What does music do to our brains, or did Einstein really know what he was doing?


Einstein playing his violin in 1931, aboard the S.S. Belgenland, travelling from New York to San Diego. Vintage Everyday image.

Einstein playing his violin in 1931, aboard the S.S. Belgenland, travelling from New York to San Diego. Vintage Everyday image. Einstein claimed to get great joy from his violin. Did it also help his physics work?

Albert Einstein played a mean violin. I don’t think any recordings exist, but some say he was good enough to have earned a slot in a decent symphony.

Albert Schweitzer made money to support his work for health in Africa by offering organ recitals.

Thomas Edison liked to hire men in his lab who played instruments. In the midst of high pressure experimentation, they would often take a break as a group, and do a performance just for themselves.

People who make music often claim they do it to relax, but there may be more than mere relaxation going on when we play an instrument or sing. It’s possible making music makes us better at doing other things, too.

Should we be surprised this showed up from the World Economic Forum?

It’s an article by Assal Habibi who is a researcher at the Brain and Creativity Institute at the University of Southern California, at the website of WEF, explaining where his group is going to find out how music training affects the way we think and work.

Over the past two decades, several investigators have reported differences in the brain and behavior of musicians compared to nonmusicians.

Music training has been found to be related to better language and mathematical skills, higher IQ and overall greater academic achievement. Also, differences between musicians and nonmusicians have been found in areas of the brain related to hearing and movement, among others.

However, the interpretation of the findings remains unclear. For example, the differences reported between adult musicians and nonmusicians might be due to long-term intensive training or might result primarily from inherent biological factors, such as genetic makeup.

Or, as with many aspects of the nature-versus-nurture debate, the differences may well result from contributions of both environmental and biological factors.

One way to better understand the effects of music training on child development would be to study children before they start any music training and follow them systematically after, to see how their brain and behavior change in relation to their training.

It would involve including a comparison group, as all children change with age. The ideal comparison group would be children who participate in equally socially interactive but nonmusical training, such as sports. Follow-up assessments after their training would reveal how each group changes over time.

Go take a look.

If you’re a teacher, ask whether you should be incorporating more music into your social studies, language or science classes. If you’re a manager or employer, ask whether you should be encouraging your team members to find musical outlets.

If you’re just curious, ask whether you wouldn’t be better off to volunteer in a local choir or band.

Maybe we should all dance to beats of different drummers, and violinsts, and guitarists, and clarinetists and . . .

Three years of this study remain. But these interim results are promising. They support previous findings on the positive impact of music training on brain development.

Our findings suggest that music training during childhood, even for a period as brief as two years, can accelerate brain development and sound processing. We believe that this may benefit language acquisition in children given that developing language and reading skills engage similar brain areas. This can particularly benefit at-risk children in low socioeconomic status neighborhoods who experience more difficulties with language development.

Should we be using this tool to better educate our kids?

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