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Human Lumbar Spine Creep during Cyclic and Static Flexion: Creep Rate Biomechanics and Facet Joint Capsule Strain

机译:循环和静态屈曲过程中的人腰椎蠕变:蠕变率生物力学和小关节关节囊应变

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摘要

There is a high incidence of low back pain (LBP) associated with occupations requiring sustained and/or repetitive lumbar flexion (SLF and RLF, respectively), which cause creep of the viscoelastic tissues. The purpose of this study was to determine the effect of creep on lumbar biomechanics and facet joint capsule (FJC) strain. Specimens were flexed for 10 cycles, to a maximum 10 Nm moment at L5-S1, before, immediately after, and 20 min after a 20-min sustained flexion at the same moment magnitude. The creep rates of SLF and RLF were also measured during each phase and compared to the creep rate predicted by the moment relaxation rate function of the lumbar spine. Both SLF and RLF resulted in significantly increased intervertebral motion, as well as significantly increased FJC strains at the L3-4 to L5-S1 joint levels. These parameters remained increased after the 20-min recovery. Creep during SLF occurred significantly faster than creep during RLF. The moment relaxation rate function was able to accurately predict the creep rate of the lumbar spine at the single moment tested. The data suggest that SLF and RLF result in immediate and residual laxity of the joint and stretch of the FJC, which could increase the potential for LBP.
机译:与需要持续和/或重复的腰部弯曲(分别为SLF和RLF)的职业相关的下背痛(LBP)的发生率很高,这会引起粘弹性组织的蠕变。这项研究的目的是确定蠕变对腰椎生物力学和小关节囊(FJC)应变的影响。在相同的力矩大小下持续20分钟的屈曲之前,之后和之后的20分钟,将试样弯曲10个循环,直到L5-S1处最大10 Nm力矩。在每个阶段还测量了SLF和RLF的蠕变率,并将其与通过腰椎的力矩松弛率函数预测的蠕变率进行了比较。 SLF和RLF都导致椎间运动明显增加,并且在L3-4至L5-S1关节水平上的FJC应变也显着增加。恢复20分钟后,这些参数仍保持增加。 SLF发生蠕变的速度明显快于RLF发生蠕变的速度。力矩松弛率函数能够准确地预测所测试的单个力矩下腰椎的蠕变率。数据表明,SLF和RLF导致FJC关节和伸直的立即和残余松弛,这可能会增加LBP的可能性。

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