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首页> 外文期刊>Journal of Biomechanics >Improved measurement of brain deformation during mild head acceleration using a novel tagged MRI sequence.
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Improved measurement of brain deformation during mild head acceleration using a novel tagged MRI sequence.

机译:使用新型标记的MRI序列改进了轻度头部加速过程中脑变形的测量。

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摘要

In vivo measurements of human brain deformation during mild acceleration are needed to help validate computational models of traumatic brain injury and to understand the factors that govern the mechanical response of the brain. Tagged magnetic resonance imaging is a powerful, noninvasive technique to track tissue motion in vivo which has been used to quantify brain deformation in live human subjects. However, these prior studies required from 72 to 144 head rotations to generate deformation data for a single image slice, precluding its use to investigate the entire brain in a single subject. Here, a novel method is introduced that significantly reduces temporal variability in the acquisition and improves the accuracy of displacement estimates. Optimization of the acquisition parameters in a gelatin phantom and three human subjects leads to a reduction in the number of rotations from 72 to 144 to as few as 8 for a single image slice. The ability to estimate accurate, well-resolved, fields of displacement and strain in far fewer repetitions will enable comprehensive studies of acceleration-induced deformation throughout the human brain in vivo.
机译:需要体内测量轻度加速过程中人脑变形的方法,以帮助验证创伤性脑损伤的计算模型并了解控制大脑机械反应的因素。标记磁共振成像是一种功能强大的非侵入性技术,可在体内跟踪组织运动,已被用于量化活人受试者的大脑变形。但是,这些先前的研究需要72到144个头部旋转才能生成单个图像切片的变形数据,从而排除了它在单个对象中研究整个大脑的用途。在这里,介绍了一种新颖的方法,该方法可显着减少采集中的时间变化并提高位移估计的准确性。明胶体模和三个人类受试者中采集参数的优化导致单个图像切片的旋转数从72减少到144,减少到8。估计重复次数少得多的准确,分辨率良好的位移和应变场的能力将使对人体整个大脑中由加速度引起的变形的综合研究成为可能。

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