首页> 外文会议>Engineering in Medicine and Biology Society, 1998. Proceedings of the 20th Annual International Conference of the IEEE >Fluorescence-based implantable biosensors: Monte Carlo modeling for optical probe design
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Fluorescence-based implantable biosensors: Monte Carlo modeling for optical probe design

机译:基于荧光的可植入生物传感器:用于光学探针设计的蒙特卡洛建模

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Implantable fluorescent sensors may be an attractive solution to the monitoring of many parameters of biomedical interest. A Monte Carlo simulation of photon propagation through human skin and interaction with a subcutaneous fluorescent sensing layer is presented. Results pre analyzed with respect to output light intercity as a function of distance from source, input-to-output characteristics, and single-photon versus dual-photon excitation. The results indicate that radial fluorescence emission profile is broad compared to the diffusely reflected input light. Response intensity has an approximately logarithmic relationship with sensor thickness. Estimated values for tissue autofluorescence quantum yield lead to an approximately inverse relationship between sensor signal-to-noise ratio. One-photon excitation exhibits higher per-photon yield than two-photon excitation.
机译:植入式荧光传感器可能是监测许多生物医学参数的诱人解决方案。提出了蒙特卡罗模拟的光子在人体皮肤中传播以及与皮下荧光传感层相互作用的过程。预先分析了关于输出光的城域性的结果,该结果是距光源的距离,输入到输出特性以及单光子与双光子激发的函数。结果表明,与漫反射的输入光相比,径向荧光发射曲线较宽。响应强度与传感器厚度近似成对数关系。组织自发荧光量子产率的估计值导致传感器信噪比之间大致成反比关系。单光子激发比双光子激发表现出更高的每光子产率。

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