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Measurement of microwave radiation absorbed by biological systems, 2, analysis by Dewar-flask calorimetry

机译:生物系统吸收的微波辐射的测量,2,杜瓦瓶量热法分析

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Free-field power density has long been used as an index of energy dosing in studies of biological effects of microwave radiation. However, this method of quantifying dose can lead to considerable error if it is used as an index of the rate of energy actually being absorbed by a specimen, because the relative absorption cross sections of different specimens may vary greatly. The integral of absorbed energy is a more meaningful measure of exposure; it can be accomplished by using such sophisticated equipment as twin-well calorimeters, or by using the cruder system of saline-filled phantoms This paper describes a calorimetric system for the measurement of absorbed energy in laboratory animals and in in vitro samples that can be assembled from such common laboratory equipment as Dewar flasks, magnetic stirrers, foamed polystyrene, and an accurate temperature measuring device. Measurements of absorbed energy by this system for a standard tissue-culture flask are compared to values obtained by electrical measurements, by direct temperature measurements, and by heating and cooling curves. Also, application of the system to measurements of dose in experimental animals is demonstrated.
机译:自由场功率密度长期以来一直被用作微波辐射生物学效应研究中能量剂量的指标。但是,如果将这种定量剂量的方法用作标本实际吸收能量速率的指标,则会导致相当大的误差,因为不同标本的相对吸收截面可能会发生很大变化。吸收能量的积分是更有意义的暴露量度。它可以通过使用双井量热仪等先进的设备来完成,也可以使用盐水填充的体模的较原始系统来完成。本文介绍了一种量热系统,用于测量实验动物和体外样品中的吸收能可以从杜瓦瓶,磁力搅拌器,泡沫聚苯乙烯和精确的温度测量设备等常见实验室设备中获得。该系统对标准组织培养瓶的吸收能量测量值与通过电测量,直接温度测量以及加热和冷却曲线获得的值进行比较。同样,证明了该系统在实验动物剂量测量中的应用。

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