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Cervical Range of Motion and Dynamic Response and Strength of Cervical Muscles

机译:宫颈范围的运动和动态响应和颈椎肌肉的强度

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Basic physical characteristics of the neck have been defined which have application to the design of biomechanical models, anthropometric dummies, and occupant crash protection devices. The study was performed using a group of 180 volunteers chosen on the basis of sex, age (18-74 years), and stature. Measurements from each subject included anthropometry, cervical range-of-motion (observed with both x-rays and photographs), the dynamic response of the cervical flexor and extensor muscles to a controlled jerk, and the maximum voluntary strength of the cervical muscles. Data are presented in tabular and graphic form for total range-of-motion, cervical muscle reflex time, decelerations of the head, muscle activation time, and cervical muscle strength. The range-of-motion of females was found to average 1-12 deg greater than that of males, depending upon age, and a definite degradation in range-of-motion was observed with increasing age. Average neck muscle reflex times range from 56-92 m s for flexors and 54-87 m s for extensors, with males being generally slower-reacting. This finding means that the cervical muscles generally cannot be activated in sufficient time to mitigate the hyperextension effects of a surprise rear-end collision. Reflex time becomes significantly longer after middle age. O n the average, the stretch reflex was elicited with head accelerations at the e.g. of approximately 0.25 g. The time required to stop the head after initial detection of the muscle reflex was slightly longer for neck extensors. Strength tests revealed that males are on the average stronger than females in both flexor and extensor strengths; that males and females exhibit different aging characteristics, and that a slight stature effect was present in the younger and shorter portions of the population. Age and sex were found to be important factors in cervical flexibility and response characteristics, and they should be included whenever accurate representation of neck parameters is desired.
机译:已经定义了颈部的基本物理特性,其适用于生物力学模型,人体测量假人和乘员碰撞保护装置的设计。该研究是使用基于性别,年龄(18-74岁)和身材的一组180名志愿者进行的。从每个受试者的测量包括人类测量法,宫颈运动范围(用X射线和照片观察),颈椎屈肌的动态响应和伸长型肌肉对受控的混蛋,以及宫颈肌的最大自主强度。数据以表格和图形形式呈现,用于总运动范围,宫颈肌射流时间,头部减速,肌肉激活时间和宫颈肌肉力量。根据年龄的年龄,雌性的运动范围平均比男性大于男性的1-12℃,随着年龄的增加,观察到运动范围内的明确降解。平均颈部肌肉反射时间范围为56-92 m s,用于弯曲和伸肌54-87 m s,具有雄性较慢的反应。这种发现意味着宫颈肌肉通常不能在足够的时间中被激活,以减轻惊喜后端碰撞的过度伸展效应。中年后反射时间变得明显更长。平均值,拉伸反射被引出,例如:大约0.25克。在初始检测肌法反射后停止头部所需的时间对于颈部伸肌略长。力量试验显示,雄性比屈肌和伸肌强度的平均值较强;那个男性和女性表现出不同的老化特征,并且存在少于群体的群体略微的效果。由于需要准确的颈部参数,因此发现年龄和性别是宫颈灵活性和响应特征的重要因素,并且应该包括颈部参数的准确表示。

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