首页> 外文会议>ASME international mechanical engineering congress and exposition >DETECTION OF SUBSURFACE SKIN LESION USING FREQUENCY MODULATED THERMAL WAVE IMAGING: A NUMERICAL STUDY
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DETECTION OF SUBSURFACE SKIN LESION USING FREQUENCY MODULATED THERMAL WAVE IMAGING: A NUMERICAL STUDY

机译:频率调制热波成像检测亚表皮病变的数值研究

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Infrared thermography is one of the promising and non-invasive imaging approaches which can be performed either in passive or in active mode. Due to its inherent capabilities, viz., fast, safe and subsurface feature extraction, this technique has been widely used in bio-medical imaging. In conventional passive approach, imaging may not provide enough contrast for detection of subsurface skin lesion. However, this limitation can be surmounted by using active thermography technique in which controlled energy is being supplied to the skin. This controlled stimulus not only helps in the detection of deeper subsurface details but also helps in getting the quantitative information of hidden features. Apart from the various widely used active approaches such as modulated lock-in thermography (LT) and high peak power pulsed based thermography (Pulsed Thermography - PT and Pulse Phase Thermography - PPT) techniques, the present article highlights an alternative approach which can be performed in less time as compared to LT and with much less peak powers as compared to pulsed based thermography (PT and PPT) techniques. The present work utilizes a non-stationary thermal wave imaging approach to map the subsurface skin lesion. The multilayered skin has been modeled and simulated for a given frequency modulated heat stimulus using 3-dimensional bio-heat equation.
机译:红外热成像是一种有前途的无创成像方法之一,可以以被动或主动方式进行。由于其固有的功能,即快速,安全和地下特征提取,该技术已广泛用于生物医学成像中。在传统的被动方法中,成像可能无法提供足够的对比度来检测皮下皮肤病变。但是,可以通过使用主动热成像技术克服这一局限,在主动热成像技术中,将受控的能量提供给皮肤。这种受控的刺激不仅有助于检测更深的地下细节,而且还有助于获取隐藏特征的定量信息。除了各种广泛使用的主动方法,例如调制锁定热成像(LT)和高峰值功率脉冲热成像(Pulsed Thermography-PT和Pulse Phase Thermography-PPT)技术之外,本文还重点介绍了可以执行的另一种方法与基于LT的热成像技术(PT和PPT)相比,与LT相比所需的时间更少,峰值功率也更小。本工作利用非平稳的热波成像方法来绘制地下皮肤病变的地图。已使用3维生物热方程对给定的调频热刺激进行了建模和仿真。

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