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水凝胶在高热治疗期间用作水球。

Hydrogels as a water bolus during hyperthermia treatment.

机构信息

Department of Electrical Engineering, Chalmers University of Technology, Göteborg, Sweden.

出版信息

Phys Med Biol. 2019 May 31;64(11):115025. doi: 10.1088/1361-6560/ab0c29.

Abstract

The feasibility of using hydrogels as a water bolus during hyperthermia treatment was assessed. Three types of gels, high methoxyl (HM) pectin/alginate, xanthan/locust bean gum (LBG) and xanthan/LBG/agarose were evaluated based on their dielectric, rheological and mechanical properties. The most suitable, xanthan/LBG/agarose gel was further used as a water bolus in a hyperthermia array applicator. The gels composed of polysaccharides carrying low charge displayed dielectric properties close to those of water, while the dielectric properties of HM pectin/alginate gel was deemed unsuitable for the current application. The mechanical examination shows that the xanthan/LBG gel has a non-brittle behaviour at room temperature, in contrast to the agarose gel. The moduli of the xanthan/LBG gel weaken however considerably between the temperature range of 40 °C and 50 °C, reducing its potential to be used as water bolus. The ternary system of xanthan/LBG/agarose had advantageous behaviour as it was dominated by the thermal hysteresis typical of agarose upon temperature increase, but governed by the typical non-brittle behaviour of the xanthan/LBG at low temperatures. The final evaluation within the hyperthermia applicator showed excellent signal transmission from the antennas. The agarose/xanthan/LBG gel reduced the scattering of electromagnetic waves, enabled a tight closure between the body and the antennas, and offered a less bulky solution than the currently used water-filled plastic bags. The results presented here open up a new application area for hydrogels in improving heat delivery during hyperthermia treatment and other near-field microwave applications.

摘要

评估了水凝胶在高温治疗中用作水囊的可行性。基于其介电、流变和机械性能,评估了三种凝胶,高甲氧基(HM)果胶/海藻酸钠、黄原胶/刺槐豆胶(LBG)和黄原胶/LBG/琼脂。最适合的是黄原胶/LBG/琼脂凝胶,它进一步被用作高温治疗阵列敷贴器中的水囊。带低电荷的多糖组成的凝胶表现出与水相近的介电性能,而 HM 果胶/海藻酸钠凝胶的介电性能被认为不适合当前的应用。机械检查表明,黄原胶/LBG 凝胶在室温下具有非脆性行为,而琼脂凝胶则没有。然而,黄原胶/LBG 凝胶的模量在 40°C 和 50°C 之间的温度范围内显著减弱,降低了其作为水囊的潜力。黄原胶/LBG/琼脂的三元体系表现出有利的行为,因为它在温度升高时主要由琼脂的热滞后所主导,但在低温下由黄原胶/LBG 的典型非脆性行为所控制。在高温治疗敷贴器中的最终评估显示,天线的信号传输非常良好。琼脂糖/黄原胶/LBG 凝胶减少了电磁波的散射,使身体和天线之间能够紧密闭合,并提供了比当前使用的充满水的塑料袋更紧凑的解决方案。这里呈现的结果为水凝胶在改善高温治疗期间的热传递和其他近场微波应用中的应用开辟了一个新的领域。

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