6533b870fe1ef96bd12cf2b6

RESEARCH PRODUCT

Whole body frontal plane mechanics across walking, running, and sprinting in young and older adults

Juha-pekka KulmalaHarri SuominenAri HeinonenJanne AvelaMarko KorhonenAki MikkolaS. Kuitunen

subject

AdultMalePhysical Therapy Sports Therapy and RehabilitationKinematicsgaitPelvisjuoksuYoung Adultwalking03 medical and health sciencesSpatio-Temporal Analysis0302 clinical medicinerunningmedicineHumansOrthopedics and Sports MedicineRange of Motion ArticularMuscle Skeletalfrontal plane mechanicsPelvisAgedBalance (ability)Aged 80 and overbusiness.industryagingTorsota3141ta3142030229 sport sciencesMechanicsMiddle AgedTorsoTrunkGaitBiomechanical Phenomenakävelyikääntyminenmedicine.anatomical_structuresprintingkinematicskineticsCoronal planeHip JointAdductor musclesbusiness030217 neurology & neurosurgery

description

This study investigated the whole body frontal plane mechanics among young (26 ± 6 years), early old (61 ± 5 years), and old (78 ± 4 years) adults during walking, running, and sprinting. The age-groups had similar walking (1.6 m/s) and running (4.0 m/s) speeds, but different maximal sprinting speed (young 9.3 m/s, early old 7.9 m/s, and old 6.6 m/s). Surprisingly, although the old group exerted much lower vertical ground reaction force during running and sprinting, the hip frontal plane moment did not differ between the age-groups. Kinematic analysis demonstrated increased hip adduction and pelvis drop, as well as reduced trunk lateral flexion among old adults, especially during sprinting. These alterations in the hip and pelvis motions may reflect insufficient force production of hip abductors to stabilize the pelvis during single-limb support, while limited trunk lateral flexion may enhance control of the mediolateral balance. On the other hand, larger trunk side-to-side movement among the young and early old adults may provide a mechanism to prevent the increase of the hip frontal moment despite greater vertical ground reaction force. This, in turn, can assist hip abductors to maintain stability of the pelvis during sprinting while allowing powerful force generation by a large adductor muscle group.

https://doi.org/10.1111/sms.12709