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Real-time, profile-corrected single snapshot imaging of optical properties

机译:实时,轮廓校正的光学特性单快照成像

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A novel acquisition and processing method that enables real-time, single snapshot of optical properties (SSOP) and 3-dimensional (3D) profile measurements in the spatial frequency domain is described. This method makes use of a dual sinusoidal wave projection pattern permitting to extract the DC and AC components in the frequency domain to recover optical properties as well as the phase for measuring the 3D profile. In this method, the 3D profile is used to correct for the effect of sample’s height and angle and directly obtain profile-corrected absorption and reduced scattering maps from a single acquired image. In this manuscript, the 3D-SSOP method is described and validated on tissue-mimicking phantoms as well as in vivo, in comparison with the standard profile-corrected SFDI (3D-SFDI) method. On average, in comparison with 3D-SFDI method, the 3D-SSOP method allows to recover the profile within 1.2mm and profile-corrected optical properties within 12% for absorption and 6% for reduced scattering over a large field-of-view and in real-time.
机译:描述了一种新颖的获取和处理方法,该方法能够在空间频域中实现光学特性(SSOP)和3维(3D)轮廓测量的实时,单个快照。该方法利用双正弦波投影图案,允许在频域中提取DC和AC分量,以恢复光学特性以及用于测量3D轮廓的相位。在这种方法中,3D轮廓用于校正样品的高度和角度的影响,并从单个采集的图像直接获取轮廓校正的吸收图和减少的散射图。与标准的轮廓校正SFDI(3D-SFDI)方法相比,本手稿中描述了3D-SSOP方法并在模仿组织的模型上以及在体内进行了验证。平均而言,与3D-SFDI方法相比,3D-SSOP方法可在1.2mm范围内恢复轮廓,在大视野范围内可将轮廓校正的光学特性吸收在12%之内,将散射校正在6%之内,以减少散射。实时。

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