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Quantitative effect of the neonatal fontanel on synthetic near infrared spectroscopy measurements

机译:新生儿font对合成近红外光谱测量的定量影响

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摘要

Near infrared spectroscopy (NIRS) is a functional imaging technique allowing measurement of local cerebral oxygenation. This modality is particularly adapted to critically ill neonates, as it can be used at the bedside and is a suitable and noninvasive tool for carrying out longitudinal studies. However, NIRS is sensitive to the imaged medium and consequently to the optical properties of biological tissues in which photons propagate. In this study, the effect of the neonatal fontanel was investigated by predicting photon propagation using a probabilistic Monte Carlo approach. Two anatomical newborn head models were created from computed tomography and magnetic resonance images: (1) a realistic model including the fontanel tissue and (2) a model in which the fontanel was replaced by skull tissue. Quantitative change in absorption due to simulated activation was compared for the two models for specific regions of activation and optical arrays simulated in the temporal area. A correction factor was computed to quantify the effect of the fontanel and defined by the ratio between the true and recovered change. The results show that recovered changes in absorption were more precise when determined with the anatomical model including the fontanel. The results suggest that the fontanel should be taken into account in quantification of NIRS responses to avoid misinterpretation in experiments involving temporal areas, such as language or auditory studies. Hum Brain Mapp, 2013. © 2011 Wiley Periodicals, Inc.
机译:近红外光谱(NIRS)是一种功能成像技术,可用于测量局部脑氧合。这种方式特别适用于危重新生儿,因为它可以在床边使用,并且是进行纵向研究的合适且非侵入性的工具。但是,NIRS对成像介质敏感,因此对光子在其中传播的生物组织的光学特性敏感。在这项研究中,通过使用概率蒙特卡洛方法预测光子的传播来研究新生儿font的效果。根据计算机断层扫描和磁共振图像创建了两个解剖学的新生儿头部模型:(1)包括the门组织的现实模型,以及(2)用颅骨组织代替font门的模型。比较了两个模型在特定区域的激活和在时域中模拟的光学阵列的模拟激活引起的吸收量的变化。计算校正因子以量化the的效果,并由真实变化与恢复变化之间的比率定义。结果表明,用包括the石在内的解剖模型确定吸收的吸收变化更为精确。结果表明,在定量NIRS反应时应考虑the门,以免在涉及语言或听觉研究等时域性实验中产生误解。嗡嗡声脑图,2013年。©2011 Wiley Periodicals,Inc.

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