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Towards next generation time-domain diffuse optics devices

机译:朝着下一代时域漫射光学设备

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Diffuse Optics is growing in terms of applications ranging from e.g. oximetry, to mammography, molecular imaging, quality assessment of food and Pharmaceuticals, wood optics, physics of random media. Time-domain (TD) approaches, although appealing in terms of quantitation and depth sensibility, are presently limited to large fiber-based systems, with limited number of source-detector pairs. We present a miniaturized TD source-detector probe embedding integrated laser sources and single-photon detectors. Some electronics are still external (e.g. power supply, pulse generators, timing electronics), yet full integration on-board using already proven technologies is feasible. The novel devices were successfully validated on heterogeneous phantoms showing performances comparable to large state-of-the-art TD rack-based systems. With an investigation based on simulations we provide numerical evidence that the possibility to stack many TD compact source-detector pairs in a dense, null source-detector distance arrangement could yield on the brain cortex about 1 decade higher contrast as compared to a continuous wave (CW) approach. Further, a 3-fold increase in the maximum depth (down to 6 cm) is estimated, opening accessibility to new organs such as the lung or the heart. Finally, these new technologies show the way towards compact and wearable TD probes with orders of magnitude reduction in size and cost, for a widespread use of TD devices in real life.
机译:漫射光学是在应用范围从例如生长条件血氧仪,乳腺摄影,分子成像,食品,药品,木光学质量评估,随机介质的物理。时域(TD)接近,尽管在定量和深度感性方面具有吸引力,目前仅限于大型的基于光纤的系统,其中源 - 检测器对数受到限制。我们提出了一种小型化的TD源 - 检测器探头嵌入集成的激光源和单光子探测器。一些电子还在外部(例如电源,脉冲发生器,定时电子设备),但完全集成的板上使用已经成熟的技术是可行的。新颖的装置进行了成功地验证异构幻影示出表演媲美状态的最先进的大基于机架TD系统。与基于模拟调查我们提供数值的证据表明,可能性堆叠许多TD紧凑源 - 检测器对在一个高密度,空源 - 检测器距离安排可能相比于连续波上约1个十年更高的对比度的大脑皮质得到( CW)的方法。此外,在最大深度的3倍的增加(下降至6厘米)进行估计,开口可接近新器官如肺或心脏。最后,这些新技术显示出对在尺寸和成本降低幅度订单紧凑耐磨TD探头的方式,在现实生活中广泛应用TD设备。

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