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在体外鞭打模拟过程中,关节囊韧带会伸展。

Capsular ligament stretches during in vitro whiplash simulations.

作者信息

Panjabi M M, Cholewicki J, Nibu K, Grauer J, Vahldiek M

机构信息

Department of Orthopaedics and Rehabilitation, Yale University School of Medicine, New Haven, Connecticut 06510, USA.

出版信息

J Spinal Disord. 1998 Jun;11(3):227-32.

PMID:9657548
Abstract

Clinical symptoms of whiplash are presently not well understood. Injuries to capsular and other spinal ligaments of the cervical spine during trauma are a possible pathomechanism that could explain some aspects of the whiplash symptom complex. This study quantified the elongations of capsular ligaments (CLs) at all cervical spinal levels during whiplash simulation using an in vitro model. Seven fresh human cadaveric specimens (occiput-C7 or T1) were carefully dissected, preserving the osteoligamentous structures. Spinal ligament transducers were attached across the CLs from C2-C3 to C6-C7 in each specimen, alternating the two sides. Physiological elongations of the CLs were measured with a standard flexibility test using 1 Nm of pure moments. Next, the specimen was fitted with a surrogate head representing 50th percentile human head. The specimen was mounted on a sled designed to simulate whiplash and subjected to 2.5, 4.5, 6.5, 8.5, and 10.5 g (1 g = 9.81 m/s2) horizontal accelerations sequentially. The dynamic elongations of the CLs were continuously recorded during the entire trauma and were later converted to strains. There were modest increases in capsular ligament strains during the trauma over the maximum physiological values. The two largest peak strains of 29.5 and 35.4% were seen at C6-C7 during the 6.5- and 10.5-g accelerations. We did not find strong correlation between the strain during the trauma and the trauma sled acceleration.

摘要

目前,挥鞭样损伤的临床症状尚未得到充分理解。创伤期间颈椎关节囊和其他脊柱韧带的损伤是一种可能的病理机制,可解释挥鞭样损伤症状复合体的某些方面。本研究使用体外模型量化了挥鞭样损伤模拟过程中所有颈椎节段关节囊韧带(CLs)的伸长情况。仔细解剖了7个新鲜的人体尸体标本(枕骨-C7或T1)并保留了骨韧带结构。在每个标本中,将脊柱韧带传感器从C2-C3到C6-C7跨CLs连接,两侧交替进行。使用1 Nm的纯力矩通过标准柔韧性测试测量CLs的生理伸长。接下来,为标本安装一个代表第50百分位数人头的模拟头部。将标本安装在一个设计用于模拟挥鞭样损伤的滑板上,并依次施加2.5、4.5、6.5、8.5和10.5 g(1 g = 9.81 m/s2)的水平加速度。在整个创伤过程中持续记录CLs的动态伸长,随后将其转换为应变。创伤期间关节囊韧带应变相对于最大生理值有适度增加。在6.5 g和10.5 g加速度作用下,C6-C7处观察到两个最大峰值应变,分别为29.5%和35.4%。我们未发现创伤期间的应变与创伤滑板加速度之间存在强相关性。

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