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In vivo noncontact real-time PVOH imaging of the immediate local physiological response to spinal cord injury in a rat model

机译:在大鼠模型中对脊髓损伤的即时局部生理反应的体内非接触式实时PV O H成像

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摘要

We report a small exploratory study of a methodology for real-time imaging of chemical and physical changes in spinal cords in the immediate aftermath of a localized contusive injury. One hundred separate experiments involving scanning NIR images, one-dimensional, two-dimensional (2-D), and point measurements, obtained , within a field, on spinal cords surgically exposed between T9 and T10 revealed differences between injured and healthy cords. The collected raw data, i.e., elastic and inelastic emission from the laser probed tissues, combined via the PV[O]H algorithm, allow construction of five images over the first 5 h post injury. Within the larger study, a total of 13 rats were studied using 2-D images, i.e., injured and control. A single 830-nm laser ( diameter round spot) was spatially line-scanned across the cord to reveal photobleaching effects and surface profiles possibly locating a near surface longitudinal artery/vein. In separate experiments, the laser was scanned in two dimensions across the exposed cord surface relative to the injury in a specific pattern to avoid uneven photobleaching of the imaged tissue. The 2-D scanning produced elastic and inelastic emission that allowed construction of PV[O]H images that had good fidelity with the visually observed surfaces and separate line scans and suggested differences between the volume fractions of fluid and turbidity of injured and healthy cord tissue.
机译:我们报告了局部挫伤后立即对脊髓的化学和物理变化进行实时成像的方法学的小型探索性研究。在野外在T9和T10之间通过手术暴露的脊髓上进行的一项涉及扫描NIR图像,一维,二维(2-D)和点测量的一百个单独实验揭示了受伤和健康的绳索之间的差异。收集的原始数据,即激光探测组织的弹性和非弹性发射,通过PV [O] H算法结合在一起,可以在受伤后的头5小时内构造出五张图像。在较大的研究中,使用二维图像(即受伤和对照)对总共13只大鼠进行了研究。在整个绳索上对单个830 nm激光(直径圆点)进行空间线扫描,以揭示光漂白效果和表面轮廓,可能位于近表面的纵向动脉/静脉。在单独的实验中,相对于损伤,以特定的方式在裸露的脐带表面上二维扫描激光,以避免成像组织的光漂白不均匀。二维扫描产生弹性和非弹性发射,从而可以构建具有良好保真度的PV [O] H图像,并在视觉上观察到的表面和单独的线扫描,并提示受伤和健康的脐带组织的液体体积分数和浊度之间存在差异。

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