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Shear linear behavior of brain tissue over a large frequency range

机译:大频率范围内脑组织的线性剪切行为

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The literature review about the shear linear properties of brain tissue reveals both a large discrepancy in the existing data and a crucial lack of information at high frequencies associated with traffic road and non-penetrating ballistic impacts. The purpose of this study is to clarify and to complement the linear material characterisation of brain tissue. New data at small strains and high frequencies were obtained from oscillatory experiments. The tests were performed on thin porcine white matter samples (corona radiata) using an original custom-designed oscillatory shear testing device. At 37℃, the results showed that the mean storage modulus (G') and the mean loss modulus (G") increased with the frequency (0.1 to 6310 Hz) from 2.1 ± 0.9 kPa to 16.8 ± 2.0 kPa and from 0.4 ± 0.2 kPa to 18.7 ± 2.3 kPa respectively. The reliability of these new dynamic data was checked over a partially common frequency range by conducting similar experiments using a standard rheometer (Bohlin C-VOR 150). Data were also compared in the time field. From these experiments, the relaxation modulus (G(t)) was found to decrease from 24.4 ± 2.1 kPa to 1.0 ± 0.3 kPa between 10~(-5) s and 270 s.
机译:关于脑组织的线性剪切特性的文献综述显示,既有数据存在很大差异,也存在与交通道路和非穿透性弹道影响相关的高频信息的严重缺乏。这项研究的目的是阐明和补充脑组织的线性物质特征。从振荡实验中获得了小应变和高频率的新数据。使用原始的定制设计的振荡剪切测试设备对稀薄的猪白质样品(电晕辐射)进行了测试。结果表明,在37℃下,平均储能模量(G')和平均损耗模量(G“)随频率(0.1至6310 Hz)从2.1±0.9 kPa增至16.8±2.0 kPa和0.4±0.2 kPa分别为18.7±2.3 kPa,通过使用标准流变仪(Bohlin C-VOR 150)进行类似的实验,在部分相同的频率范围内检查了这些新动态数据的可靠性,并在时间字段中对数据进行了比较。实验发现,在10〜(-5)s至270 s之间,弛豫模量(G(t))从24.4±2.1 kPa降低至1.0±0.3 kPa。

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