Showing posts with label cognition. Show all posts
Showing posts with label cognition. Show all posts

Friday, September 19, 2008

The Bilingual Brain

Here is a great article from the Society for Neuroscience in Washington, D.C.
The brain is an organ which is designed to receive sensory information and produce some type of motor output. The more you stimulate the brain with thinking activities and movement the more it will reward you.

Chiropractic is great for the brain because it releases locked up joints which contain motion receptors. When the joints are moving properly these receptors fire information to the brain. And when the joints are locked up or fixated they cannot fire off to the brain. The chiropractic adjustment does three things:

  1. it restores motion to the joint
  2. it fires off those receptors
  3. decreases muscle spasm

Having moved from the U.S. to Israel I'm slowly learning to speak Hebrew. It's good to know that all the struggle to learn a new language may pay off with increased brain function!


As scientists unlock more of the neurological secrets of the bilingual brain, they're learning that speaking more than one language may have cognitive benefits that extend from childhood into old age.


Parlez vous francais? Sprechen Sie Deutsches? Hablas español? If so, and you also speak English (or any other language), your brain may have developed some distinct advantages over your monolingual peers. New research into the neurobiology of bilingualism has found that being fluent in two languages, particularly from early childhood, not only enhances a person’s ability to concentrate, but might also protect against the onset of dementia and other age-related cognitive decline.

These discoveries are leading to:
A better understanding of how the brain organizes speech and communication tasks.
Greater insight into how specific types of brain activity may prevent or delay dementia and other age related cognitive problems.

More targeted and effective therapies for helping bilingual individuals recover their communication skills after a brain injury.

Bilingualism is common in the United States. According to the U.S. Census Bureau, about 18 percent of Americans speak a language other than English at home. Of those, three-quarters also report that they speak English “well” or “very well”—a strong indication that they are bilingual.
Until fairly recently, parents and educators feared that exposing children to a second language at too early an age might not only delay their language skills but harm their intellectual growth. New research, however, has found that bilingual children reach language milestones (such as first word and first fifty words) at the same age as monolingual children. Nor do they show any evidence of eing “language confused.”

In fact, being bilingual may give children an advantage at school. Bilingual preschoolers have been found to be better able than their monolingual peers at focusing on a task while tuning out distractions. A similar enhanced ability to concentrate—a sign of a well-functioning working memory—has been found in bilingual adults, particularly those who became fluent in two languages at an early age. It may be that managing two languages helps the brain sharpen—and retain—its ability to focus while ignoring irrelevant information.

Other research suggests that bilingualism may delay the onset of age-related dementia, including Alzheimer’s disease, by up to four years. Although scientists don’t know why bilingualism creates this “cognitive reserve,” some theorize that speaking two languages may increase blood and oxygen flow to the brain and keep nerve connections healthy—factors thought to help ward off dementia.

More recently, scientists have discovered that bilingual adults have denser gray matter (brain tissue packed with information-processing nerve cells and fibers), especially in the brain’s left hemisphere, where most language and communication skills are controlled. The effect is strongest in people who learned a second language before the age of five and in those who are most proficient at their second language. This finding suggests that being bilingual from an early age significantly alters the brain’s structure.

Exactly how the brain organizes language in bilingual individuals has been debated for many years. Is each language “stored” in its own area of the brain or in overlapping regions? Thanks to technological advances in brain imaging, scientists have recently discovered that the processing of different languages occurs in much of the same brain tissue. However, when bilinguals are rapidly toggling back and forth between their two languages—that is, in “bilingual mode”—they show significantly more activity in the right hemisphere than monolingual speakers, particularly in a frontal area called the dorso-lateral prefrontal cortex (the source of the bilingual advantages in attention and control). This expanded neural activity is so prominent and predictable on brain scans that it serves as a “neurological signature” for bilingualism.

Finally, neuroscience research is showing promise for evaluating and treating bilingual patients who lose the ability to produce or understand speech after a brain injury. Research is showing that rehabilitation efforts that use both languages, not just one—even a patient’s native language—hold the greatest promise for recovery.



Reprinted by permission from Macmillan Publishers Ltd: Nature. 2004 Oct 14;431:757. ©2004.
Brain scans of bilingual individuals found greater gray-matter density (yellow) in the inferior parietal cortex, an area in the brain’s language-dominant left hemisphere. The density was most pronounced in people who were very proficient in a second language and in those who learned a second language before the age of five.

Wednesday, August 27, 2008

Training-Induced Brain Structure Changes In The Elderly

This is amazing information! In this age of dementia, Alzheimer's, and Parkinson's we have here evidence that the brain is always plastic. By inputting information into the brain the output will be the reward of better cognition and function. I don't mean to say that learning to juggle will stave off these diseases but anything that improves brain function gives you a better chance. And this goes to show that "you can't teach an old dog new tricks" simply doesn't hold water. The brain is always ready to receive new information and reward it's owner with improved function.

Chiropractic care is a great way to improve brain function and don't forget that your brain controls the rest of your body! How does it do this? In every muscle and joint there are tiny receptors (structures that receive information). When we move they are activated and fire their information into the Central Nervous System (the spine and brain). When this happens the brain is happy and lights up. The brain celebrates this input by sharing it with the rest of the body and you benefit with better function of your organs and total physiology.

Sometimes joints become locked or fixated and muscles become weak or tight. This can be due to many reasons. Chemical, physical, structural, emotional, etc. Locked up motion receptors no longer feed information into the brain and so you have both a local (at the joint) and global (throughout the body) decrease of function. Some of these changes are slow and even imperceptible for decades and sometimes the effects are more immediate. Either way its just a matter of time before a problem is perceived. Remember that by the time you perceive pain the problem has been there building up for some time! This is outside of the occurrence of a traumatic accident.

Locked up motion receptors have effectively gone off line and the brain no longer recognizes the level of the the locked up joint.

The chiropractic adjustment does three main things to reverse this:

  1. It restores the normal range of motion to the joint
  2. It puts a quick stretch in the muscle
  3. It provides a barrage information into those receptors

When this happens those receptors which were locked up and still now scream to the brain "We're still here. We just couldn't talk to you for awhile." The brain is only too happen to hear this since it just received a huge message from those joint levels and brings them back online. Function is now improved. And those tight muscles just received a quick stretch which helps them relax and perform better. Best of all you feel better, looser, lighter, with less stress due to the release of endorphins and enkephalins from the brain's natural pharmacy.

Chiropractic promotes plasticity of the brain and nervous system. It promotes joint structure and function. It promotes health.



From Faculty of 1000 Medicine


Training-Induced Brain Structure Changes In The Elderly: Commentary from F1000

Posted 08/15/2008

Lutz JänckeAuthor Information

Boyke J, Driemeyer J, Gaser C, Büchel C, May AJ Neurosci 2008 Jul 9 28(28):7031-5
Commentary from Faculty Member Lutz Jäncke


This is the first study published so far demonstrating cortical plasticity in the elderly and, thus, supports the view that cortical integrity and possibly cognitive functions can be shaped by training, even in the elderly. One of the most interesting and possibly important findings in cognitive neuroscience has been the discovery that the human brain can be shaped by experience. In this context, it has been shown that even specific characteristics of brain anatomy (e.g. gray and white matter density) can be changed by experience. This study demonstrates that gray matter changes can even be induced in the elderly. The authors of this study focused on healthy elderly citizens (on average 60 years of age) and conducted a training study during which these subjects learned three-ball cascade juggling. It turned out that senior citizens learned to juggle but with less proficiency compared with adolescents. However, similar to the young group, gray matter changes in the older brain related to skill acquisition were observed in area hMT/V5 (middle temporal area of the visual cortex). A further finding relates to the hippocampus and reveals that elderly volunteers who learned to juggle showed transient increases in gray matter in the hippocampus on the left side and in the nucleus accumbens bilaterally.

Faculty of 1000 Medicine Evaluations, Dissents and Author responses for: [Boyke J et al. Training-induced brain structure changes in the elderly. J Neurosci 2008 Jul 9 28 (28):7031-5]. 2008 Jul 17.
www.f1000medicine.com/article/id/1115644/evaluation