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[Rhythm in Infants, Reptilian Hunger, and the Science of Dream-Based Problem Solving]-[Babies got beat: Why rhythm might be innate]

Short Wave · B1 · 2026-02-06

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📋 Summary

Introduction

In this episode of NPR's Shortwave, hosts Regina Barber and Rachel Carlson, joined by Juana Summers, explore three distinct scientific frontiers: the innate musicality of newborns, the genetic basis of reptilian fasting, and the potential for sleep to serve as a catalyst for creative problem-solving.

Do Newborns Possess an Innate Sense of Rhythm?

The episode highlights a recent study published in PLOS Biology investigating how newborn babies perceive music. By playing Bach to sleeping infants and utilizing EEG monitoring, researchers sought to determine if babies could predict rhythm and melody. The findings suggest that while babies are not yet tracking melody, they are remarkably adept at tracking rhythm. Developmental neuroscientist Laurel Trainor notes that rhythm is a "fundamental" biological trait, present in the womb through the mother’s heartbeat and walking, as well as in the infant's own rhythmic movements like crawling or flailing. This suggests that the ability to predict rhythm is an ancient, innate human characteristic.

Genetic Clues to Reptilian Fasting

Transitioning to the animal kingdom, the hosts discuss the extraordinary metabolic capabilities of reptiles, some of which can survive without food for months or even a year. Researchers analyzing the genomes of over 100 reptile species discovered that certain snakes and chameleons have lost the genes responsible for producing ghrelin, the "hunger hormone" that regulates appetite and body weight in humans. This finding offers a potential explanation for why these animals can sustain long periods of fasting. Furthermore, the discussion touches upon the broader implications of animal research, noting that GLP-1 drugs—used to treat metabolic issues in humans—were partially inspired by research into Gila monster venom, underscoring how animal studies often yield surprising medical payoffs.

Can We Solve Problems in Our Sleep?

The final segment delves into the science of sleep and cognition. Cognitive neuroscientist Ken Paller conducted a study with "lucid dreamers" to see if sleep could help solve complex puzzles. Participants were exposed to a unique soundtrack while attempting to solve brain teasers. During REM sleep, researchers played the same soundtrack to "induce" dreams related to the specific puzzles. The results were compelling: participants were more than twice as likely to solve puzzles they dreamt about compared to those they did not. According to dream researcher Robert Stickgold, this provides evidence that dreams are not merely "entertainment" but act as a "catalyst for processing information and inducing creativity." This research brings scientists one step closer to understanding the evolutionary purpose of dreaming—that it is a functional state for cognitive consolidation and problem-solving.

Conclusion

This episode of Shortwave highlights the interconnectedness of biological systems, from the fundamental rhythmic nature of human infancy to the complex hormonal adaptations of reptiles and the creative potential of our sleeping minds. By examining these diverse topics, the podcast emphasizes how ongoing research continues to reshape our understanding of human and animal behavior.

🎯Key Sentences

1
Excited to be here.
2
I'm willing to go on this journey with you.
3
Snakes freak me out.
4
I just satisfied mine.
5
I did not know that.
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📝Key Phrases

1
start off with
2
hooked up to
3
innate sense
4
freak me out
5
go without
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📖 Transcript

This year's Grammys featured historic wins for Bad Bunny and Kendrick Lamar, lavish performances and occasional chaos.
And it was a night of speeches that reflected this moment in America.
Listen to a recap on Pop Culture Happy Hour in the NPR app or wherever you get your podcasts.
You're listening to Shortwave from NPR.
Hey, Show Ravers.
Regina Barber here.

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