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A finite element infant eye model to investigate retinal forces in shaken baby syndrome.

机译:一种用于研究婴儿摇动综合征中视网膜力的有限元婴儿眼模型。

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BACKGROUND: Shaken baby syndrome (SBS) is a form of abuse in which an infant, typically 6 months or less, is held and submitted to repeated acceleration-deceleration forces. One of the indicators of abuse is bilateral retinal hemorrhaging. A computational model of an infant eye, using the finite element method, is built in order to assess forces at the posterior retina for a shaking and an impact motions. METHOD: The eye model is based on histological studies, diagrams, and materials from previous literature. Motions are applied to the model to simulate a four-cycle shaking motion in 1 second with maximum extension/flexion of the neck. The retinal forces of the shaking motion, at the posterior eye, are compared to an impact pulse (60G) simulating a fall for a total duration of 100 ms. RESULTS: The shaking motion, for the first cycle, shows retinal force means at the posterior eye to be around 0.08 N sustained from the time range of 50 to 200 ms, into the shake, with a peak in excess of 0.2 N. The impulse, area under the curve, is 15 N-ms for 250 msec for the first cycle. The impact simulation reveals a mean retinal force around 0.025 N for a time range of 0 to 26 ms, with a peak force around 0.11 N. Moreover, the impulse for the impact simulation is 13 times lower than the shaking motion. CONCLUSION: The results suggest that shaking alone may be enough to cause retinal hemorrhaging, as there are more sustained and higher forces in the posterior retina, compared to an impact due to a fall. This is in part due to the optic nerve causing more localized stresses in a shaking motion than an impact.
机译:背景:动摇婴儿综合症(SBS)是一种虐待形式,其中婴儿通常被关押六个月或更短的时间,并受到反复的加减速力作用。滥用的指标之一是双侧视网膜出血。使用有限元方法建立了婴儿眼睛的计算模型,以评估视网膜后部的震动和撞击运动力。方法:眼模型基于先前文献的组织学研究,图表和材料。将运动应用于模型,以在1秒钟内模拟四周期摇晃运动,并最大程度地拉伸颈部。将在后眼的摇动动作的视网膜力与模拟持续下降100毫秒的跌落的冲击脉冲(60G)进行比较。结果:在第一个周期中,摇晃运动表明,从50到200 ms的时间范围内,进入摇晃的后眼的视网膜力均值约为0.08 N,峰值超过0.2N。在第一个周期内,曲线下的面积为250毫秒,为15 N-ms。冲击仿真显示0到26 ms的时间范围内的平均视网膜力为0.025 N,峰值力约为0​​.11N。此外,冲击仿真的脉冲力比震动低13倍。结论:研究结果表明,单独摇动可能足以引起视网膜出血,因为与摔倒造成的影响相比,后视网膜的作用力更大,持续性更高。部分原因是视神经在摇动中比冲击引起更多的局部应力。

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