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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Feasibility of noninvasive measurement of deep brain temperature in newborn infants by multifrequency microwave radiometry
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Feasibility of noninvasive measurement of deep brain temperature in newborn infants by multifrequency microwave radiometry

机译:多频微波辐射法无创测量新生儿深部脑温的可行性

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摘要

Clinical studies of hypothermal neural rescue therapy for newborn infants who have suffered hypoxia-ischaemia are currently hindered by the difficulty in measuring deep brain temperature. This paper addresses: the specific requirements for this measurement problem, the design of a proposed radiometer system, a method for retrieving the temperature profile within the cooled head, and an estimation of the precision of the measurement of deep brain temperature using the technique. A five-frequency-band radiometer with a contact-type antenna operating within the range 1-4 GHz is proposed to obtain brightness temperatures corresponding to temperature profiles predicted by a realistic thermal model of the cooled baby head. The problems of retrieving the temperature profile from this set of brightness temperatures, and the estimation of its precision, are solved using a combination of model fitting and Monte Carlo techniques. The results of this paper show that the proposed technique is feasible, that it is expected to provide a good estimate of the temperature profile within the cooled baby-head, and that the estimated precision (2/spl sigma/) of the temperature measured in the deep brain structures is better than 0.8 K, depending upon the estimation procedure used.
机译:目前,由于难以测量深部脑温,因此阻碍了针对缺氧缺血性新生儿的低温神经挽救疗法的临床研究。本文解决了该测量问题的特定要求,拟议的辐射计系统的设计,用于获取冷却头内温度分布的方法以及使用该技术估算深部大脑温度的精度的方法。提出了一种具有在1-4 GHz范围内工作的接触式天线的五频带辐射计,以获取对应于由冷却的婴儿头的实际热模型预测的温度曲线的亮度温度。使用模型拟合和蒙特卡洛技术的组合,可以解决从这组亮度温度中检索温度分布图及其精度估算的问题。本文的结果表明,所提出的技术是可行的,有望为冷却后的婴儿头内的温度曲线提供良好的估计,并且在室温下测得的温度的估计精度(2 / spl sigma /)。根据所使用的估算程序,深层大脑结构优于0.8K。

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