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Right Brain, Left Brain, Whole Brain

By Barbara D. Lopez


Some kids are right-brain dominant. They're creative. They think out of the box. They dance and do art. They usually don't like math.Other kids are left-brain dominant. They take things apart to figure out how they work. They like order. They think about things and ask lots of questions. Math is often their favorite subject.Nothing wrong with this, except that school is generally a left-brain dominant institution, especially as kids progress on to high school and then college. Although we're getting better at teaching to individual differences in grade school, left-brain teaching remains the norm in high school.

But just in case you're asked that question about poetry any time soon, and you want to have something to say without spluttering in indignation, I thought I'd throw together a few little-know facts about the effect poetry has on children's brains (and ours, for that matter).

And teachers report more and more right-brain dominant kids in their classrooms. So how will these kids succeed in high school and college? And what if they want to go on to medical school, law school, maybe become engineers? How can we help them?Learning to use the whole brain solves the problem. Learning how to diminish right-brain or left-brain dominance so they're using both sides equally. So what does this mean? And how do you do it?

First, let's take a look first at how the frontal lobes of the brain's neocortex work. This is the part of the brain right behind your forehead. The left side and the right side are connected by a fibrous band in the middle called the "corpus callosum." In order to use both sides of the brain, neurons on the left side have to be connected to neurons on the right side. In other words, the electrical charge between brain cells has to pass across the corpus callosum. O.K. that's the theory part.

Now the action part. How do you get this neuronal pattern? How do you get these synapses across the corpus callosum? It's really quite simple. Every time you cross your body's midline, you make neuronal patterns between the right and left side. Right-brain dominant kids are now able to use more of their left brain. And left-brain dominant kids able to use more of their right brain. Just get them moving. Walking while swinging their arms. Skipping. Playing ball. Dancing. Running. Since moving is key, perhaps we're seeing more right-brain dominant kids because kids are less active.

And beyond the obvious aid to memory, poetry also offers an enhanced understanding of language. It forces our brains to think laterally, to join together different sensory impressions and associations. That kind of layered thinking has been shown, in live MRI tests, to wake up multiple areas of the brain at once. For kids who struggle with language skills, poetry offers an engaging, memorable stealth technology, a way of getting past the brain's standard verbal filters to a deeper language network.

We usually think about why two people never think in a similar manner. Perceptions differ according to the individuals. The brain is in integral and crucial part of the human body. We all have got one brain, but even then why do we follow the concept of left brain and right brain? The different thinking between two people leads to the discovery of the left brain and right brain concept. Many researchers had come up with different theories, but they were unable to prove the concept.

Visual stimulation from the left side in a checkerboard pattern using different colors comes up through the optic pathway to the brain stem and up to the right brain. The T.E.N.S. unit set at subthreshold stimulates large diameter nerves which fire up to the cerebellum and to the opposite brain.




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