Modelling of temperature and perfusion during scalp cooling

头皮 灌注 血流 材料科学 主管(地质) 皮肤温度 生物医学工程 人头 化学 医学 解剖 内科学 生物 复合材料 吸收(声学) 古生物学
作者
Francis-Paul E.M. Janssen,G M J van Leeuwen,A A Van Steenhoven
出处
期刊:Physics in Medicine and Biology [IOP Publishing]
卷期号:50 (17): 4065-4073 被引量:82
标识
DOI:10.1088/0031-9155/50/17/010
摘要

Hair loss is a feared side effect of chemotherapy treatment. It may be prevented by cooling the scalp during administration of cytostatics. The supposed mechanism is that by cooling the scalp, both temperature and perfusion are diminished, affecting drug supply and drug uptake in the hair follicle. However, the effect of scalp cooling varies strongly. To gain more insight into the effect of cooling, a computer model has been developed that describes heat transfer in the human head during scalp cooling. Of main interest in this study are the mutual influences of scalp temperature and perfusion during cooling. Results of the standard head model show that the temperature of the scalp skin is reduced from 34.4 degrees C to 18.3 degrees C, reducing tissue blood flow to 25%. Based upon variations in both thermal properties and head anatomies found in the literature, a parameter study was performed. The results of this parameter study show that the most important parameters affecting both temperature and perfusion are the perfusion coefficient Q10 and the thermal resistances of both the fat and the hair layer. The variations in the parameter study led to skin temperature ranging from 10.1 degrees C to 21.8 degrees C, which in turn reduced relative perfusion to 13% and 33%, respectively.

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