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首页> 外文期刊>Nature reviews Cancer >An Optical Fiber Transducer for Measuring Kinetics of Skull-Brain Interaction in a Surrogate Model of the Human Head Subjected to Blast Overpressure
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An Optical Fiber Transducer for Measuring Kinetics of Skull-Brain Interaction in a Surrogate Model of the Human Head Subjected to Blast Overpressure

机译:一种光纤换能器,用于测量人头替代模型中的颅脑相互作用动力学进行爆炸超压

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摘要

This paper presents the development and validation of an in-fiber Bragg grating (FBG) transducer for measuring skull-brain kinetics within a surrogate headform used to assess protective headgear during blast exposure. The presented force transducer (6-mm nominal diameter) contains a multilayered composite superstructure, and demonstrates linearity and repeatability in both impact-response calibrations and blast-loading conditions. Fourier analysis indicates that the presented transducer captures transient kinetics of blast overpressure with an average 0.12% difference in normalized Fourier amplitudes captured by the FBG and validated reference transducer. Time-domain analysis indicates the FBG transducer is repeatable with maximum coefficient of variance for repeated measures at 7.9%, whereas the validated reference transducer coefficient of variance is 9.1% (maximum) based on normalized data. The novel transducer is the first application of FBG technology to measure skull-brain kinetics following loading from a blast, and can be used to evaluate the mechanisms of energy-transfer into the head during blast exposure.
机译:本文介绍了一种用于在爆炸暴露过程中测量用于评估防护头盔的代理头部内的纤维布拉格光栅(FBG)换能器的开发和验证。所提出的力换能器(6mm标称直径)含有多层复合上部结构,并在冲击响应校准和喷砂条件下显示线性和可重复性。傅立叶分析表明,所示的换能器捕获Blast过压的瞬态动力学,平均由FBG和验证的参考换能器捕获的标准化傅里叶幅度差异平均0.12%。时域分析表明FBG换能器是可重复的,具有7.9%的重复措施的最大方差系数,而验证的参考换能器差异系数为9.1%(最大值),基于标准化数据。新型换能器是FBG技术的第一次应用,以测量从爆炸加载后测量颅脑动力学,并且可用于评估爆破暴露过程中的能量转移到头部的机制。

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