Most people still believe that learning happens in the brain and the body doesn’t play a role.  See how teachers insist that children sit still without any fidgeting with any part of the body when in the classroom.

In the past, children could make up for this body neglect by using their bodies in all kinds of activities after school hours.  They used to climb, run, tumble, dig, fall into ditches and fall out of trees.  The change isn’t all due to TV and screen time but also because today’s families live in small homes without access to open play areas.   Long hours are spent in commuting to and from school. The streets have become dangerous places.  It’s been estimated that children are spending 25% less time on free play than they did in their grandparents’ time.

The reality is that the brain needs the body’s movement in order to create the neural pathways that make ease of learning possible.  You can’t make a child learning ready with workbooks, i-pad games or computer programmes.  It develops as children’s brains mature along with experiences occurring as a result of bodily sensation and movement.

Important movements are the early reflexes, followed by large body movements such as climbing, jumping, swimming, playing hopscotch, catching and throwing balls, riding bicycles, running, skipping, sweeping and digging.  Smaller body movements develop fine motor skills, such as cutting vegetables, drawing, building with blocks, moving to music and learning rhythm through clapping, singing and so on.   Movements that need crossing the midline help build the pathways connecting the two brain hemispheres and are crucial for learning to read, write and understand maths.

Children love to move; they need to move.  If their bodies are given the chance needed to move in play, they will develop to a stage of learning readiness.  Perhaps not all of them will reach this stage at exactly the same time but we do have the genetic potential to be wired to learn.

So limit sedentary time.  Push your children out of doors.  Make sure you spend quality time in play parks or open spaces over the weekends – with due care for Covid-19 safety, of course.  Buy body healthy toys like trampolines, skipping ropes and balance boards rather than the latest hi-tech toy.   Go back to basics if you really want your child to reach his or her potential at school.

 

Martin Doherty, writing for The Conversation, says that at the age of about four, children reach important milestones in brain development.

One of these is a huge improvement in understanding others’ thoughts and feelings. This is the start of empathy.  Another is in spatial thinking—understanding how objects are positioned and related. This is the beginning of the ability to read maps.

Martin and his colleague, Catherine Sayer, conducted a study with 175 two to five-year-olds to explore how children are able to use scale models to figure out where something is in the real world. At about four, children are able to use a scale model of a room to work out where something is. We thought that this might result from children’s understanding of how one thing can represent something else. But we actually found that four-year-olds’ ability to use scale models came from their spatial abilities.

At the same age, children start to understand that someone’s behaviour is due to what that person believes, not necessarily what is really the case. This has interesting consequences.

If you’ve played hide-and-seek with young children, you may have noticed that they aren’t always very good at it. They love the ritual of looking in all the wrong places first, but beforehand they may tell you where they are going to hide, hide in the same place every time, or not be especially hidden.

After their fourth birthday, they get much better at hide and seek. They understand that the seeker looks in the wrong places because they don’t know where the hider is.

At about three to four children also start to tell lies. They realize they can make someone believe something that isn’t true.

Understanding symbols

Martin’s earlier research with fellow psychologist Josef Perner suggests that four-year-olds don’t just start to understand how others’ minds work. Figuring this out is part of the development of an understanding of “representation”—that symbols, like thoughts, words, or pictures, can be used to stand for something else.

Children start to think about how words relate to objects. This means, for instance, knowing that “animal” can refer to something you already have a name for, such as “rabbit”. This might help children learn the new word.

Their ability to use a understand the components of pictures also improves around this age. Very young children use a lot of trial and error to complete a jigsaw, picking up random pieces to see if they fit. By the time they are about four years old, they start to use the picture as a guide, trying to connect lines and match bits of colour, while checking the guide picture on the box lid.

Developmental experiments

Another ability children develop at around four is using scale models. A classic set of developmental experiments involved a model of a regular household room. The real room had typical furniture—sofa, table, cupboard and so on—and the model had miniature versions laid out in the same way.

Children were shown where something was hidden in the model and told to find an object hidden in “the same place” in the room. Children of around four can find the object using the identical layouts. If shown a sticker under a particular chair in the model room, for example, they can go straight to the “same” chair in the other room. This is the fundamental understanding required to read maps.

Adults see scale models and maps as representations. Maps represent a town or a country. A scale model of, say, the Eiffel Tower represents the real thing. At first, Martin suspected children’s ability to use scale models is more evidence of understanding representation at this age.

He was wrong. Instead, the researchers found that this ability is based on a development in children’s spatial abilities that also occurs at about four. This is the ability to think about spaces and where objects are within them. Spatial abilities help with maths skills, and good spatial ability is linked to an interest in science, technology, engineering and mathematics.

Their experiment was simple. They compared the model room task with a test of understanding how representation works. The two abilities develop around the same age, but they found they were not related. Children who could do one task couldn’t necessarily do the other.

They also had a test of purely spatial ability. Children who passed the model room task also passed the spatial task. So it looks like the model room task relied on children‘s spatial thinking.

They don’t yet know why two important but apparently unrelated abilities arise at the same time. Perhaps it’s related to changes in the growing brain at this  interesting age.

Provided by The Conversation

Image supplied by Freepik.