一种评估推进物眼挫伤损伤潜力的模型。

Journal of bioengineering Pub Date : 1978-06-01
R E Berger
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引用次数: 0

摘要

对现有的眼挫伤实验数据进行了分析,建立了一个简单的数学模型来预测眼与弹丸之间的最大接触力。结果表明,这种力与损伤发生机制——眼球扩张有关,这在文献中被广泛提倡。模型中还考虑了加载速率的影响。量纲分析允许先前的实验数据用于生成眼损伤的耐受性曲线。该模型的预测和以前的一组眼科医生的主观意见的协议被认为是令人满意的。将该模型应用于目前市场上的弹丸玩具的危害潜势预测,发现弹丸玩具的挫伤产生能力涵盖了从安全到危险的全部范围。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A model for evaluating the ocular contusion injury potential of propelled objects.

The existing data on experimental ocular contusion were analyzed in terms of a simple mathematical model which predicts the maximum contact force between the eye and the impacting projectile. It was shown that this force was related to the injury producing mechanism, eyeball expansion, which was widely advocated in the literature. The effect of loading rate was also accounted for in the model. A dimensional analysis allowed previous experimental data to be used to generate tolerance curves for ocular injury. The agreement between the prediction of the model and previous subjective opinions of a panel of ophthalmologists was considered to be satisfactory. When the model was used to predict the hazard potential of projectile toys which presently exist in the market place, it was found that the contusive injury producing capability of these products covered the full range from safe to hazardous.

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