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In vivo real-time imaging of cutaneous hemoglobin concentration oxygen saturation scattering properties melanin content and epidermal thickness with visible spatially modulated light

机译:使用可见的空间调制光对皮肤血红蛋白浓度氧饱和度散射特性黑色素含量和表皮厚度进行体内实时成像

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摘要

We present the real-time single snapshot multiple frequency demodulation - spatial frequency domain imaging (SSMD-SFDI) platform implemented with a visible digital mirror device that is capable of imaging and monitoring dynamic turbid medium and processes over a large field of view. One challenge in quantitative imaging of biological tissue such as the skin is the complex structure rendering techniques based on homogeneous medium models to fail. To address this difficulty we have also developed a novel method that maps the layered structure to a homogeneous medium for spatial frequency domain imaging. The varying penetration depth of spatially modulated light on its wavelength and modulation frequency is used to resolve the layered structure. The efficacy of the real-time SSMD-SFDI platform and this two-layer model is demonstrated by imaging forearms of 6 healthy subjects under the reactive hyperemia protocol. The results show that our approach not only successfully decouples light absorption by melanin from that by hemoglobin and yields accurate determination of cutaneous hemoglobin concentration and oxygen saturation, but also provides reliable estimation of the scattering properties, the melanin content and the epidermal thickness in real time. Potential applications of our system in imaging skin physiological and functional states, cancer screening, and microcirculation monitoring are discussed at the end.
机译:我们介绍了使用可见数字镜设备实现的实时单快照多频解调-空间频域成像(SSMD-SFDI)平台,该设备能够在大视野内成像和监视动态浑浊介质和过程。生物组织(例如皮肤)的定量成像中的一项挑战是基于均质介质模型的复杂结构渲染技术将要失败。为了解决这个困难,我们还开发了一种新颖的方法,该方法将分层结构映射到用于空间频域成像的均匀介质。空间调制光在其波长和调制频率上变化的穿透深度用于解析分层结构。实时SSMD-SFDI平台和此两层模型的功效通过在反应性充血方案下对6名健康受试者的前臂进行成像来证明。结果表明,我们的方法不仅成功地将黑色素的吸收与血红蛋白的吸收解耦,并能准确测定皮肤的血红蛋白浓度和氧饱和度,而且可以实时可靠地估算散射特性,黑色素含量和表皮厚度。最后讨论了我们系统在皮肤生理和功能状态成像,癌症筛查和微循环监测中的潜在应用。

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