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Towards a wearable near infrared spectroscopic probe for monitoring concentrations of multiple chromophores in biological tissue in vivo

机译:迈向可穿戴式近红外光谱探针以监测体内生物组织中多种发色团的浓度

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摘要

The first wearable multi-wavelength technology for functional near-infrared spectroscopy has been developed, based on a custom-built 8-wavelength light emitting diode (LED) source. A lightweight fibreless probe is designed to monitor changes in the concentrations of multiple absorbers (chromophores) in biological tissue, the most dominant of which at near-infrared wavelengths are oxyhemoglobin and deoxyhemoglobin. The use of multiple wavelengths enables signals due to the less dominant chromophores to be more easily distinguished from those due to hemoglobin and thus provides more complete and accurate information about tissue oxygenation, hemodynamics, and metabolism. The spectroscopic probe employs four photodiode detectors coupled to a four-channel charge-to-digital converter which includes a charge integration amplifier and an analogue-to-digital converter (ADC). Use of two parallel charge integrators per detector enables one to accumulate charge while the other is being read out by the ADC, thus facilitating continuous operation without dead time. The detector system has a dynamic range of about 80 dB. The customized source consists of eight LED dies attached to a 2 mm × 2 mm substrate and encapsulated in UV-cured epoxy resin. Switching between dies is performed every 20 ms, synchronized to the detector integration period to within 100 ns. The spectroscopic probe has been designed to be fully compatible with simultaneous electroencephalography measurements. Results are presented from measurements on a phantom and a functional brain activation study on an adult volunteer, and the performance of the spectroscopic probe is shown to be very similar to that of a benchtop broadband spectroscopy system. The multi-wavelength capabilities and portability of this spectroscopic probe will create significant opportunities for in vivo studies in a range of clinical and life science applications.
机译:基于定制的8波长发光二极管(LED)光源,已经开发出了第一项用于功能性近红外光谱的可穿戴多波长技术。一种轻巧的无纤维探针旨在监测生物组织中多种吸收剂(生色团)的浓度变化,其中最主要的近红外波长是氧合血红蛋白和脱氧血红蛋白。多个波长的使用使由较少的主要生色团引起的信号与由血红蛋白引起的信号更容易区分,从而提供有关组织氧合,血液动力学和代谢的更完整和准确的信息。该光谱探针采用了四个光电二极管检测器,这些检测器耦合到一个四通道电荷数字转换器,该电荷转换器包括电荷积分放大器和模数转换器(ADC)。每个检测器使用两个并联的电荷积分器,一个可以积累电荷,而另一个则可以被ADC读出,从而有利于连续工作而没有死区时间。探测器系统的动态范围约为80 dB。定制光源包括八个LED裸片,它们附着在2 mm×2 mm的基板上,并封装在UV固化环氧树脂中。芯片之间的切换每20 ms执行一次,与检测器积分周期同步到100 ns之内。光谱探头设计为与同步脑电图测量完全兼容。结果来自幻像的测量结果和成人志愿者的大脑功能激活研究,光谱探头的性能与台式宽带光谱系统非常相似。这种光谱探针的多波长能力和便携性将为一系列临床和生命科学应用中的体内研究创造大量机会。

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