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首页> 外文期刊>Selected Topics in Quantum Electronics, IEEE Journal of >Assessment of the Pathophysiology of Injured Tissue With an In Vivo Electrical Injury Model
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Assessment of the Pathophysiology of Injured Tissue With an In Vivo Electrical Injury Model

机译:体内电损伤模型对受伤组织病理生理的评估

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Tissue destruction from electrical injury is devastating and hard to treat. Unfortunately, the pathophysiology of electrical trauma is still not well understood. We have developed a suite of tools aimed at investigating damage due to high voltage shock on the skin using a rat model. Electrical injuries were created with a custom made high-tension shock system and a spectroscopic system, based on spatial frequency domain imaging, was used to determine optical properties of electrically injured tissues. The extrapolated values of absorption and scattering coefficients at six different wavelengths were then utilized to monitor parameters of interest such as tissue oxygen saturation, methemoglobin volume fraction, and hemoglobin volume fraction at four time intervals post injury. An FLIR thermal camera was used to record skin temperature during the electrical shock. Finally, a laser Doppler imaging apparatus was used to assess tissue perfusion. In this paper, the results of experiments conducted on a rat model and discussions on the systemic changes in tissue optical properties before and after electrical shock are presented. A reduction in tissue oxygen saturation postinjury is observed as well as an increase in methemoglobin. Tissue perfusion increases immediately after the delivery of the electrical shock.
机译:电击造成的组织破坏是毁灭性的,难以治疗。不幸的是,电创伤的病理生理学仍然没有被很好地理解。我们已经开发了一套工具,旨在使用大鼠模型研究由于皮肤高电压电击而造成的损害。使用定制的高压电击系统创建了电击伤,并且基于空间频域成像的光谱系统用于确定电击伤组织的光学特性。然后利用六个不同波长的吸收系数和散射系数的外推值来监测目标参数,例如损伤后四个时间间隔的组织氧饱和度,高铁血红蛋白体积分数和血红蛋白体积分数。 FLIR热像仪用于记录电击过程中的皮肤温度。最后,使用激光多普勒成像仪评估组织灌注。本文介绍了在大鼠模型上进行的实验结果,并讨论了电击前后组织光学特性的系统性变化。观察到损伤后组织氧饱和度降低以及高铁血红蛋白升高。电击后立即组织灌注增加。

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