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Evaluation the effect of acute hyperglycemia on cerebral tissue properties with diffuse optical imaging systems

机译:用漫射光学成像系统评估急性高血糖对脑组织特性的影响

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In this work, we demonstrate the application of two optical imaging systems namely, dual-wavelength laser speckle and integrated spatial frequency domain imaging systems to image the changes in mouse brain tissue properties following acute hyperglycemia. We assume that hyperglycemia alters brain function which in turn can be monitored using these two optical modalities. Hyperglycemia was induced by intraperitoneal injection of an anesthetic ketamine and xylazine combination which is found to increase blood glucose more than threefold relative to normoglycemia. A total of ten mice were used, randomized into two groups of normoglycemia (n = 4) and hyperglycemia (n = 6). Experimental results demonstrated reductions in cerebral blood flow, tissue oxygen saturation, and cerebral metabolic rate of oxygen following acute hyperglycemia. In addition, differences in both cerebral tissue optical properties (absorption and scattering) with increasing glucose level were observed. Overall, experimental result demonstrates the capability of both systems to provide and map various brain tissue metrics following hyperglycemia.
机译:在这项工作中,我们演示了两种光学成像系统,即双波长激光散斑和集成空间频域成像系统的应用,以对急性高血糖症后小鼠脑组织特性的变化进行成像。我们假设高血糖会改变大脑功能,而这又可以使用这两种光学方式进行监测。高血糖症是通过腹膜内注射氯胺酮和甲苯噻嗪的组合诱导的,发现与正常血糖相比,血糖的增加超过三倍。总共使用了十只小鼠,随机分为两组:正常血糖(n = 4)和高血糖症(n = 6)。实验结果表明,急性高血糖后脑血流量,组织氧饱和度和脑氧代谢率降低。此外,观察到随着葡萄糖水平的增加,两种脑组织的光学特性(吸收和散射)都不同。总体而言,实验结果证明了这两种系统在高血糖后提供和绘制各种脑组织指标的能力。

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