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首页> 外文期刊>Journal of innovative optical health sciences >MINIMIZING EXCITATION LIGHT LEAKAGE AND MAXIMIZING MEASUREMENT SENSITIVITY FOR MOLECULAR IMAGING WITH NEAR-INFRARED FLUORESCENCE
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MINIMIZING EXCITATION LIGHT LEAKAGE AND MAXIMIZING MEASUREMENT SENSITIVITY FOR MOLECULAR IMAGING WITH NEAR-INFRARED FLUORESCENCE

机译:近红外荧光最小化激发光泄漏和最大测量灵敏度

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Near-infrared fluorescence (NIRF) imaging involves the separation of weak fluorescence signals from backscattered excitation light. The measurement sensitivity of current NIRF imaging systems is limited by the excitation light leakage through rejection filters. In this contribution, the authors demonstrate that the excitation light leakage can be suppressed upon using appropriate filter combination and permutations. The excitation light leakage and measurement sensitivity were assessed and compared in this study by computing the transmission ratios of excitation to emission light collected and the signal-to-noise ratios in well-controlled phantom studies with different filter combinations and permutations. Using appropriate filter combinations and permutations, we observe as much as two orders of magnitude reduction in the transmission ratio and higher signal-to-noise ratio.
机译:近红外荧光(NIRF)成像涉及从反向散射激发光中分离微弱的荧光信号。当前的NIRF成像系统的测量灵敏度受到通过抑制滤波器泄漏的激发光的限制。在这一贡献中,作者证明了通过使用适当的滤波器组合和排列可以抑制激发光泄漏。在本研究中,通过计算在不同滤镜组合和排列下控制良好的幻像研究中的激发与发射光的透射比以及信噪比,评估并比较了激发光泄漏和测量灵敏度。使用适当的滤波器组合和置换,我们观察到传输率和更高的信噪比降低了两个数量级。

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