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涉及生物大分子的射频吸收。

RF absorption involving biological macromolecules.

作者信息

Prohofsky E W

机构信息

Department of Physics Purdue University, W. Lafayette, Indiana 47907, USA.

出版信息

Bioelectromagnetics. 2004 Sep;25(6):441-51. doi: 10.1002/bem.20013.

Abstract

The fundamental intramolecular frequency of a globular protein can be obtained from the measurements of acoustic velocities of bulk protein matter. This lowest frequency for common size molecules is shown to be above several hundred GHz. All modes below this frequency would then be intermolecular modes or bulk modes of the molecule and surrounding matter or tissue. The lowest frequency modes of an extended DNA double helix are also shown to be bulk modes because of interaction with water. Only DNA modes, whose frequency is well above 4 GHz, can be intrahelical modes, that is, confined to the helix rather than in the helix plus surroundings. Near 4 GHz, they are heavily damped and, therefore, not able to resonantly absorb. Modes that absorb radio frequency (RF) below this frequency are bulk modes of the supporting matter. Bulk modes rapidly thermalize all absorbed energy. The implication of these findings for the possibility of athermal RF effects is considered. The applicability of these findings for other biological molecules is discussed.

摘要

球状蛋白质的基本分子内频率可通过测量蛋白质整体物质的声速获得。对于常见尺寸的分子,该最低频率高于数百吉赫兹。低于此频率的所有模式将是分子间模式或分子与周围物质或组织的整体模式。由于与水的相互作用,延伸的DNA双螺旋的最低频率模式也被证明是整体模式。只有频率远高于4吉赫兹的DNA模式才能是螺旋内模式,即局限于螺旋而非螺旋及其周围环境。在4吉赫兹附近,它们被严重阻尼,因此无法共振吸收。低于此频率吸收射频(RF)的模式是支撑物质的整体模式。整体模式会迅速将所有吸收的能量热化。考虑了这些发现对无热射频效应可能性的影响。讨论了这些发现对其他生物分子的适用性。

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