4.3 Article

Viscoelastic creep induced by repetitive spine flexion and its relationship to dynamic spine stability

期刊

JOURNAL OF ELECTROMYOGRAPHY AND KINESIOLOGY
卷 23, 期 4, 页码 794-800

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ELSEVIER SCI LTD
DOI: 10.1016/j.jelekin.2013.04.002

关键词

Flexion relaxation; Lyapunov exponents; Neuromuscular; Low back injury; Cyclical movement

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Repetitive trunk flexion elicits passive tissue creep, which has been hypothesized to compromise spine stability. The current investigation determined if increased spine flexion angle at the onset of flexion relaxation (FR) in the lumbar extensor musculature was associated with altered dynamic stability of spine kinematics. Twelve male participants performed 125 consecutive cycles of full forward trunk flexion. Spine kinematics and lumbar erector spinae (LES) electromyographic (EMG) activity were obtained throughout the repetitive trunk flexion trial. Dynamic stability was evaluated with maximum finite-time Lyapunov exponents over five sequential blocks of 25 cycles. Spine flexion angle at FR onset, and peak LES EMG activity were determined at baseline and every 25th cycle. Spine flexion angle at FR increased on average by 1.7 degrees after baseline with significant increases of 1.7 degrees and 2.4 degrees at the 50th and 100th cycles. Maximum finite-time Lyapunov exponents demonstrated a transient, non-statistically significant, increase between cycles 26 and 50 followed by a recovery to baseline over the remainder of the repetitive trunk flexion cycles. Recovery of dynamic stability may be the consequence of increased active spine stiffness demonstrated by the non-significant increase in peak LES EMG that occurred as the repetitive trunk flexion progressed. (C) 2013 Elsevier Ltd. All rights reserved.

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