Shlykov Vladyslav, Kotovskyi Vitalii, Višniakov Nikolaj, Šešok Andžela
Department of Biomedical Engineering, National Technical University of Ukraine, Kiev, Ukraine.
Department of General Physics and Solid State Physics, National Technical University of Ukraine, Kiev, Ukraine.
Technol Health Care. 2018;26(S2):571-576. doi: 10.3233/THC-182504.
In this paper a method is proposed to evaluate the heart's coronary vessels' status based on the elimination of large coronary branches from IR-thermal image. This method makes it possible to determine nutrient cardiac blood circulation by calculation of the rate of heat spreading in small coronary vessels in the myocardium at hypothermia and hyperthermia under the conditions of artificial blood circulation.
The objective of the paper includes a theoretical substantiation of the proposed method for evaluation of the heart's coronary vessels' status and an experimental investigation of the efficiency of the method.
In the experiment, the dynamics of temperature distribution in the myocardium were registered by using thermal imaging cameras Flir i7 and Thermo Cam E300.
Processing of the myocardium's thermographic images and the results of heat spreading modeling make it possible to single out the temperature profiles of the visible myocardium zones and to establish the presence of coronary arteries in them.
The method makes it possible to monitor the heart temperature at hypothermia and hyperthermia; additionally, it makes it possible to evaluate the efficiency of the coronary artery bypass graft surgery performed during open heart operation.
本文提出了一种基于从红外热图像中消除大的冠状动脉分支来评估心脏冠状动脉状况的方法。该方法能够通过计算在人工血液循环条件下低温和高温时心肌中小冠状动脉内的热传播速率来确定心脏的营养性血液循环。
本文的目的包括对所提出的评估心脏冠状动脉状况方法的理论论证以及对该方法有效性的实验研究。
在实验中,使用热成像相机Flir i7和Thermo Cam E300记录心肌中的温度分布动态。
对心肌热成像图像的处理以及热传播建模结果使得能够挑选出可见心肌区域的温度曲线并确定其中冠状动脉的存在。
该方法能够在低温和高温时监测心脏温度;此外,还能够评估心脏直视手术期间进行的冠状动脉搭桥手术的有效性。