Age-related changes in twitch properties of plantar flexor muscles in prepubertal children

Jean-Francois Grosset1, Isabelle Mora, Daniel Lambertz

  • 1Département de Génie Biologique, CNRS UMR-6600, Université de Technologie, Compiègne cedex, France.

Pediatric Research
|September 27, 2005
PubMed

Insights

Muscle contractile properties in children aged 7-11 show age-related increases in peak torque and rate of torque development. Electromechanical delay also decreases with age, indicating developing muscle function.

Area of Science:

  • Physiology
  • Pediatric Exercise Science
  • Neuromuscular Function

Background:

  • Voluntary muscle contractions differ from involuntary twitches in characterizing muscle properties.
  • Previous research indicates differences in triceps surae (TS) muscle twitch amplitude, but not time course, between pre and postpubertal children.

Purpose of the Study:

  • To compare the triceps surae (TS) muscle twitch contractile properties in prepubertal children aged 7 to 11 years.
  • To establish age-related reference values for TS muscle performance in prepubertal children.

Main Methods:

  • Recorded M-wave and TS muscle twitches at rest using supramaximal electrical stimulation of the posterior tibial nerve.
  • Quantified twitch properties: peak torque (Pt), contraction time (CT), half relaxation time (HRT), rate of torque development (dPt/dt), and electromechanical delay (EMD).

Main Results:

  • Peak torque (Pt) and rate of torque development (dPt/dt) significantly increased with age in prepubertal children.
  • Contraction time (CT) and half relaxation time (HRT) remained unchanged with age.
  • Electromechanical delay (EMD) decreased with age, but remained higher than in adults.

Conclusions:

  • Growth processes are linked to increased TS twitch torque in prepubertal children, but time-course characteristics are age-independent.
  • Increased dPt/dt and decreased EMD serve as indirect indicators of changes in contractile kinetics and musculo-tendinous stiffness.
  • Established age-related relationships provide reference values for clinical assessment of TS muscle function in pediatric populations.

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