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One of the most common activities when these neural adaptations are constantly happening is walking.
Neural adaptation can occur for other than natural means.
Short term neural adaptations occur in the body during rhythmic activities.
The terms neural adaptation and habituation are often confused for one another.
However, when it comes to neural adaptation, we have no conscious control over it.
The process behind positive afterimages is unknown, though thought to be related to neural adaptation.
Studies have shown that there is neural adaptation after as little as one weight training session.
Due to neural adaptations, however, by early school-age, considerable development to those areas was observed.
Sensitivity to a prolonged stimulation tends to decline over time, leading to neural adaptation.
Neural adaptation has been observed in these movements in response to training or altered external conditions.
Studies in children with early childhood brain injuries have shown that neural adaptations slowly occur after the injury.
Olfactory fatigue is an example of neural adaptation or sensory adaptation.
Neurons coding a particular movement reduce their responses with time of exposure to a constantly moving stimulus; this is neural adaptation.
In the absence of fixational eye movements, visual perception may fade out or disappear due to neural adaptation.
Neural adaptation is also tied very closely to stimulus intensity, whereas habituation is not.
Neural adaptations can be contributed to changes in V-waves and the Hoffmann's reflex.
When a subjects' vision was subjected to the constant stimulus of a single color, neural adaptations occurred that made the subjects used to the color.
Chronic exposure to benzodiazepines causes neural adaptations that counteract the drug's effects, leading to tolerance and dependence.
Many universities are examining the effects of Neural Adaptation and how it can be used to improve current medical and rehabilitation techniques.
Habituation is an attentional phenomenon while neural adaptation is a physiological phenomenon.
Neural adaptation or sensory adaptation is a change over time in the responsiveness of the sensory system to a constant stimulus.
This showed that neural adaptation accounts for changes to functional properties of the spinal cord circuitry in humans without affecting organization of the motor cortex.
When the brain recognizes that the body is walking uphill, it makes neural adaptations that send more activity to muscles required for uphill walking.
Antidepressant drugs, such as those that cause down regulation of β- adrenergic receptors, can cause rapid neural adaptations in the brain.
Neural adaptation of neurons stimulated by downward movement reduces their baseline activity, tilting the balance in favor of upward movement.