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April 12, 2026Journal of Electromyography and Kinesiology0 citationsOpen Access

Does pain alter the spatial distribution of muscle activity in people experiencing spinal pain? A systematic review and meta-analysis

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HSHirofumi SageshimaMPMartina ParrellaMAMichail Arvanitidis

Key Points

  • To determine the impact of spinal pain on the spatial distribution of muscle activity using a systematic review and meta-analysis.
  • Performed a systematic review and meta-analysis of studies on spinal pain and muscle activity.
  • Screened 1,099 records, including 23 studies (15 clinical, 8 experimental) relevant to the topic.
  • Utilized high-density surface electromyography to measure muscle activity changes.
  • Assigned quality ratings to studies using the Newcastle-Ottawa Scale and CEDE checklist.
  • Identified a cranial shift in erector spinae activity in individuals with clinical low back pain (SMD = -0.64, p = 0.0001).
  • Found a caudal shift in upper trapezius activity during experimentally-induced neck pain (SMD = 1.17, p < 0.0001).
  • Rated overall evidence certainty as very low according to GRADE.

Abstract

Numerous studies have investigated the influence of pain on the spatial distribution of muscle activity using high-density surface electromyography (HDsEMG) to understand pain-related motor adaptations in individuals with spinal pain. This systematic review aimed to synthesize the available evidence to determine whether clinical or experimental spinal pain influences the spatial distribution of muscle activity. The review protocol was registered in the International Prospective Register of Systematic Reviews (PROSPERO; CRD42024524021, registered April 03, 2024). Electronic databases (MEDLINE, EMBASE, PubMed, CINAHL Plus, and Web of Science), grey literature, and key journals were searched from inception to April 4, 2025. Two independent reviewers screened studies and assessed the quality of studies using the Newcastle-Ottawa Scale and the Consensus for Experimental Design in Electromyography (CEDE) checklist. Data synthesis was conducted by outcome domain, and random-effects meta -analyses were performed when feasible. From 1,099 records, 23 studies (15 clinical pain, 8 experimental pain) met the inclusion criteria. The overall certainty of evidence was rated very low according to GRADE. Meta-analysis showed a cranial shift of erector spinae activity in clinical low back pain (SMD = -0.64 95%CI: −0.97; −0.32, p = 0.0001, I 2 = 15.4%, τ 2 = 0.085), although this effect was not robust in sensitivity analyses of functional tasks. In experimentally-induced neck pain, a caudal shift of upper trapezius activity was identified (SMD = 1.17 95%CI: 0.61; 1.73, p < 0.0001, I 2 = 33.4%, τ 2 = 0.31). Further studies using more consistent and comparable methodologies are needed to draw more definitive conclusions.

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Cite This Study

Sageshima et al. (2026) studied this question.

synapsesocial.com/papers/69db36a04fe01fead37c495bhttps://doi.org/10.1016/j.jelekin.2026.103155
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