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High spatial resolution identification of hematoma in inhomogeneous head phantom using broadband fNIR system

机译:宽带fNIR系统高分辨率分辨异质头颅血肿

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摘要

This paper presents a novel method for early detection of hematomas using highly sensitive optical fNIR imaging methods based on broadband photon migration. The NIR experimental measurements of inhomogeneous multi-layer phantoms representing human head are compared to 3D numerical modeling over broadband frequencies of 30–1000 MHz. A finite element method (FEM) simulation of the head phantom are compared to measurements of insertion loss and phase using custom-designed broadband free space optical transmitter (Tx) and receiver (Rx) modules that are developed for photon migration at wavelengths of 670 nm, 795 nm, 850 nm, though results of 670 nm are discussed here. Standard error is used to compute error between 3D FEM modeling and experimental measurements by fitting experimental data to the afrequency+b. Error results are shown at narrowband and broadband frequency modulation in order to have confidence in 3D numerical modeling. A novel method is established here to identify presence of hematoma based on first and second derivatives of changes in insertion loss and phase (∆IL and ∆IP), where frequency modulated photons sensitive to different sizes of hematoma is identified for wavelength of 670 nm. The high accuracy of this comparison provides confidence in optical bio-imaging and its eventual application to TBI detection.
机译:本文提出了一种基于宽带光子迁移的高灵敏度光学fNIR成像方法,用于早期发现血肿的新方法。将代表人头的不均匀多层体模的NIR实验测量结果与30-1000 MHz宽带频率上的3D数值模型进行了比较。使用定制设计的宽带自由空间光发射器(Tx)和接收器(Rx)模块,将头部幻影的有限元方法(FEM)模拟与插入损耗和相位的测量进行了比较,这些模块是为在670 nm波长下进行光子迁移而开发的,795 nm,850 nm,尽管此处讨论了670 nm的结果。通过将实验数据拟合到 a 频率 + b 。错误结果显示在窄带和宽带频率调制上,以便对3D数值建模有信心。根据插入损耗和相位变化的一阶和二阶导数(∆IL和∆IP),在此建立一种新方法来识别血肿是否存在,其中对波长为670 nm的血肿大小敏感的调频光子被识别出来。这种比较的高精度为光学生物成像及其最终应用于TBI检测提供了信心。

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