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Verification of the child crash test dummy neck response using magnetic resonance imaging and physiologic muscle stress.

机译:使用磁共振成像和生理性肌肉压力验证儿童碰撞测试假人颈部反应。

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The purpose of this work is to verify and modify, if necessary, the neck response characteristics of the current child crash test dummies using magnetic resonance imaging and muscle physiology. The child crash test dummy neck response is scaled from the responses of adult necks using the neck circumference ratio (child to adult) as a means for adjustment. This method of scaling relies heavily on external body anthropometry and contains certain assumptions about the internal anatomies and muscle physiology. The response scaling laws employed are derived from geometric and dynamic similitude and are a widely accepted method for modeling system behavior using a scale model. However, the model is required to possess geometric similarity and homogeneity. In the case of the child neck, it is plausible that certain anatomies do not scale according to the external body dimensions. Even though the neck volume may scale nicely with the neck circumference, the distribution of the bony anatomies and musculature may scale quite differently.; The child neck response scaling relies on neck circumference, which is easy to measure and linear in the characteristic dimensions (neck depth and breadth). This scaling was conducted before the wide availability of whole body scanning techniques. Therefore, the relevant internal anatomies have never been evaluated for consistency with the anthropometric neck response scaling.; An integral part of the neck response scaling includes an assumption regarding the physiologic potential of the muscle tissues themselves. The ability of the muscle to produce force for a given cross-section (physiologic muscle stress) is considered not to vary with age. The study will address this issue as well. In all three key areas are investigated: (1) Scalability of the neck musculature; (2) Scalability of the neck muscle attachments; (3) Physiologic muscle stress variations with age.; These three areas will be assessed using methods that rely on magnetic resonance imaging for accurate measurements of internal body anatomies. Volunteers range in age from neonate to sixty-four years of age.
机译:这项工作的目的是在必要时使用磁共振成像和肌肉生理学验证和修改当前儿童碰撞测试假人的颈部反应特性。儿童碰撞试验假人的颈部反应是使用成人的颈部反应率(儿童与成人的比例)作为调整手段从成年颈部的反应中缩放的。这种缩放方法在很大程度上依赖于人体人体测量学,并且包含有关内部解剖结构和肌肉生理的某些假设。所采用的响应缩放定律是从几何和动态相似性派生的,并且是使用缩放模型对系统行为进行建模的一种广泛接受的方法。但是,模型必须具有几何相似性和同质性。对于儿童脖子,某些解剖结构可能无法根据体外尺寸进行缩放。即使颈部的体积可以随颈部的周围很好地缩放,但骨骼解剖结构和肌肉组织的分布却可以有很大的不同。儿童颈部反应的标度依赖于颈部周围,该尺寸易于测量并且在特征尺寸(颈部深度和宽度)方面呈线性关系。这种缩放是在全身扫描技术广泛应用之前进行的。因此,从未评估过相关的内部解剖结构与人体测量颈部反应标度的一致性。颈部反应定标的组成部分包括有关肌肉组织自身生理潜力的假设。肌肉在给定横截面上产生力的能力(生理肌肉压力)被认为不会随年龄而变化。该研究也将解决这个问题。在所有三个关键领域进行了调查:(1)颈部肌肉的可伸缩性; (2)颈部肌肉附件的可伸缩性; (3)生理性肌肉压力随年龄而变化;这三个区域将使用依靠磁共振成像来准确测量体内解剖结构的方法进行评估。志愿者的年龄范围从新生儿到64岁。

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