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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >A computational investigation of strain concentration in the brain in response to a rapid temperature rise
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A computational investigation of strain concentration in the brain in response to a rapid temperature rise

机译:响应于快速温升急剧升高的脑菌株浓度的计算研究

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Following the mysterious health attacks on U.S. diplomats in Cuba in 2016, the cause of concussion-like symptoms concurrent with strange noises heard by the diplomats remains undetermined. A wide range of possible causes of the sensations have been proposed: pulsed microwave exposure, infrasound acoustic devices, pesticides/neurotoxins, and even mass hysteria (psychogenic illness). Here, we numerically examine the pulsed microwave exposure hypothesis and the simulated mechanical response of brain tissue. A computational model is used to examine the influence of various spatially varying temperature gradients and pulse durations on the mechanical response of brain tissue. We show that a stress-focusing effect due to a rapid temperature increase may result in brain tissue strains larger than the initially applied thermal strains.
机译:2016年,在古巴的美国外交官遭遇神秘的健康袭击后,外交官们在听到奇怪的声音的同时出现脑震荡样症状的原因仍未确定。人们提出了引起这种感觉的多种可能原因:脉冲微波照射、次声装置、杀虫剂/神经毒素,甚至集体歇斯底里症(心因性疾病)。在这里,我们用数值方法检验了脉冲微波照射假说和模拟的脑组织机械反应。一个计算模型被用来研究各种空间变化的温度梯度和脉冲持续时间对脑组织机械反应的影响。我们发现,温度快速升高引起的应力聚焦效应可能导致脑组织应变大于最初施加的热应变。

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