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Computational laser intensity stabilisation for organic molecule concentration estimation in low-resource settings

机译:低资源环境中有机分子浓度估计的计算激光强度稳定

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An ideal laser is a useful tool for the analysis of biological systems. In particular, the polarization property of lasers can allow for the concentration of important organic molecules in the human body, such as proteins, amino acids, lipids, and carbohydrates, to be estimated. However, lasers do not always work as intended and there can be effects such as mode hopping and thermal drift that can cause time-varying intensity fluctuations. The causes of these effects can be from the surrounding environment, where either an unstable current source is used or the temperature of the surrounding environment is not temporally stable. This intensity fluctuation can cause bias and error in typical organic molecule concentration estimation techniques. In a low-resource setting where cost must be limited and where environmental factors, like unregulated power supplies and temperature, cannot be controlled, the hardware required to correct for these intensity fluctuations can be prohibitive. We propose a method for computational laser intensity stabilisation that uses Bayesian state estimation to correct for the time-varying intensity fluctuations from electrical and thermal instabilities without the use of additional hardware. This method will allow for consistent intensities across all polarization measurements for accurate estimates of organic molecule concentrations.
机译:理想的激光是分析生物系统的有用工具。特别地,激光的偏振性能可以允许估计人体中重要的有机分子中的重要有机分子,例如蛋白质,氨基酸,脂质和碳水化合物。然而,激光器并不总是按预期工作,并且可能有可能导致时变强度波动的模式跳跃和热漂移等效果。这些效果的原因可以来自周围环境,其中使用不稳定电流源或周围环境的温度在时间上不稳定。这种强度波动会导致典型有机分子浓度估计技术中的偏差和误差。在低资源环境中,在不必限制的成本和环境因素的情况下,不能控制不稳定的电源和温度,无法控制这些强度波动所需的硬件可能是禁止的。我们提出了一种用于计算激光强度稳定的方法,该方法使用贝叶斯状态估计来校正电气和热稳定性的时变强度波动而不使用额外的硬件。该方法将允许对所有极化测量的一致强度进行精确估计有机分子浓度。

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