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Oxygen saturation in free-diving whales: optical sensor development

机译:自由潜水鲸鱼中的氧饱和度:光学传感器的发展

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Mass stranding of live whales has been explained by proposing many natural or human-related causes. Recent necropsy reports suggest a link between the mass stranding of beaked whales and the use of naval mid-frequency sonar. Surprisingly, whales have experienced symptoms similar to those caused by inert gas bubbles in human divers. Our goal is to develop a compact optical sensor to monitor the consumption of the oxygen stores in the muscle of freely diving whales. To this end we have proposed the use of a near-infrared phase-modulated frequency-domain spectrophotometer, in reflectance mode, to probe tissue oxygenation. Our probe consists of three main components: radiofrequency (RF) modulated light sources, a high-bandwidth avalanche photodiode with transimpedance amplifier, and a RF gain and phase detector. In this work, we concentrate on the design and performance of the light sensor, and its corresponding amplifier unit. We compare three state-of-the-art avalanche photodiodes: one through-hole device and two surface-mount detectors. We demonstrate that the gain due to the avalanche effect differs between sensors. The avalanche gain near maximum bias of the through-hole device exceeds by a factor of 2.5 and 8.3 that of the surface-mount detectors. We present the behavior of our assembled through-hole detector plus high-bandwidth transimpedance amplifier, and compare its performance to that of a commercially available module. The assembled unit enables variable gain, its phase noise is qualitatively lower, and the form factor is significantly smaller. Having a detecting unit that is compact, flexible, and functional is a milestone in the development of our tissue oxygenation tag.
机译:通过提出许多自然或与人类有关的原因,可以解释活鲸的大规模搁浅。最近的尸检报告表明,喙鲸的大规模搁浅与海军中频声纳的使用之间存在联系。令人惊讶的是,鲸鱼经历的症状类似于人类潜水员中惰性气体气泡所引起的症状。我们的目标是开发一种紧凑的光学传感器,以监测自由潜水鲸鱼肌肉中氧气存储的消耗。为此,我们提出了在反射模式下使用近红外相位调制频域分光光度计来探测组织氧合的方法。我们的探头包括三个主要组件:射频(RF)调制光源,带互阻放大器的高带宽雪崩光电二极管以及RF增益和相位检测器。在这项工作中,我们专注于光传感器及其相应的放大器单元的设计和性能。我们比较了三种最先进的雪崩光电二极管:一个通孔设备和两个表面贴装探测器。我们证明了由于雪崩效应引起的增益在传感器之间是不同的。通孔器件的最大偏置附近的雪崩增益超过表面安装检测器的雪崩增益的2.5倍和8.3倍。我们介绍了组装好的通孔检测器和高带宽跨阻放大器的性能,并将其性能与市售模块的性能进行了比较。组装后的单元可实现可变增益,其相位噪声在质量上较低,并且外形尺寸明显较小。具有紧凑,灵活且功能强大的检测单元是我们组织氧合标签发展的一个里程碑。

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