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Near-infrared fluorescence contrast-enhanced imaging with area illumination and area detection: the forward imaging problem

机译:具有区域照明和区域检测功能的近红外荧光对比度增强成像:正向成像问题

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摘要

Fluorescence frequency-domain photon migration measurements were acquired from tissue phantoms, each containing a fluorescent target, by means of area illumination and area detection on the same surface and for the first time, to our knowledge, compared with predictions computed with a numerical solution to the coupled photon diffusion equations. We accomplished area illumination and area detection using a planar, intensity-modulated excitation light source and a gain-modulated intensified charge-coupled device camera, respectively. A 1-ml vessel containing 1-μm solution of Indocyanine Green in 1% Liposyn was immersed 1 cm deep in each 512-ml tissue phantom. For most tissue phantoms, the background surrounding the 1-ml target was composed of Liposyn solution containing Indocyanine Green or 3,3'-Diethylthiatricarbocyanine Iodide such that the target-to-background ratio of fluorescence yield was ≥10:1. Measurements of fluorescence modulation amplitude and phase were predicted with a mean error ranging from 10.1% to 13.6% and 0.56° to 1.72°, respectively. These numbers are similar to those obtained by use of single-pixel frequency-domain photon migration techniques and validate the potential use of area illumination and area detection for biomedical imaging of tissues. Results also demonstrate that target-to-background ratios of fluorescence yield and fluorescence lifetime significantly affect target detectability.
机译:荧光频域光子迁移测量是从组织模体中获取的,每个模体均包含一个荧光靶标,这是通过我们在同一知识上首次通过面积照明和面积检测将其与数值解算得出的预测值进行了比较。耦合光子扩散方程。我们分别使用平面,强度调制的激发光源和增益调制的增强型电荷耦合器件相机完成了区域照明和区域检测。将1 ml容器(其中包含1-μm吲哚菁绿在1%Liposyn中的溶液)浸入每个512 ml组织模型中1 cm深。对于大多数组织体模,1 ml靶标周围的背景由含有吲哚菁绿或3,3'-二乙基硫杂烟酸菁碘化物的Liposyn溶液组成,因此靶标与背景的荧光产量比≥10:1。预测了荧光调制幅度和相位的测量,平均误差分别为10.1%至13.6%和0.56°至1.72°。这些数字类似于通过使用单像素频域光子迁移技术获得的数字,并验证了区域照明和区域检测在组织生物医学成像中的潜在用途。结果还表明,荧光产量和荧光寿命的目标背景比显着影响目标的可检测性。

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    《Applied optics》 |2003年第19期|共12页
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  • 正文语种 eng
  • 中图分类 光学;
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