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◆ European spine journal : official publication of the European Spine Society, the European Spinal Deformity Society, and the European Section of the Cervical Spine Research Society2026-08-28

Methods for assessing core muscle co-activation in the lumbar region: a narrative review.

Liangbi Ding, Mingzhu Li, Jiaqing Xu, Anthony Weldon, José Correia, Merrick Lincoln, Peter Thain, Yuanxing Wang, Xiaoyi Liu, Peng Yuan

一句话结论 · In one sentence

Existing methods provide valuable but heterogeneous insights into lumbar neuromuscular control and spinal stability. Future research should prioritize standardized protocols for electromyography processing, muscle selection, task design, co-contraction index computation, and multimodal model validation to enhance reproducibility, comparability, and clinical translation.

原始摘要(英文原文)· Original abstract
PURPOSE: Core muscle co-activation is a key neuromuscular mechanism for lumbar spine stability, and its quantitative assessment is important for understanding spinal control, identifying dysfunction, guiding rehabilitation, and informing injury prevention. This narrative review critically appraises current methods for assessing lumbar core muscle co-activation, focusing on their theoretical basis, technical characteristics, interpretive value, limitations, and practical applicability. METHODS: Current assessment approaches were narratively synthesized and categorized into surface electromyography, co-contraction index calculations, musculoskeletal modeling, and multimodal approaches integrating electromyographic data with biomechanical simulations. The review examined how these methods capture, quantify, and interpret lumbar core muscle co-activation, and how methodological variability affects validity, reproducibility, comparability, and translation. RESULTS: Surface electromyography is widely used to assess muscle activation but is affected by signal variability, electrode placement, normalization, crosstalk, and task dependency. Co-contraction index calculations quantify simultaneous muscle activation, yet their validity depends on muscle-pair selection, signal processing, time-window definition, and assumptions regarding agonist and antagonist roles. Musculoskeletal modeling estimates muscle force, spinal loading, and biomechanical consequences of co-activation, but outputs depend on anatomical assumptions, optimization criteria, and validation quality. Multimodal approaches may improve biomechanical interpretation but require technical expertise and standardized integration procedures. CONCLUSION: Existing methods provide valuable but heterogeneous insights into lumbar neuromuscular control and spinal stability. Future research should prioritize standardized protocols for electromyography processing, muscle selection, task design, co-contraction index computation, and multimodal model validation to enhance reproducibility, comparability, and clinical translation.
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Methods for assessing core muscle co-activation in the lumbar region: a narrative review. — 科研速览 Science Skim