Optic flow improves adaptability of spatiotemporal characteristics during split-belt locomotor adaptation with tactile stimulation
نویسندگان
چکیده
منابع مشابه
A novel optic flow pattern speeds split-belt locomotor adaptation.
Visual input provides vital information for helping us modify our walking pattern. For example, artificial optic flow can drive changes in step length during locomotion and may also be useful for augmenting locomotor training for individuals with gait asymmetries. Here we asked whether optic flow could modify the acquisition of a symmetric walking pattern during split-belt treadmill adaptation....
متن کاملOptic Flow Drives Human Visuo-Locomotor Adaptation
Two strategies can guide walking to a stationary goal: (1) the optic-flow strategy, in which one aligns the direction of locomotion or "heading" specified by optic flow with the visual goal; and (2) the egocentric-direction strategy, in which one aligns the locomotor axis with the perceived egocentric direction of the goal and in which error results in optical target drift. Optic flow appears t...
متن کاملKinetic adaptation during locomotion on a split-belt treadmill.
It has been suggested that a feedforward control mechanism drives the adaptation of the spatial and temporal interlimb locomotion variables. However, the internal representation of limb kinetics during split-belt locomotion has not yet been studied. In hand movements, it has been suggested that kinetic and kinematic parameters are controlled by separate neural processes; therefore, it is possib...
متن کاملMode-dependent control of human walking and running as revealed by split-belt locomotor adaptation.
Here, we investigate the association of neural control between walking and running, and in particular, how these two gait modes at different velocities are controlled by the central nervous system. The subjects were fully adapted by acquiring modified motor patterns to either walk or run on a split-belt treadmill driven in split mode (asymmetry in the velocities of two belts at 1.0 and 2.0 m s(...
متن کاملLocomotor adaptation on a split-belt treadmill can improve walking symmetry post-stroke.
Human locomotion must be flexible in order to meet varied environmental demands. Alterations to the gait pattern occur on different time scales, ranging from fast, reactive adjustments to slower, more persistent adaptations. A recent study in humans demonstrated that the cerebellum plays a key role in slower walking adaptations in interlimb coordination during split-belt treadmill walking, but ...
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ژورنال
عنوان ژورنال: Experimental Brain Research
سال: 2015
ISSN: 0014-4819,1432-1106
DOI: 10.1007/s00221-015-4484-5