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Transabdominal near infrared oximetry of hypoxic stress in fetal sheep brain in utero

机译:宫内胎儿绵羊脑缺氧应激的经腹近红外血氧饱和度测定

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摘要

The feasibility of transabdominal near-infrared (NIR) spectroscopy for detecting and quantifying fetal hypoxia in utero is demonstrated in a pregnant ewe model. A frequency domain NIR spectroscopy probe, consisting of two detectors and six sources operating at three wavelengths (675, 786, and 830 nm), was placed on the maternal abdomen directly above the fetal head. Fetal hypoxia was indirectly induced through occlusion of uterine blood flow for ≈3 min. NIR photon diffusion measurements were made during a baseline period, during hypoxia of the fetus, and during recovery. Fetal blood samples were drawn from the fetal brachial artery and jugular veins at several time points during the cycle. Seven hypoxic cycles were induced in a total of five pregnant ewes. The NIR measurements were analyzed by using a two-layer diffusion model to deconvolve the fetal blood saturation from that of the pregnant ewe. Fetal hypoxia was detected. Good agreement was found between fetal blood saturation determined by the transabdominal NIR method and arterial and venous fetal blood saturation quantified from fetal blood samples by using a hemoximeter.
机译:在怀孕的母羊模型中证明了经腹近红外(NIR)光谱检测和定量子宫内胎儿缺氧的可行性。频域近红外光谱探头由两个检测器和六个在三个波长(675、786和830 nm)下工作的光源组成,放置在胎头正上方的孕妇腹部上。胎儿缺氧是通过阻塞约3分钟的子宫血流间接引起的。在基线期间,胎儿缺氧期间和恢复期间进行NIR光子扩散测量。在周期中的几个时间点从胎儿肱动脉和颈静脉抽取胎儿血样。在总共五只怀孕的母羊中诱导了七个低氧循环。通过使用两层扩散模型对胎儿血液饱和度与怀孕母羊血液的饱和度进行反卷积,来分析NIR测量值。检测到胎儿缺氧。经腹NIR法测定的胎儿血饱和度与使用血氧计从胎儿血样中定量得到的动脉和静脉胎儿血饱和度之间发现了很好的一致性。

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