Hides Julie, Hodges Paul, Lambrecht Gunda
School of Allied Health Sciences, Griffith University, Nathan, QLD, Australia.
Mater Back Stability Research Clinic, Mater Health, South Brisbane, QLD, Australia.
Front Physiol. 2019 Jul 4;10:837. doi: 10.3389/fphys.2019.00837. eCollection 2019.
Low back pain (LBP) is the leading cause of disability worldwide. Over the last three decades, changes to key recommendations in clinical practice guidelines for management of LBP have placed greater emphasis on self-management and utilization of exercise programs targeting improvements in function. Recommendations have also suggested that physical treatments for persistent LBP should be tailored to the individual. This mini review will draw parallels between changes, which occur to the neuromuscular system in microgravity and conditions such as LBP which occur on Earth. Prolonged exposure to microgravity is associated with both LBP and muscle atrophy of the intrinsic muscles of the spine, including the lumbar multifidus. The finding of atrophy of spinal muscles has also commonly been reported in terrestrial LBP sufferers. Studying astronauts provides a unique perspective and valuable model for testing the effectiveness of exercise interventions, which have been developed on Earth. One such approach is motor control training, which is a broad term that can include all the sensory and motor aspects of spinal motor function. There is evidence to support the use of this exercise approach, but unlike changes seen in muscles of LBP sufferers on Earth, the changes induced by exposure to microgravity are rapid, and are relatively consistent in nature. Drawing parallels between changes which occur to the neuromuscular system in the absence of gravity and which exercises best restore size and function could help health professionals tailor improved interventions for terrestrial populations.
腰痛(LBP)是全球致残的主要原因。在过去三十年中,腰痛管理临床实践指南的关键建议发生了变化,更加注重自我管理以及利用旨在改善功能的运动计划。建议还指出,针对持续性腰痛的物理治疗应因人而异。本小型综述将对比微重力环境下神经肌肉系统发生的变化与地球上发生的诸如腰痛等情况。长期暴露于微重力环境与腰痛以及脊柱固有肌肉(包括腰多裂肌)的肌肉萎缩有关。在地球上的腰痛患者中也普遍报告有脊柱肌肉萎缩的现象。研究宇航员为测试在地球上开发的运动干预措施的有效性提供了独特的视角和有价值的模型。一种这样的方法是运动控制训练,这是一个广义的术语,可包括脊髓运动功能的所有感觉和运动方面。有证据支持使用这种运动方法,但与地球上腰痛患者肌肉的变化不同,暴露于微重力环境引起的变化是快速的,并且在性质上相对一致。对比在无重力情况下神经肌肉系统发生的变化以及哪种运动最能恢复肌肉大小和功能,有助于卫生专业人员为地球上的人群量身定制更好的干预措施。