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March 12, 2026Journal of Functional Morphology and Kinesiology2 citationsOpen Access

Neurofunctional Assessments in Lumbar Spondylosis: Outcomes After Rehabilitation Treatment

ATAndreea Ancuța TalingaRORoxana Ramona OnofreiACA. Codreanu

Key Points

  • This research aims to evaluate the effectiveness of rehabilitation treatment on nerve functionality in patients with lumbar spondylosis.
  • Quasi-experimental design involving 60 patients with lumbar spondylosis and 25 healthy controls.
  • Clinical, imaging, and electrophysiological assessments conducted.
  • Participants underwent nerve conduction studies and surface electromyography before and six months after treatment.
  • Statistical analysis utilized nonparametric tests and Spearman’s coefficient.
  • Patients showed increased latencies and decreased muscle action potentials before rehabilitation compared to controls.
  • Post-treatment, patients demonstrated significant improvements in nerve conduction studies and electromyography measures.
  • Notable enhancements in motor conduction velocity and muscle activity were observed six months after rehabilitation.

Abstract

Background: Lumbar spondylosis is a frequent cause of chronic low back pain, often associated with radiculopathy. Although imaging evaluation is widely used, it does not always reflect the degree of functional impairment of the nerve roots. Electrophysiological assessments, such as nerve conduction studies (NCS) and surface electromyography (sEMG), can provide additional information on neuromuscular function under conservative treatment. Methods: This quasi-experimental study included 60 patients with lumbar spondylosis and 25 healthy subjects, who underwent clinical, imaging, and electrophysiological assessments. NCS and sEMG parameters were assessed in the patient group before and six months after rehabilitation treatment. The control group was assessed only once, at baseline. We analyzed the nerve conduction velocity of the tibial and peroneal nerves and the sEMG activity of the tibialis anterior muscle bilaterally. Statistical analysis used nonparametric tests, Spearman’s coefficient, and Hodges–Lehmann estimates. Results: Compared to the control group, patients presented increased residual latencies and reduced CMAP amplitude and motor conduction velocity values (p < 0.001). After rehabilitation treatment, significant improvements in NCS parameters were observed, with decreased latencies and increased CMAP amplitude and motor conduction velocity bilaterally (p < 0.001). Also, sEMG amplitude and recruitment pattern scores increased significantly at the 6-month follow-up (p ≤ 0.004). Correlations between electrophysiological parameters and the severity of imaging changes were limited, with modest associations for left tibial latencies (ρ = 0.401–0.467; p < 0.050). Conclusions: In patients with lumbar spondylosis, rehabilitation treatment was associated with functional improvements in nerve conduction velocity parameters and muscle activity.

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Cite This Study

Talinga et al. (2026) studied this question.

synapsesocial.com/papers/69b257a296eeacc4fcec66abhttps://doi.org/10.3390/jfmk11010114
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