization; and that, like high linear-energy-transfer radiation, Auger-electron cascades can lead to bystander effects. We have also learned that radiobiologic responses to Auger-electron emission are particularly sensitive to the site of decay, not only within the cell but also in the nucleus within the fine structure of chromatin.
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