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Dual wavelength spread-spectrum time-resolved diffuse optical instrument for the measurement of human brain functional responses

机译:双波长扩频时间分辨漫反射光学仪表用于测量人脑功能响应

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摘要

Near-infrared spectroscopy has proven to be a valuable method to monitor tissue oxygenation and haemodynamics non-invasively and in real-time. Quantification of such parameters requires measurements of the time-of-flight of light through tissue, typically achieved using picosecond pulsed lasers, with their associated cost, complexity, and size. In this work, we present an alternative approach that employs spread-spectrum excitation to enable the development of a small, low-cost, dual-wavelength system using vertical-cavity surface-emitting lasers. Since the optimal wavelengths and drive parameters for optical spectroscopy are not served by commercially available modules as used in our previous single-wavelength demonstration platform, we detail the design of a custom instrument and demonstrate its performance in resolving haemodynamic changes in human subjects during apnoea and cognitive task experiments.
机译:近红外光谱已经证明是一种有价值的方法,用于监测组织氧合和血流动力学无侵入性和实时。这些参数的定量需要测量光通过组织的飞行时间,通常使用PICOSECOND脉冲激光器实现,其相关成本,复杂性和尺寸。在这项工作中,我们提出了一种采用扩频激励的替代方法,以使得能够使用垂直腔表面发射激光器的小,低成本,双波长系统的开发。由于我们以前的单波长演示平台中使用的商业上可用的模块不提供光谱的最佳波长和驱动参数,因此我们详细说明了定制仪器的设计,并证明了在呼吸暂停期间解决人类受试者的血液动力学变化的性能认知任务实验。

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