Clinical Trial Matcher

NCT07253493

Effect of Mechanical Loading and Bone Loss on Motor Neuron Activity-H-Reflex Relationship

Recruiting · Not Applicable · Istanbul Physical Medicine Rehabilitation Training and Research Hospital · registry updated 2025-11-28

Inclusion and exclusion lines below are quoted from ClinicalTrials.gov. No match score is shown, because a score needs a person's age, biomarkers, and treatment dates. Confirm the record with the study team.

Weight-bearing exercises (e.g., running, jumping, whole-body vibration) are widely practiced due to their beneficial effects on bone development and their role in the prevention and treatment of osteoporosis. However, the underlying neuroregulatory mechanisms responsible for these positive effects have not yet been fully understood. Two main neuromodulatory mechanisms have been proposed in the literature: (i) spinal reflexes originating from muscle spindles (stretch reflex, tonic vibration reflex), and (ii) the bone myoregulation reflex (BMR) based on load-sensitive osteocytes. It is well established that increased voluntary contraction and the associated rise in background EMG activity, that is, motor neuron pool activity, enhance muscle spindle-based reflex responses (such as the H-reflex and tendon reflex). In contrast, it has been demonstrated that the H-reflex is suppressed during bone-loading activities such as single-leg stance, jumping, or whole-body vibration. This study is based on two hypotheses: * As mechanical loading increases, Ia inhibitory effects intensify, leading to greater H-reflex suppression....

Inclusion

  • Being in the postmenopausal period
  • For the osteoporosis group: having femoral osteoporosis (femoral neck or total femur T-score ≤ -2.5)
  • For the control group: having no osteoporosis or osteopenia (femoral neck and total femur T-scores \> -1, and L1-L4 and L2-L4 T-scores \> -1)
  • Being a volunteer

Exclusion

  • Receiving osteoporosis treatment
  • Having a peripheral or central nervous system disorder (e.g., stroke, polyneuropathy, radiculopathy, entrapment neuropathy, etc.)
  • Having acquired or hereditary muscle diseases (myopathies)
  • Having active painful lower extremity pathologies (e.g., osteoarthritis, inflammatory joint diseases, etc.)
  • Having cardiac arrhythmias
  • Having a history of other metabolic bone diseases

Open NCT07253493 on ClinicalTrials.govAll conditions