6533b7d9fe1ef96bd126d7cd

RESEARCH PRODUCT

Effects of ageing on motor unit activation patterns and reflex sensitivity in dynamic movements.

M. KanervoJ. KallioPaavo V. KomiToshio MoritaniJanne AvelaHarri SelänneVesa Linnamo

subject

AdultMalemedicine.medical_specialtyAgingBiophysicsNeuroscience (miscellaneous)Poison controlIsometric exerciseMuscle Strength DynamometerConcentricH-ReflexInternal medicineIsometric ContractionmedicineEccentricHumansRange of Motion ArticularMuscle SkeletalAgedMotor NeuronsLegChemistryElectromyographyMotor unitTorqueAgeingPhysical therapyCardiologyReflexsense organsNeurology (clinical)H-reflexAnkle JointMuscle Contraction

description

Both contraction type and ageing may cause changes in H-reflex excitability. H reflex is partly affected by presynaptic inhibition that may also be an important factor in the control of MU activation. The purpose of the study was to examine age related changes in H-reflex excitability and motor unit activation patterns in dynamic and in isometric contractions. Ten younger (YOUNG) and 13 elderly (OLD) males performed isometric (ISO), concentric (CON) and eccentric (ECC) plantarflexions with submaximal activation levels (20% and 40% of maximal soleus surface EMG). Intramuscular EMG data was analyzed utilizing an intramuscular spike amplitude frequency histogram method. Average H/M ratio was always lowest in ECC (n.s.). Mean spike amplitude increased with activation level (P.05), whereas no significant differences were found between contraction types. Both H-reflex excitability, which may be due to an increase in presynaptic inhibition, and mean spike frequency were higher in YOUNG compared to OLD. In OLD the mean spike frequency was significantly smaller in CON compared to ISO. Lack of difference in mean spike amplitude and frequency across contraction types in YOUNG would imply a similar activation strategy, whereas the lower frequency in dynamic contractions in OLD could be related to synergist muscle behavior.

10.1016/j.jelekin.2009.12.005https://pubmed.ncbi.nlm.nih.gov/20117020