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Non-invasive, MRI-compatible fibreoptic device for functional near-IR reflectometry of human brain

机译:非侵入性,MRI兼容的光纤设备,用于人脑功能近红外反射测量

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摘要

A non-invasive device for measuring blood oxygen variations in human brain is designed, implemented, and tested for MRI compatibility. The device is based on principles of near-IR reflectometry; power LEDs serve as sources of probing radiation delivered to patient skin surface through optical fibres. Numerical Monte Carlo simulations of probing radiation propagation in a multilayer brain model are performed to evaluate signal levels at different source - detector separations at three operation wavelengths and an additional wavelength of 915 nm. It is shown that the device can be applied for brain activity studies using power LEDs operating at 830 and 915 nm, while employment of wave-length of 660 nm requires an increased probing power. Employment of the wavelength of 592 nm in the current configuration is unreasonable.
机译:设计,实施和测试了用于测量人脑中血氧变化的非侵入性设备的MRI兼容性。该设备基于近红外反射法原理;大功率LED用作探测通过光纤传递到患者皮肤表面的辐射源。执行了多层大脑模型中探测辐射传播的数值蒙特卡洛模拟,以评估在三个操作波长和915 nm的附加波长下不同源-检测器间距下的信号电平。结果表明,该装置可用于工作在830和915 nm的功率LED进行脑活动研究,而使用660 nm的波长则需要增加探测功率。在当前配置中采用592 nm的波长是不合理的。

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