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Computational circular dichroism estimation for point-of-care diagnostics via vortex half-wave retarders

机译:通过涡旋半波延迟器对护理点诊断的计算循环二分思估计

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Observing the circular dichroism (CD) caused by organic molecules in biological fluids can provide powerful indicators of patient health and provide diagnostic clues for treatment. Methods for this kind of analysis involve tabletop devices that weigh tens of kilograms with costs on the order of tens of thousands of dollars, making them prohibitive in point-of-care diagnostic applications. In an effort to reduce the size, cost, and complexity of CD estimation systems for point-of-care diagnostics, we propose a novel method for CD estimation that leverages a vortex half-wave retarder in between two linear polarizers and a two-dimensional photodetector array to provide an overall complexity reduction in the system. This enables the measurement of polarization variations across multiple polarizations after they interact with a biological sample, simultaneously, without the need for mechanical actuation. We further discuss design considerations of this methodology in the context of practical applications to point-of-care diagnostics.
机译:观察由生物液中有机分子引起的圆形二中间态(CD)可以提供强大的患者健康指标,并提供诊断线索治疗。这种分析的方法涉及桌面器件,称重数万美元的成本数十万美元,使它们在护理点诊断应用中占据了巨大的。为了减少CD估计系统的CD估计系统的尺寸,成本和复杂性,我们提出了一种用于CD估计的新方法,其利用两个线性偏振器和二维之间的涡流半波延迟器。光电探测器阵列提供系统的整体复杂性。这使得能够在与生物样品相互作用之后测量跨多个偏振的偏振变化,而不需要机械致动。我们进一步讨论了在实际应用程序到护理点诊断的背景下对该方法的设计考虑因素。

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