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New visualization strategy to study the dynamics of surgical coagulation devices in biological tissue using absolute subsurface thermal imaging

机译:利用绝对地下热成像技术研究生物组织中外科凝血设备动态的新可视化策略

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Visualisation of the thermo dynamics of surgical coagulation devices like laser, diathermy and RFA devices in tissue are essential to get belter understanding about the principles of operation of these devices. Thermo cameras have the ability to measure absolute temperatures. However, the visualization of temperature fields using thermal imaging has always been limited to the surface of a medium. We have developed a new strategy to look below the surface of biological tissue by viewing through a ZincSelenide window positioned alongside a block of tissue. When exposed from above with an energy source, the temperature distribution below the surface can be observed through the window. To obtain a close-up view, the thermo camera is enhanced with special macro optics. The thermo dynamics during tissue interaction of various electro surgery modes was studied in biological tissues to obtain a better understanding of the working mechanism. Simultaneously with thermal imaging, normal close-up video footage was obtained to support the interpretation of the thermal imaging. For comparison, temperature gradients were imaged inside a transparent tissue model using color Schlieren imaging. The new subsurface thermal imaging method gives a better understanding of interaction of thermal energy of surgical devices and contributes to the safety and the optimal settings for various medical applications. However, the technique has some limitations that have to be considered. The three imaging modalities showed to be both compatible and complementary showing the pro- and cons- of each modality.
机译:可视化外科凝固设备(如激光,透热疗法和RFA设备)在组织中的热力学,对于使皮带使用者了解这些设备的工作原理至关重要。热像仪具有测量绝对温度的能力。然而,使用热成像对温度场的可视化一直仅限于介质表面。我们已经开发出一种新的策略,可以通过在一块组织旁边放置的ZincSelenide窗口进行观察,从而在生物组织的表面下方看。当使用能源从上方暴露时,可以通过窗户观察表面下方的温度分布。为了获得特写视图,热像仪配有特殊的微距光学元件。在生物组织中研究了各种电外科手术模式在组织相互作用期间的热力学,以更好地了解其工作机理。与热成像同时,获得正常的特写镜头录像以支持热成像的解释。为了进行比较,使用彩色Schlieren成像在透明组织模型内部成像了温度梯度。新的地下热成像方法可以更好地理解外科手术器械的热能相互作用,并有助于各种医疗应用的安全性和最佳设置。但是,该技术具有一些必须考虑的限制。三种成像方式既兼容又互补,分别显示了每种方式的利弊。

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