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First experience imaging short-wave infrared fluorescence in a large animal: indocyanine green angiography of a pig brain

机译:对大型动物进行短波红外荧光成像的首次体验:猪脑的吲哚菁绿血管造影

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摘要

The potential to image subsurface fluorescent contrast agents at high spatial resolution has facilitated growing interest in short-wave infrared (SWIR) imaging for biomedical applications. The early but growing literature showing improvements in resolution in small animal models suggests this is indeed the case, yet to date, images from larger animal models that more closely recapitulate humans have not been reported. We report the first imaging of SWIR fluorescence in a large animal model. Specifically, we imaged the vascular kinetics of an indocyanine green (ICG) bolus injection during open craniotomy of a mini-pig using a custom SWIR imaging instrument and a clinical-grade surgical microscope that images ICG in the near-infrared-I (NIR-I) window. Fluorescence images in the SWIR were observed to have higher spatial and contrast resolutions throughout the dynamic sequence, particularly in the smallest vessels. Additionally, vessels beneath a surface pool of blood were readily visualized in the SWIR images yet were obscured in the NIR-I channel. These first-in-large-animal observations represent an important translational step and suggest that SWIR imaging may provide higher spatial and contrast resolution images that are robust to the influence of blood.
机译:在高空间分辨率下对地下荧光造影剂成像的潜力已经促进了对生物医学应用的短波红外(SWIR)成像的兴趣。早期但不断增长的文献表明,小动物模型的分辨率有所提高,这确实是事实,但迄今为止,尚未报道较大动物模型更能概括人类的图像。我们报告了在大型动物模型中SWIR荧光的首次成像。具体来说,我们使用定制的SWIR成像仪和临床级手术显微镜对微型猪的开放性开颅手术中的吲哚菁绿(ICG)大剂量注射成像进行了血管动力学成像,该显微镜在近红外I(NIR-我)窗口。在整个动态序列中,特别是在最小的血管中,观察到SWIR中的荧光图像具有较高的空间和对比度分辨率。另外,在SWIR图像中很容易看到地下血池下面的血管,但在NIR-1通道中却被遮盖了。这些头等大动物的观察结果代表了一个重要的平移步骤,并表明SWIR成像可提供更高的空间分辨率和对比度分辨率图像,这些图像对血液的影响具有鲁棒性。

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