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首页> 外文期刊>Journal of Pain Research >Application of advanced biomechanical methods in studying low back pain – recent development in estimation of lower back loads and large-array surface electromyography and findings
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Application of advanced biomechanical methods in studying low back pain – recent development in estimation of lower back loads and large-array surface electromyography and findings

机译:先进的生物力学方法在研究腰背痛中的应用-估计腰背负荷和大阵列表面肌电图的最新进展和发现

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摘要

Low back pain (LBP) is a major public health problem and the leading disabling musculoskeletal disorder globally. A number of biomechanical methods using kinematic, kinetic and/or neuromuscular approaches have been used to study LBP. In this narrative review, we report recent developments in two biomechanical methods: estimation of lower back loads and large-array surface electromyography (LA-SEMG) and the findings associated with LBP. The ability to estimate lower back loads is very important for the prevention and the management of work-related low back injuries based on the mechanical loading model as one category of LBP classification. The methods used for estimation of lower back loads vary from simple rigid link-segment models to sophisticated, optimization-based finite element models. In general, reviewed reports of differences in mechanical loads experienced in lower back tissues between patients with LBP and asymptomatic individuals are not consistent. Such lack of consistency is primarily due to differences in activities under which lower back mechanical loads were investigated as well as heterogeneity of patient populations. The ability to examine trunk neuromuscular behavior is particularly relevant to the motor control model, another category of LBP classification. LA-SEMG not only is noninvasive but also provides spatial resolution within and across muscle groups. Studies using LA-SEMG showed that healthy individuals exhibit highly organized, symmetric back muscle activity patterns, suggesting an orderly recruitment of muscle fibers. In contrast, back muscle activity patterns in LBP patients are asymmetric or multifocal, suggesting lack of orderly muscle recruitment. LA-SEMG was also shown capable of capturing unique back muscle response to manual therapy. In conclusion, estimation of low back load and LA-SEMG techniques demonstrated promising potentials for understanding LBP and treatment effects. Future studies are warranted to fully establish clinical validity of these two biomechanical methods.
机译:下腰痛(LBP)是主要的公共卫生问题,也是全球范围内导致致残的致残骨骼肌肉疾病。使用运动学,动力学和/或神经肌肉方法的许多生物力学方法已用于研究LBP。在本篇叙事性综述中,我们报告了两种生物力学方法的最新进展:估计下背部负荷和大阵列表面肌电图(LA-SEMG)以及与LBP相关的发现。基于机械负荷模型作为LBP分类的一种,估计下背部负荷的能力对于预防和管理与工作有关的下背部伤害非常重要。估算下背载荷的方法从简单的刚性链节模型到复杂的基于优化的有限元模型不等。通常,LBP患者与无症状个体之间在下背部组织中承受的机械负荷差异的回顾性报告不一致。这种缺乏一致性的主要原因是研究下背部机械负荷的活动差异以及患者人群的异质性。检查躯干神经肌肉行为的能力与运动控制模型(LBP分类的另一类)特别相关。 LA-SEMG不仅是无创的,而且还可以在肌肉群内和肌肉群之间提供空间分辨率。使用LA-SEMG进行的研究表明,健康的个体表现出高度有组织的,对称的背部肌肉活动模式,表明肌肉纤维的有序募集。相反,LBP患者的背部肌肉活动模式不对称或多灶,提示缺乏有序的肌肉募集。还显示LA-SEMG能够捕获对手动疗法的独特背部肌肉反应。总之,低背负荷和LA-SEMG技术的评估证明了了解LBP和治疗效果的潜力。有必要进行进一步的研究以完全确定这两种生物力学方法的临床有效性。

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