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January 18, 2026Life2 citationsOpen Access

Muscle-Specific Biomechanical Adaptations Following Rehabilitation Treatment in Cervical Spondylosis: A Pilot Study

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ATAndreea Ancuța TalingaRORoxana Ramona OnofreiACA. Codreanu

Key Points

  • This study aims to assess the biomechanical adaptations of cervical and scapular muscles following rehabilitation in cervical spondylosis patients.
  • Single-group pre–post observational design
  • 14-day standardized rehabilitation program
  • Evaluation of muscle properties using MyotonPRO® device
  • Assessment of handgrip strength with handheld dynamometer
  • Measurements taken at baseline and after treatment
  • Deltoid muscle frequency decreased significantly from 14.86 to 13.50 Hz (p = 0.034)
  • Deltoid stiffness reduction indicated normalization of tone (306.4 to 256.1 N/m, p = 0.014)
  • Upper trapezius showed bilateral decrease in decrement (p < 0.05)
  • Pectoralis major had increased frequency and improved relaxation bilaterally (p < 0.05)
  • 5.4% strength improvement on the left and 7.6% on the right side through dynamometry

Abstract

Background. Cervical spondylosis is a degenerative disorder of the spine, frequently associated with chronic neck pain, reduced mobility, and functional impairment. Patients develop alterations in muscle tone, stiffness, and elasticity, which further contribute to disability. This study aimed to investigate the effects of a 14-day standardized rehabilitation program on the biomechanical and contractile properties of cervical and scapular muscles in patients with cervical spondylosis. Methods. This study used a single-group pre–post observational design on 23 patients (16 women, 7 men; mean age 61.1 ± 14.2 years) diagnosed with cervical spondylosis. All participants completed a standardized rehabilitation treatment that included cervical mobilization, stretching, isometric exercises, scapular stabilization, electrotherapy, ultrasound, thermotherapy, and balneotherapy. Muscle properties were evaluated bilaterally using the MyotonPRO® device, measuring frequency, stiffness, decrement, relaxation time, and creep. Assessments were performed in a sitting position for the deltoid, upper trapezius and pectoralis major, both at baseline (T0) and after treatment (T1). Handgrip strength was assessed bilaterally with a handheld dynamometer. Results. The deltoid muscle showed a significant reduction in frequency (14.86 → 13.50 Hz, p = 0.034) and stiffness (306.4 → 256.1 N/m, p = 0.014) on the right side, suggesting normalization of tone and passive resistance. The upper trapezius had a significant bilateral decrease in decrement (p < 0.05), reflecting improved elasticity. The pectoralis major displayed the most consistent adaptations, with increased frequency (right side, p = 0.008), improved relaxation bilaterally (p < 0.05), and significant reductions in decrement and creep (p < 0.01). Handheld dynamometry confirmed increased handgrip strength, with a 5.4% improvement on the left side and 7.6% on the right side. Conclusions. In our study measurable changes in muscle parameters were observed following a rehabilitation program in patients with cervical spondylosis. The integration of myotonometry and dynamometry allowed objective assessment of muscle adaptations supporting the clinical value of individualized rehabilitation strategies.

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Cite This Study

Talinga et al. (2026) studied this question.

synapsesocial.com/papers/696c77f1eb60fb80d13961f1https://doi.org/10.3390/life16010147
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