Brik A, Haskell E, Brik V, Scherbina O, Atamanenko O
Institute of Geochemistry, Mineralogy and Ore Formation, Kiev, Ukraine.
Appl Radiat Isot. 2000 May;52(5):1077-83. doi: 10.1016/s0969-8043(00)00047-6.
Peculiarities of the internal construction of tooth enamel and bones that cause anisotropy effects and mass transfer in these objects are described. It is shown that the composition of the mineral component of teeth and bones depends on a mechanical-electrical mechanism, which pumps ions into nanocrystals. Decrease in the efficiency of the mechanical-electrical mechanism results in demineralization of enamel and bones, which progresses most rapidly at a disease of the biomineral or under special conditions, such as in space flights. Effects of signal anisotropy in the practice of retrospective EPR dosimetry are discussed.
描述了牙釉质和骨骼内部结构的特性,这些特性会在这些物体中引起各向异性效应和质量传递。结果表明,牙齿和骨骼矿物质成分的组成取决于一种机械 - 电机制,该机制将离子泵入纳米晶体。机械 - 电机制效率的降低会导致牙釉质和骨骼脱矿,在生物矿物质疾病或特殊条件下(如太空飞行),这种脱矿进展最为迅速。讨论了信号各向异性在回顾性电子顺磁共振剂量测定实践中的影响。