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Comparison of NIR Versus SWIR Fluorescence Image Device Performance Using Working Standards Calibrated With SI Units

机译:NIR与SWIR荧光图像设备性能的比较使用与SI单元校准的工作标准

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Recently, fluorescence imaging using shortwave infrared light (SWIR, 1,000-2,000 nm) has been proposed as having advantage over conventional near-infrared fluorescence (NIRF) imaging due to the reduced tissue scattering, negligible autofluorescence, comparable tissue absorption, and the discovery that indocyanine green (ICG), used clinically as a NIRF contrast agent, also has fluorescence emission in SWIR regime. Images of ICG in small animals acquired by commercial Si-based and InGaAs-based imaging cameras have been qualitatively compared, however the lack of working standards to quantify performance of these imaging systems limits quantitative comparison. Without quantification using a traceable in vitro test, clinical adoption of rapidly evolving advances in both NIRF and SWIR imaging devices will become limited. In this work, we developed an ICG based fluorescent solid working standard calibrated with SI units (mW.cm(-2).sr(-1)) for quantification of measurement sensitivity of Si, GaAs-intensified Si, and InGaAs based camera systems, their signal-to-noise ratio (SNR), and contrast in non-clinical tests. In addition, we present small animal and large animal imaging with ICG for qualitative comparison of the same SWIR fluorescence and NIRF imaging systems. Results suggest that SWIR fluorescence imaging of ICG may have superior resolution in small animal imaging compared to NIRF imaging, but lack of measurement sensitivity, SNR, contrast, as well as water absorption limits deep penetration in large animals.
机译:最近,已经提出了使用短波红外光(SWIR,1,000-2,000nm)的荧光成像作为具有由于减少的组织散射而在传统的近红外荧光(NIRF)成像上具有优势,可忽略的自发荧光,可忽略的自发荧光,可相当的组织吸收和发现吲哚菁绿(ICG),临床上作为NIRF造影剂,在恶棍制度中也具有荧光发射。比较了由商业SI的和基于InGaAs的成像相机获得的小型动物的ICG图像已经定性地比较,然而缺乏计算这些成像系统的性能的工作标准限制了定量比较。在不使用可追溯的体外测试的情况下进行量化,临床采用NIRF和SWIR成像装置的快速发展进步将受到限制。在这项工作中,我们开发了一种基于ICG的荧光固体工作标准,用SI单元(MW.CM(-2).sr(-1))进行校准,用于定量Si,GaAs-Consified Si和基于Ingaas的相机系统的测量敏感性,它们的信噪比(SNR)和非临床测试中的对比度。此外,我们用ICG呈现小型动物和大型动物成像,用于同一荧光荧光和NIRF成像系统的定性比较。结果表明,与NIRF成像相比,ICG的SWIR荧光成像可能在小动物成像中具有卓越的分辨率,但缺乏测量灵敏度,SNR,对比度以及吸水率限制大型动物的深层渗透。

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