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Evaluation of allergic response using dynamic thermography

机译:动态热成像法评估过敏反应

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Skin dynamic termography supplemented by a mathematical model is presented as an objective and sensitive indicator of the skin prick test result. Termographic measurements were performed simultaneously with routine skin prick tests. The IR images were acquired every 70 s up to 910 s after skin prick. In the model histamine is treated as the principal mediator of the allergic reaction. Histamine produces vasolidation and the engorged vessels are responsible for an increase in skin temperature. The model parameters were determined by fitting the analytical solutions to the spatio-temporal distributions of the differences between measured and baseline temperatures. The model reproduces experimental data very well (coefficient of determination = 0.805 divided by 0.995). The method offers a set of parameters to describe separately skin allergic reaction and skin reactivity. The release of histamine after allergen injection is the best indicator of allergic response. The diagnostic parameter better correlates with the standard evaluation of a skin prick test (correlation coefficient = 0.98) than the result of the thermographic planimetric method based on temperature and heated area determination (0.81). The high sensitivity of the method allows for determination of the allergic response in patients with the reduced skin reactivity.
机译:提出了带有数学模型的皮肤动力学术语,作为皮肤点刺测试结果的客观敏感指标。术语测量与常规皮肤点刺测试同时进行。皮肤刺刺后每70秒至910秒获取一次红外图像。在模型中,组胺被视为过敏反应的主要介质。组胺引起血管凝结,血管充盈导致皮肤温度升高。通过将分析解决方案拟合到实测温度和基线温度之间的时空分布来确定模型参数。该模型很好地再现了实验数据(测定系数= 0.805除以0.995)。该方法提供了一组参数来分别描述皮肤过敏反应和皮肤反应性。注射过敏原后组胺的释放是过敏反应的最佳指标。与基于温度和加热区域确定的热成像平面法的结果(0.81)相比,诊断参数与皮肤点刺试验的标准评估(相关系数= 0.98)更好地相关。该方法的高灵敏度允许确定皮肤反应性降低的患者的过敏反应。

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