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A real-time spectral mapper as an emerging diagnostic technology in biomedical sciences

机译:实时频谱映射器作为生物医学科学中的新兴诊断技术

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Real time spectral imaging and mapping at video rates can have tremendous impact not only on diagnostic sciences but also on fundamental physiological problems. We report the first real-time spectral mapper based on the combination of snap-shot spectral imaging and spectral estimation algorithms. Performance evaluation revealed that six band imaging combined with the Wiener algorithm provided high estimation accuracy, with error levels lying within the experimental noise. High accuracy is accompanied with much faster, by 3 orders of magnitude, spectral mapping, as compared with scanning spectral systems. This new technology is intended to enable spectral mapping at nearly video rates in all kinds of dynamic bio-optical effects as well as in applications where the target-probe relative position is randomly and fast changing.
机译:以视频速率进行实时光谱成像和制图不仅会对诊断科学产生重大影响,而且还会对基本生理问题产生巨大影响。我们报告基于快照光谱成像和光谱估计算法相结合的第一个实时光谱映射器。性能评估表明,六波段成像与维纳算法相结合可提供较高的估计精度,并且误差水平在实验噪声之内。与扫描光谱系统相比,高精度伴随着光谱映射速度提高了3个数量级。这项新技术旨在在各种动态生物光学效果以及目标探针相对位置随机且快速变化的应用中以近视频速率进行光谱映射。

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