The control of postural sway depends on the dynamic integration of multisensory information in the Central Nervous System. Augmentation of sensory information, such as during auditory biofeedback (ABF) of the trunk acceleration, has been shown to improve postural control. We evaluated, by means of quantitative electroencephalography (EEG), which are the basic processes in the brain involved in the perception and cognition of auditory signals used for ABF. ABF and Fake ABF (FAKE) auditory stimulations were delivered to 10 healthy naive subjects during quiet standing postural tasks, with eyes open and closed. Trunk acceleration and 19-channels EEG were recorded at the same time. Advanced, state-of-the-art EEG analysis and source modeling meth...
Although both visual and audio biofeedback (BF) systems for postural control can reduce sway during ...
Anticipatory postural adjustments (APAs) are usually generated to minimize the potential postural di...
Although both visual and audio biofeedback (BF) systems for postural control can reduce sway during ...
The control of postural sway depends on the dynamic integration of multisensory information in the C...
The control of postural sway depends on the dynamic integration of multi-sensory information in the ...
Abstract Background Good balance depends on accurate and adequate information from the senses. One w...
The importance of sensory feedback for postural control in stance is evident from the balance improv...
The importance of sensory feedback for postural control in stance is evident from the balance improv...
Augmented sensory biofeedback (BF) for postural control is widely used to improve postural stability...
Biofeedback is known to improve postural control and reduce postural sway. However, the effects that...
Abstract Objective Cerebellar ataxia essentially includes deficient postural control. It remains u...
Augmented sensory biofeedback training is often used to improve postural control. Our previous study...
Augmented sensory biofeedback training is often used to improve postural control. Our previous study...
The objective of the present work is to measure postural kinematics and power spectral variation fro...
Although both visual and audio biofeedback (BF) systems for postural control can reduce sway during ...
Anticipatory postural adjustments (APAs) are usually generated to minimize the potential postural di...
Although both visual and audio biofeedback (BF) systems for postural control can reduce sway during ...
The control of postural sway depends on the dynamic integration of multisensory information in the C...
The control of postural sway depends on the dynamic integration of multi-sensory information in the ...
Abstract Background Good balance depends on accurate and adequate information from the senses. One w...
The importance of sensory feedback for postural control in stance is evident from the balance improv...
The importance of sensory feedback for postural control in stance is evident from the balance improv...
Augmented sensory biofeedback (BF) for postural control is widely used to improve postural stability...
Biofeedback is known to improve postural control and reduce postural sway. However, the effects that...
Abstract Objective Cerebellar ataxia essentially includes deficient postural control. It remains u...
Augmented sensory biofeedback training is often used to improve postural control. Our previous study...
Augmented sensory biofeedback training is often used to improve postural control. Our previous study...
The objective of the present work is to measure postural kinematics and power spectral variation fro...
Although both visual and audio biofeedback (BF) systems for postural control can reduce sway during ...
Anticipatory postural adjustments (APAs) are usually generated to minimize the potential postural di...
Although both visual and audio biofeedback (BF) systems for postural control can reduce sway during ...