Suppr超能文献

通过关联铟镓砷/磷化铟单光子探测器的信号,实现了超越水峰的漫散射相关光谱。

Diffuse Correlation Spectroscopy Beyond the Water Peak Enabled by Cross-Correlation of the Signals From InGaAs/InP Single Photon Detectors.

出版信息

IEEE Trans Biomed Eng. 2022 Jun;69(6):1943-1953. doi: 10.1109/TBME.2021.3131353. Epub 2022 May 19.

Abstract

OBJECTIVE

Diffuse correlation spectroscopy (DCS) is an optical technique that allows for the non-invasive measurement of blood flow. Recent work has shown that utilizing longer wavelengths beyond the traditional NIR range provides a significant improvement to signal-to-noise ratio (SNR). However, current detectors both sensitive to longer wavelengths and suitable for clinical applications (InGaAs/InP SPADs) suffer from suboptimal afterpulsing and dark noise characteristics. To overcome these barriers, we introduce a cross correlation method to more accurately recover blood flow information using InGaAs/InP SPADs.

METHODS

Two InGaAs/InP SPAD detectors were used for during in vitro and in vivo DCS measurements. Cross correlation of the photon streams from each detector was performed to calculate the correlation function. Detector operating parameters were varied to determine parameters which maximized measurement SNR.State-space modeling was performed to determine the detector characteristics at each operating point.

RESULTS

Evaluation of detector characteristics was performed across the range of operating conditions. Modeling the effects of the detector noise on the correlation function provided a method to correct the distortion of the correlation curve, yielding accurate recovery of flow information as confirmed by a reference detector.

CONCLUSION

Through a combination of cross-correlation of the signals from two detectors, model-based characterization of detector response, and optimization of detector operating parameters, the method allows for the accurate estimation of the true blood flow index.

SIGNIFICANCE

This work presents a method by which DCS can be performed at longer NIR wavelengths with existing detector technology, taking advantage of the increased SNR.

摘要

目的

漫反射相关光谱(DCS)是一种允许非侵入性测量血流的光学技术。最近的工作表明,利用传统近红外范围之外的更长波长可以显著提高信噪比(SNR)。然而,当前的探测器既对长波长敏感,又适合临床应用(InGaAs/InP SPAD),但存在后脉冲和暗噪声特性不理想的问题。为了克服这些障碍,我们引入了一种交叉相关方法,使用 InGaAs/InP SPAD 更准确地恢复血流信息。

方法

在体外和体内 DCS 测量中使用了两个 InGaAs/InP SPAD 探测器。对每个探测器的光子流进行交叉相关,以计算相关函数。改变探测器的工作参数,以确定最大程度提高测量 SNR 的参数。对状态空间模型进行了分析,以确定每个工作点的探测器特性。

结果

在各种工作条件下对探测器特性进行了评估。通过对探测器噪声对相关函数的影响进行建模,提供了一种校正相关曲线失真的方法,通过参考探测器对准确恢复流量信息进行了验证。

结论

通过对两个探测器的信号进行交叉相关、基于模型的探测器响应特性的描述以及优化探测器的工作参数,该方法可以准确估计真实的血流指数。

意义

这项工作提出了一种方法,利用现有的探测器技术,在更长的近红外波长下进行 DCS 测量,利用增加的 SNR。

相似文献

引用本文的文献

本文引用的文献

1
Superconducting nanowire single-photon sensing of cerebral blood flow.基于超导纳米线的脑血流单光子传感
Neurophotonics. 2021 Jul;8(3):035006. doi: 10.1117/1.NPh.8.3.035006. Epub 2021 Aug 19.
6
High-sensitivity multispeckle diffuse correlation spectroscopy.高灵敏度多散斑扩散相关光谱学
Neurophotonics. 2020 Jul;7(3):035010. doi: 10.1117/1.NPh.7.3.035010. Epub 2020 Sep 26.

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验