The ground reaction force (GRF) recorded by a platform when a person stands upright lies at the interface between the neural networks controlling stance and the body sway deduced from centre of pressure (CoP) displacement. It can be decomposed into vertical (VGRF) and horizontal (HGRF) vectors. Few studies have addressed the modulation of the GRFs by the sensory conditions and their relationship with body sway. We reconsidered the features of the GRFs oscillations in healthy young subjects (n = 24) standing for 90 s, with the aim of characterising the possible effects of vision, support surface and adaptation to repeated trials, and the correspondence between HGRF and CoP time-series. We compared the frequency spectra of these variables wit...
In this study an evaluation of visual feedback on the balance response to upright stance perturbatio...
Maintenance of safe upright static stance regardless of sensory input is imperative for completing a...
The body’s postural control mechanism is responsible for responding to perturbations of balance and ...
We addressed postural instability during stance with eyes closed (EC) on a compliant surface in heal...
Abstract Background Maintaining upright posture is an unstable task that requires sophisticated neur...
Introduction - Small amounts of sway can be seen during the standing position in human beings. This ...
When humans are asked to stand normally, they are not completely motionless. Rather, small amounts o...
Previous research has shown that the postural configuration adopted by a subject, such as active lea...
When humans are administered continuous and predictable perturbations of stance, an adaptation perio...
When humans are administered continuous and predictable perturbations of stance, an adaptation perio...
To investigate sensory reweighting as a fundamental property of sensor fusion during standing, we pr...
Sudden addition or removal of visual information can be particularly critical to balance control. Th...
To maintain upright posture and prevent falling, balance control involves the complex interaction be...
As different sensory inputs may lead to different balance control strategy, head sway, which closely...
We investigated the adaptation of balancing behavior during a continuous, predictable perturbation o...
In this study an evaluation of visual feedback on the balance response to upright stance perturbatio...
Maintenance of safe upright static stance regardless of sensory input is imperative for completing a...
The body’s postural control mechanism is responsible for responding to perturbations of balance and ...
We addressed postural instability during stance with eyes closed (EC) on a compliant surface in heal...
Abstract Background Maintaining upright posture is an unstable task that requires sophisticated neur...
Introduction - Small amounts of sway can be seen during the standing position in human beings. This ...
When humans are asked to stand normally, they are not completely motionless. Rather, small amounts o...
Previous research has shown that the postural configuration adopted by a subject, such as active lea...
When humans are administered continuous and predictable perturbations of stance, an adaptation perio...
When humans are administered continuous and predictable perturbations of stance, an adaptation perio...
To investigate sensory reweighting as a fundamental property of sensor fusion during standing, we pr...
Sudden addition or removal of visual information can be particularly critical to balance control. Th...
To maintain upright posture and prevent falling, balance control involves the complex interaction be...
As different sensory inputs may lead to different balance control strategy, head sway, which closely...
We investigated the adaptation of balancing behavior during a continuous, predictable perturbation o...
In this study an evaluation of visual feedback on the balance response to upright stance perturbatio...
Maintenance of safe upright static stance regardless of sensory input is imperative for completing a...
The body’s postural control mechanism is responsible for responding to perturbations of balance and ...