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Influence of creep deformation on sub-regional lumbar spine motion during manual lifting

机译:蠕变变形对手动提升期间亚区域腰椎运动的影响

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摘要

Prolonged or repetitive spine flexion induces creep deformation of posterior spine tissues allowing for increased intervertebral motion beyond 'normal' limits, which may influence sub-regional (intersegmental) spine motion during subsequent manual lifting tasks. Using spine skin-surface kinematics, intersegmental lumbar spine motion was recorded over 20 minutes of prolonged static spine flexion and a subsequent manual lifting task (2 lifts every 3 minutes, 30 minutes total) in 14 participants. Results demonstrated that mid to lower lumbar intersegmental levels (i.e. L-2/L(3)to L-4/L-5) experienced the greatest overall creep deformation and range of motion during both prolonged flexion and manual lifting; however, overall range of motion during manual lifting was unaffected. Additionally, creep deformation did not completely recover within 30 minutes. Future work should continue to investigate the influence of this residual creep, as well as how overall creep deformation impacts spine neuromuscular control and stability, and ultimately the development of low back disorders. Practitioner summary:Mid to lower lumbar spine levels (i.e. L-2/L(3)to L-4/L-5) experienced the greatest creep deformation and range of motion during both prolonged flexion and manual lifting. Repeated lifting following prolonged flexion may limit creep recovery; however, overall lifting kinematic motion remained unchanged.
机译:延长或重复的脊柱屈曲诱导后脊柱组织的蠕变变形,允许增加过于“正常”限制的椎间动作,这可能影响亚区域(间隙)脊柱运动在随后的手动提升任务期间。使用脊柱皮肤表面运动学,在14名参与者中记录了超过20分钟的长静脊柱屈曲和随后的手动提升任务(2升至每3分钟,总共30分钟)中的延长静态脊柱运动。结果表明,下降腰部间隙(即L-2 / L(3)至L-4 / L-5)在延长屈曲和手动提升时经历了最大的整体蠕变变形和运动范围;然而,手动提升过程中的总体运动范围不受影响。此外,蠕变变形在30分钟内没有完全恢复。未来的工作应该继续调查这种残留蠕变的影响,以及整体蠕变变形如何影响脊柱神经肌肉控制和稳定性,最终发生低背障碍的发展。从业者摘要:中腰椎脊柱水平(即L-2 / L(3)至L-4 / L-5)在延长屈曲和手动提升过程中经历了最大的蠕变变形和运动范围。延长屈曲后重复提升可能会限制蠕变恢复;然而,整体提升运动运动保持不变。

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