首页> 外文期刊>Advances in Neuroscience >Neck Flexion Induces Larger Deformation of the Brain Than Extension at a Rotational Acceleration, Closed Head Trauma
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Neck Flexion Induces Larger Deformation of the Brain Than Extension at a Rotational Acceleration, Closed Head Trauma

机译:颈部屈曲比旋转加速引起的大脑变形更大,闭合性颅脑外伤

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A closed head trauma induces incompletely characterized temporary movement and deformation of the brain, contributing to the primary traumatic brain injury. We used the pressure patterns recorded with light-operated miniature sensors in anaesthetized adult rabbits exposed to a sagittal plane rotational acceleration of the head, lasting 1 ms, as a measure of brain deformation. Two exposure levels were used and scaled to correspond to force levels reported to cause mild and moderate diffuse injury in an adult man, respectively. Flexion induced transient, strong, extended, and predominantly negative pressures while extension generated a short positive pressure peak followed by a minor negative peak. Low level flexion caused as strong, extended negative pressures as did high level extension. Time differences were demonstrated between the deformation of the cerebrum, brainstem, and cerebellum. Available X-ray and MRI techniques do not have as high time resolution as pressure recordings in demonstrating complex, sequential compression and stretching of the brain during a trauma. The exposure to flexion caused more protracted and extensive deformation of the brain than extension, in agreement with a published histopathological report. The severity and extent of the brain deformation generated at a head trauma thus related to the direction at equal force.
机译:闭合性头部外伤会引起特征性的大脑暂时性运动和变形,从而导致原发性外伤性脑损伤。我们使用光致微型传感器记录的麻醉模式下成年兔子的头部承受矢状面旋转加速度(持续1µms)的压力模式,以衡量大脑的变形情况。使用了两种暴露水平,并按比例进行了调整,以分别对应于据报道在成年男子中引起轻度和中度弥漫性损伤的力量水平。屈曲引起短暂的,强的,伸展的和主要是负压,而伸展产生一个短的正压力峰,然后是一个较小的负峰。低水平屈曲与高水平伸展一样引起强烈的,延长的负压。大脑,脑干和小脑的变形之间存在时间差异。现有的X射线和MRI技术在显示创伤过程中大脑复杂,连续的压迫和伸展方面没有像压力记录那样高的时间分辨率。与已发表的组织病理学报告一致,暴露于屈曲导致的大脑变形比伸长更为持久和广泛。因此,在头部外伤时产生的大脑变形的严重程度和程度与以相同力作用的方向有关。

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