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The interaction between Terahertz radiation and biological tissue.

机译:太赫兹辐射与生物组织之间的相互作用。

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Terahertz (THz) radiation occupies that region of the electromagnetic (EM) spectrum between approximately 0.3 and 20 THz. Recent advances in methods of producing THz radiation have stimulated interest in studying the interaction between radiation and biological molecules and tissue. Given that the photon energies associated with this region of the spectrum are 2.0 x 10(-22) to 1.3 x 10(-20) J, an analysis of the interactions requires an understanding of the permittivity and conductivity of the medium (which describe the bulk motions of the molecules) and the possible transitions between the molecular energy levels. This paper reviews current understanding of the interactions between THz radiation and biological molecules, cells and tissues. At frequencies below approximately 6 THz. the interaction may be understood as a classical EM wave interaction (using the parameters of permittivity and conductivity), whereas at higher frequencies. transitions between different molecular vibrational and rotational energy levels become increasingly important and are more readily understood using a quantum-mechanical framework. The latter is of particular interest in using THz to probe transitions between different vibrational modes of deoxyribonucleic acid. Much additional experimental work is required in order to fully understand the interactions between THz radiation and biological molecules and tissue.
机译:太赫兹(THz)辐射占据电磁(EM)光谱的大约0.3到20 THz之间的区域。产生太赫兹辐射的方法的最新进展激发了人们对研究辐射与生物分子和组织之间相互作用的兴趣。假设与此光谱区域相关的光子能量为2.0 x 10(-22)至1.3 x 10(-20)J,则对相互作用的分析需要了解介质的介电常数和电导率(描述介质的介电常数和电导率)。分子的整体运动)以及分子能级之间的可能过渡。本文回顾了当前对太赫兹辐射与生物分子,细胞和组织之间相互作用的理解。低于约6 THz的频率。相互作用可以理解为经典的EM波相互作用(使用介电常数和电导率参数),而在较高频率下。不同的分子振动能级和旋转能级之间的过渡变得越来越重要,并且使用量子力学框架更容易理解。后者对于使用THz探测脱氧核糖核酸的不同振动模式之间的跃迁特别感兴趣。为了充分了解太赫兹辐射与生物分子和组织之间的相互作用,还需要进行大量额外的实验工作。

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