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Tomographic imaging of oxygen by phosphorescence lifetime

机译:通过磷光寿命对氧气进行层析成像

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Imaging of oxygen in tissue in three dimensions can be accomplished by using the phosphorescence quenching method in combination with diffuse optical tomography. We experimentally demonstrate the feasibility of tomographic imaging of oxygen by phosphorescence lifetime. Hypoxic phantoms were immersed in a cylinder with scattering solution equilibrated with air. The phantoms and the medium inside the cylinder contained near-infrared phosphorescent probe(s). Phosphorescence at multiple boundary sites was registered in the time domain at different delays (t_(d)) following the excitation pulse. The duration of the excitation pulse (t_(p)) was regulated to optimize the contrast in the images. The reconstructed integral intensity images, corresponding to delays t_(d), were fitted exponentially to give the phosphorescence lifetime image, which was converted into the three-dimensional image of oxygen concentrations in the volume. The time-independent diffusion equation and the finite element method were used to model the light transport in the medium. The inverse problem was solved by the recursive maximum entropy method. We provide what we believe to be the first example of oxygen imaging in three dimensions using long-lived phosphorescent probes and establish the potential of these probes for diffuse optical tomography.
机译:通过使用磷光猝灭法结合扩散光学层析成像技术,可以在三个维度上完成组织中氧气的成像。我们通过实验证明了通过磷光寿命对氧气进行层析成像的可行性。将缺氧体模浸入装有空气平衡的散射溶液的圆柱体中。圆柱体中的体模和介质包含近红外磷光探针。在激发脉冲之后,在不同的延迟时间(t_(d))在时域中记录了多个边界部位的磷光。调节激发脉冲的持续时间(t_(p))以优化图像中的对比度。将对应于延迟t_(d)的重建积分强度图像按指数拟合,以给出磷光寿命图像,该图像转换为体积中氧浓度的三维图像。使用与时间无关的扩散方程和有限元方法对介质中的光传输进行建模。通过递归最大熵方法解决了反问题。我们提供了我们认为是使用长寿命磷光探针进行三维氧成像的第一个示例,并确定了这些探针在漫射光学层析成像中的潜力。

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