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A numerical study on the influence of vulnerable plaque composition on intravascular thermography measurements

机译:易损斑块组成对血管内热成像测量影响的数值研究

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Intracoronary thermography is a technique that measures lumen wall temperatures for vulnerable plaque detection. In this paper the influence of vulnerable plaque composition on lumen wall temperatures was studied numerically. Concerning the vulnerable plaque heat generation, the location of the heat source and its heat production were varied. Concerning the heat transfer, the thermal properties of the lipid core and the location of the vasa vasorum were studied. The heat source location was the main determinant of the lumen wall temperature distribution. The strongest effect was noted when the heat producing macrophages were located in the shoulder region leading to focal spots of higher temperature. The maximal lumen wall temperature was mainly determined by the heat production of the macrophages and the cooling effect of blood. The insulating properties of the lipid core increased lumen wall temperatures when the heat source was located in the cap and the presence of vasa vasorum lowered the temperatures. These results show that the lumen wall temperature distribution is influenced by vulnerable plaque composition and that intracoronary thermography techniques require a high spatial resolution. To be able to couple temperature measurements to plaque vulnerability, intracoronary thermography needs to be combined with an imaging modality.
机译:冠状动脉内热成像技术是一种测量管腔壁温度以检测斑块的技术。本文数值研究了易损斑块组成对管腔壁温度的影响。关于易损斑块的热量产生,热源的位置和热量的产生是变化的。关于传热,研究了脂质核心的热性质和脉管的位置。热源位置是管腔壁温度分布的主要决定因素。当产生热量的巨噬细胞位于肩部区域导致温度更高的斑点时,效果最明显。最大管腔壁温度主要由巨噬细胞的发热和血液的冷却作用决定。当热源位于瓶盖中时,脂质核的绝缘性能提高了管腔壁温度,而血管脉管的存在降低了温度。这些结果表明,管腔壁温度分布受易损斑块组成的影响,并且冠状动脉内热成像技术需要较高的空间分辨率。为了能够将温度测量结果与斑块易损性相结合,冠状动脉内热成像需要与成像方式相结合。

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