Recent research on how our brains can heal after injuries has revealed some important results:
Better Rehab Techniques: Studies show that using virtual reality in personal rehab programs can help people recover motor functions by as much as 56%. That's a big improvement!
New Brain Cells: Research suggests that being in a lively, enriched environment can boost the creation of new brain cells in a part of the brain called the hippocampus by about 30%. This shows that our brains can make new cells even after an injury.
Stem Cells Help: Adult stem cells are showing promise in helping people recover. Clinical trials have found a 40% improvement in recovery when stem cell therapy is used alongside regular rehab.
Electrical Stimulation: A method called transcranial direct current stimulation (tDCS) has helped stroke patients improve their motor functions by around 35%. This technique helps the brain reorganize itself.
Overall, these findings highlight how we can use the brain's ability to adapt, known as neuroplasticity, to help with effective recovery from brain injuries.
Recent research on how our brains can heal after injuries has revealed some important results:
Better Rehab Techniques: Studies show that using virtual reality in personal rehab programs can help people recover motor functions by as much as 56%. That's a big improvement!
New Brain Cells: Research suggests that being in a lively, enriched environment can boost the creation of new brain cells in a part of the brain called the hippocampus by about 30%. This shows that our brains can make new cells even after an injury.
Stem Cells Help: Adult stem cells are showing promise in helping people recover. Clinical trials have found a 40% improvement in recovery when stem cell therapy is used alongside regular rehab.
Electrical Stimulation: A method called transcranial direct current stimulation (tDCS) has helped stroke patients improve their motor functions by around 35%. This technique helps the brain reorganize itself.
Overall, these findings highlight how we can use the brain's ability to adapt, known as neuroplasticity, to help with effective recovery from brain injuries.