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首页> 外文期刊>Journal of Biophotonics >In vivo noninvasive visualization of retinal perfusion dysfunction in murine cerebral malaria by camera-phone laser speckle imaging
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In vivo noninvasive visualization of retinal perfusion dysfunction in murine cerebral malaria by camera-phone laser speckle imaging

机译:通过相机手机激光散斑成像在鼠脑疟疾中的视网膜灌注功能障碍的体内非侵袭性

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Cerebral malaria (CM) is a severe complication of Plasmodium falciparum infection associated with impaired cerebral blood flow. Visualization of the eye vasculature, which is embryologically derived from that of the brain, is used clinically to diagnose the syndrome. Here, we introduce camera-phone laser speckle imaging as a new tool for in vivo, noncontact two-dimensional mapping of blood flow dynamics in the experimental cerebral malaria (ECM) murine model of Plasmodium berghei ANKA. In a longitudinal study, we show that the camera-phone imager can detect an overall decrease in the retinal blood-flow-speed (BFS) as ECM develops in P. berghei ANKA infected mice, with no similar change observed in uninfected control mice or mice infected with a non-ECM inducing strain (P. berghei NK65). Furthermore, by analyzing relative alterations in the BFS of individual retinal vessels during the progression of ECM, we illustrate the strength of our imager in identifying different BFS-change heterogeneities in the retinas of ECM and uninfected mice. The technique creates new possibilities for objective investigations into the diagnosis and pathogenesis of CM noninvasively through the eye. The camera-phone laser speckle imager along with measured spatial blood perfusion maps of the retina of a mouse infected with P. berghei ANKA-a fatal ECM model-on different days during the progression of the infection (top, day 3 after infection; middle, day 5 after infection; and bottom, day 7 after infection).
机译:脑疟疾(cm)是与脑血流量受损相关的恶性疟原虫感染的严重并发症。在临床上使用胚胎血管系统的可视化,其胚胎源自大脑的源自脑源性。诊断综合症。在这里,我们将相机电话激光散斑成像介绍为体内的新工具,在Plasmodium Berghei Anka的实验性脑病(ECM)鼠模型中的血流动力学的非接触式二维测绘。在一个纵向研究中,我们表明相机电话成像仪可以检测视网膜血流速度(BFS)的总体减少,因为ECM在P. Berghei Anka感染的小鼠中发育,在未感染的对照小鼠中没有观察到类似的变化用非ECM诱导菌株感染的小鼠(P. Berghei NK65)。此外,通过在ECM的进展期间分析各种视网膜血管的BFS中的相对改变,我们说明了我们的成像器在鉴定ECM和未感染的小鼠视息中的不同BFS变化异质性时的强度。该技术为客观调查创造了新的可能性,以通过眼睛无血管诊断和发病机制。相机 - 手机激光散斑成像仪以及测量的鼠标视网膜血液灌注图,该鼠标的鼠标视网膜感染P. B​​erghei Anka-A致命的ECM模型 - 在感染进展过程中(感染后的第3天,第3天;中间,第5天感染后;和底部,第7天感染后)。

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