电刺激乳房模型的热成像模拟

Feza Carlak, N. G. Gencer
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引用次数: 0

摘要

不同组织的能量消耗值存在差异。组织的传导性和代谢热源改变了组织是否健康。组织的温差使热红外成像成为非常重要和至关重要的一点。用早期的仪器和技术是不可能检测到这些差异的。然而,近年来,由于探测器和照相机的灵敏度的提高,现在有可能探测到这些数量的温差。红外成像在乳腺癌诊断中的作用有限,尤其是在患者移动的情况下。然而,这种性能可以通过在医疗安全限制下应用低频电流来改善。利用当前的应用,可以增加具有不同电性和热性的组织的温差,并在获得的热图像中区分恶性组织。在这项研究中,女性乳房和癌组织是二维建模的。利用正常组织和癌组织的实际值,用有限元法求解了Pennes生物热方程。对不同的肿瘤位置进行了模拟。当恶性组织接近皮肤表面时,获得更高的温差。成像性能随着目前的应用而提高,使用现代最先进的热红外成像仪(具有大约10°mK的灵敏度)可以在4.5 cm深度检测肿瘤。
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Electrically stimulated breast model's thermal imaging simulations
Different tissues energy consuming values show differences from each other. Conductivity and metabolic heat source of the tissue alter whether it is healthy or not. The temperature differences of tissues take the thermal infrared imaging into very important and vital point. It was not possible to be able to detect these amounts of differences with the early instrumentation and technology. However, in recent years by the improvement of sensitivity of detectors and cameras it is now possible to sense these amounts of temperature differences. Infrared imaging has a limited performance for the breast cancer diagnosis which occurs especially due to patient moving. Nevertheless, this performance can be improved by applying low frequency currents in medical safety limits. By the help of current application, temperature differences of tissues which have different electrical and thermal properties can be increased and malignant tissue can be distinguished in the obtained thermal image. In this study, woman breast and cancerous tissue are two dimensionally modeled. By using realistic values for regular and cancerous tissue Pennes bio heat equation is solved with finite element method. Simulations are implemented for different tumor locations. Whenever malignant tissue approaches to the skin surface, higher temperature differences are obtained. Imaging performance is increased with current application and tumors can be sensed at 4.5 cm depth with the modern state-of-the-art thermal infrared imagers (possess approximately 10 °mK sensitivity).
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