Advancing age affects gait adaptability, but it is unclear if such adaptations to split-belt perturbations are already affected at middle-age. Changes in neuromuscular control, that already start at middle-age, may underlie the age-related changes in gait adaptation. Thus, we examined the effects of age on adaptations in gait and muscle activation patterns during split-belt walking in healthy young and middle-aged adults. Young (23.3±3.13 years) and middle-aged adults (55.3±2.91 years) walked on an instrumented split-belt treadmill. Both age groups adapted similarly by reducing asymmetry in step length and double support time. Surface EMG was recorded from eight leg muscles bilaterally. Principal Component Analysis (PCA) was applied to the ...
The ability to rapidly adjust gait to cope with unexpected mechanical perturbations declines with ag...
Age-related changes cause more fall-related injuries and impede the recoveries by older adults compa...
International audienceIntroduction: Aging leads to alterations not only within the complex subsystem...
Advancing age affects gait adaptability, but it is unclear if such adaptations to split-belt perturb...
Human walking is highly adaptable, which allows us to walk under different circumstances. With aging...
Abstract The split-belt treadmill has been used to examine the adaptation of spatial and temporal ga...
The ability to flexibly respond and adapt the walking pattern over time to unexpected gait perturbat...
Introduction The ability to adapt dynamic balance to perturbations during gait deteriorates with age...
Background: Age-related changes in the sensorimotor system and cognition affect gait adaptation, esp...
Human walking has evolved from walking on four legs to walking on two legs. During walking on two le...
The influence of age on spinal muscle activation patterns and its relation to kinematics is poorly u...
This study examined the neuromuscular adaptations of young and old adults in response to a challenge...
Recent findings have shown that neural circuits located in the spinal cord drive muscular activation...
Purpose: Human sensory and motor systems deteriorate with age. When walking, older adults may theref...
Katherine RudolphIt is well established that humans adapt to sudden or unexpected perturbations thro...
The ability to rapidly adjust gait to cope with unexpected mechanical perturbations declines with ag...
Age-related changes cause more fall-related injuries and impede the recoveries by older adults compa...
International audienceIntroduction: Aging leads to alterations not only within the complex subsystem...
Advancing age affects gait adaptability, but it is unclear if such adaptations to split-belt perturb...
Human walking is highly adaptable, which allows us to walk under different circumstances. With aging...
Abstract The split-belt treadmill has been used to examine the adaptation of spatial and temporal ga...
The ability to flexibly respond and adapt the walking pattern over time to unexpected gait perturbat...
Introduction The ability to adapt dynamic balance to perturbations during gait deteriorates with age...
Background: Age-related changes in the sensorimotor system and cognition affect gait adaptation, esp...
Human walking has evolved from walking on four legs to walking on two legs. During walking on two le...
The influence of age on spinal muscle activation patterns and its relation to kinematics is poorly u...
This study examined the neuromuscular adaptations of young and old adults in response to a challenge...
Recent findings have shown that neural circuits located in the spinal cord drive muscular activation...
Purpose: Human sensory and motor systems deteriorate with age. When walking, older adults may theref...
Katherine RudolphIt is well established that humans adapt to sudden or unexpected perturbations thro...
The ability to rapidly adjust gait to cope with unexpected mechanical perturbations declines with ag...
Age-related changes cause more fall-related injuries and impede the recoveries by older adults compa...
International audienceIntroduction: Aging leads to alterations not only within the complex subsystem...