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Medical applications of model based dynamic thermography

机译:基于模型动态热成像的医疗应用

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The proposal to use active thermography in medical diagnostics is promising in some applications concerning investigation of directly accessible parts of the human body. The combination of dynamic thermograms with thermal models of investigated structures gives attractive possibility to make internal structure reconstruction basing on different thermal properties of biological tissues. Measurements of temperature distribution synchronised with external light excitation allow registration of dynamic changes of local temperature dependent on heat exchange conditions. Preliminary results of active thermography applications in medicine are discussed. For skin and under-skin tissues an equivalent thermal model may be determined. For the assumed model its effective parameters may be reconstructed basing on the results of transient thermal processes. For known thermal diffusivity and conductivity of specific tissues the local thickness of a two or three layer structure may be calculated. Results of some medical cases as well as reference data of in vivo study on animals are presented. The method was also applied to evaluate the state of the human heart during the open chest cardio-surgical interventions. Reference studies of evoked heart infarct in pigs are referred, too. We see the proposed new in medical applications technique as a promising diagnostic tool. It is a fully non-invasive, clean, handy, fast and affordable method giving not only qualitative view of investigated surfaces but also an objective quantitative measurement result, accurate enough for many applications including fast screening of affected tissues.
机译:在医学诊断中使用活性热成像的提议在一些关于人体直接可访问部位的研究中有前途。具有研究结构的热模型的动态热量学的组合具有使内部结构重建基于生物组织的不同热性能的有吸引力的可能性。与外部光励磁同步的温度分布测量允许在局部温度的动态变化的负载取决于热交换条件。讨论了医学中有源热成像应用的初步结果。对于皮肤和皮肤底层组织,可以确定等效的热模型。对于假设的模型,可以基于瞬态热过程的结果来重建其有效参数。对于已知的热扩散性和特定组织的导电性,可以计算两个或三层结构的局部厚度。提出了一些医疗案例的结果,以及体内动物研究的参考数据。该方法也被应用于在开放式胸部心脏手术干预过程中评估人体的状态。还提到了猪诱发心脏梗塞的参考研究。我们将在有前途的诊断工具中看到了拟议的医学应用技术。它是一种完全无侵入性,干净,方便,快速合理的方法,不仅给出了所研究的表面的定性视图,还具有客观的定量测量结果,对于许多应用程序提供足够的准确性,包括对受影响的组织的快速筛选。

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