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A novel air bubble method to compare the pressure of the brain tissue in head decelerating impact

机译:一种新颖的气泡方法,用于比较头部减速冲击中脑组织的压力

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摘要

A new physical head model with air bubble to simulate the brain injury in head decelerating impact is presented in this paper. This new method has its advantage on investigating the brain injury using a direct and visual technique. A hollow transparent glass model was used to simulate the skull, and a transparent gel was used to substitute the brain tissue. Three air bubbles were created in the gel at the respective position of coup site (impacting site), middle site and contrecoup site (opposite to impacting site). After this, the head model was made to free fall from a position and impact on a fixed platform. The decelerating impacting process was recorded by a high-speed video camera and an accelerometer system. Through analysing the video, the volume change, namely, the mean pressure change of the air bubbles were calculated and compared. The results showed explicitly and effectively that during the decelerating impact the contrecoup site air bubble was exposed mainly to a negative pressure which could lead to a tensile stress; and the coup site air bubble was exposed mainly to a positive pressure which could form a compressive force.
机译:本文提出了一种新的带有气泡的物理头部模型,用于模拟头部减速撞击中的脑损伤。这种新方法在使用直接和视觉技术研究脑损伤方面具有优势。使用中空的透明玻璃模型来模拟头骨,并使用透明的凝胶来替代脑组织。在凝胶中,在共发部位(撞击部位),中间部位和对流部位(与撞击部位相对)的各个位置产生了三个气泡。此后,使头部模型从位置自由落下并撞击固定平台。减速的撞击过程由高速摄像机和加速度计系统记录。通过分析视频,计算并比较气泡的体积变化,即平均压力变化。结果清楚而有效地表明,在减速冲击过程中,对流变形现场的气泡主要暴露在负压下,这可能导致张应力。政变现场的气泡主要暴露在可能形成压缩力的正压力下。

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