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Noninvasive imaging analysis of biological tissue associated with laser thermal injury

机译:与激光热损伤相关的生物组织的非侵入性成像分析

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BackgroundThe purpose of our study is to use a noninvasive tomographic imaging technique with high spatial resolution to characterize and monitor biological tissue responses associated with laser thermal injury.MethodsOptical doppler tomography (ODT) combines laser doppler flowmetry (LDF) with optical coherence tomography (OCT) to obtain high resolution tomographic velocity and structural images of static and moving constituents in highly scattering biological tissues. A SurgiLase XJ150 carbon dioxide (CO2) laser using a continuous mode of 3?watts (W) was used to create first, second or third degree burns on anesthetized Sprague–Dawley rats. Additional parameters for laser thermal injury were assessed as well.ResultsThe rationale for using ODT in the evaluation of laser thermal injury offers a means of constructing a high resolution tomographic image of the structure and perfusion of laser damaged skin. In the velocity images, the blood flow is coded at 1300?μm/s and 0 velocity, 1000?μm/s and 0 velocity, 700?μm/s and 0 velocity adjacent to the first, second, and third degree injuries, respectively.ConclusionODT produces exceptional spatial resolution while having a non-invasive way of measurement, therefore, ODT is an accurate measuring method for high-resolution fluid flow velocity and structural images for biological tissue with laser thermal injury.
机译:背景研究的目的是使用具有高空间分辨率的无创层析成像技术来表征和监测与激光热损伤相关的生物组织反应。方法光学多普勒层析成像(ODT)结合了激光多普勒血流仪(LDF)和光学相干层析成像(OCT)在高分散的生物组织中获得高分辨率的层析速度和静态和移动成分的结构图像。使用3瓦特(W)连续模式的SurgiLase XJ150二氧化碳(CO 2 )激光器在麻醉的Sprague-Dawley大鼠上产生一度,二度或三度灼伤。还评估了激光热损伤的其他参数。结果使用ODT评估激光热损伤的基本原理为构建高分辨率的断层图像和激光损伤皮肤的灌注提供了一种手段。在速度图像中,分别以与第一,第二和第三级损伤相邻的1300?μm/ s和0速度,1000?μm/ s和0速度,700?μm/ s和0速度编码血流。结论ODT具有非侵入性的测量方式,可产生出色的空间分辨率,因此,ODT是用于激光热损伤的生物组织的高分辨率流体流速和结构图像的准确测量方法。

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