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Near-surface sensitivity suppression way for diffuse reflective optical tomography: simulation and a phantom study

机译:漫反射光学层析成像的近表面灵敏度抑制方法:仿真和幻像研究

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摘要

Diffuse reflective optical measurement is a useful approach for monitoring the oxygen consumption of living tissue such as brain and muscle. To improve the oxygen consumption measurement accuracy, we propose a method for suppressing the near-surface sensitivity. Diffuse reflective light is detected at the aperture used for irradiating the light and is used as a cancellation signal for near-field sensitivity in the conventional measurement scheme. Photon fluence density functions and positional dependences of detected light sensitivity to change in absorbance were simulated. The sensitivity detected at the same position (aperture) as irradiation was significantly high for the near-surface region. With our method, the near-surface sensitivity is reduced by more than 90% while keeping target sensitivity almost constant (only 3% deterioration). The near-surface and deep-field sensitivity was measured with a phantom with light (785 nm) modulated at 1 kHz through an optical fiber bundle. It confirmed suppressed the near-surface sensitivity by subtracting the light detected at the same aperture from the light detected at another aperture.
机译:漫反射光学测量是监测诸如大脑和肌肉等活体组织耗氧量的有用方法。为了提高氧气消耗量的测量精度,我们提出了一种抑制近表面灵敏度的方法。在传统的测量方案中,在用于照射光的孔处检测到漫反射光,并将其用作抵消信号,以用于近场灵敏度。模拟了光子通量密度函数和检测光灵敏度对吸光度变化的位置依赖性。对于近表面区域,在与辐照相同的位置(孔径)处检测到的灵敏度非常高。使用我们的方法,近表面灵敏度降低了90%以上,同时保持目标灵敏度几乎恒定(仅降低了3%)。用幻象通过光纤束以1 kHz调制的光(785 nm)调制了近表面和深场灵敏度。通过从在另一个孔中检测到的光中减去在相同孔中检测到的光,可以确认抑制了近表面灵敏度。

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