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Rehabilitation intervention in animal model can improve neuromotor and cognitive functions after traumatic brain injury: pilot study

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The aim of the present study was to quantify the effect of multisensory rehabilitation on rats’ cognition after an experimental brain trauma and to assess its possible clinical implications. The complex intermittent multisensory rehabilitation consisted of currently used major therapeutic procedures targeted at the improvement of cognitive functions; including multisensory and motor stimulation and enriched environment. We have confirmed this positive effect of early multisensory rehabilitation on the recovery of motor functions after traumatic brain injury. However, we have been able to prove a positive effect on the recovery of cognitive functions only with respect to the frequency of efficient search st rategies in a Barnes maze test, while results for search time and travelled distance were not significantly different between st udy groups. We have concluded that the positive effects of an early treatment of functional deficits are comparable with the clinical results in early neurorehabilitation in human patients after brain trauma. It might therefore be reasonable to apply these experimental results to human medical neurorehabilitation care.
Library of the Czech Academy of Sciences
Title: Rehabilitation intervention in animal model can improve neuromotor and cognitive functions after traumatic brain injury: pilot study
Description:
The aim of the present study was to quantify the effect of multisensory rehabilitation on rats’ cognition after an experimental brain trauma and to assess its possible clinical implications.
The complex intermittent multisensory rehabilitation consisted of currently used major therapeutic procedures targeted at the improvement of cognitive functions; including multisensory and motor stimulation and enriched environment.
We have confirmed this positive effect of early multisensory rehabilitation on the recovery of motor functions after traumatic brain injury.
However, we have been able to prove a positive effect on the recovery of cognitive functions only with respect to the frequency of efficient search st rategies in a Barnes maze test, while results for search time and travelled distance were not significantly different between st udy groups.
We have concluded that the positive effects of an early treatment of functional deficits are comparable with the clinical results in early neurorehabilitation in human patients after brain trauma.
It might therefore be reasonable to apply these experimental results to human medical neurorehabilitation care.

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