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Ancient Planet in a Globular Cluster Core

Long before our Sun and Earth ever existed, a Jupiter-sized planet formed around a sun-like star. Now, 13 billion years later, NASA's Hubble Space Telescope has precisely measured the mass of this farthest and oldest known planet. The ancient planet has had a remarkable history because it has wound up in an unlikely, rough neighborhood. It orbits a ...

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GlobularClusterCore
Biology

Genome Mapping: A Guide To The Genetic Highway We Call The Human Genome

Imagine you're in a car driving down the highway to visit an old friend who has just moved to Los Angeles. Your favorite tunes are playing on the radio, and you haven't a care in the world. You stop ... Continue reading

GenomeMappingHumanGenome
Physics

Nuclides & Isotopes

An atom that has an unbalanced ratio of neutrons to protons in the nucleus seeks to become more stable. The unbalanced or unstable atom tries to become more stable by changing the number of neutrons ... Continue reading

NuclidesIsotopes
Geology

Pyroclastic Flows: Deadly Rivers of Rock

A volcano, during a violent eruption, blasts massive amounts of heated rock fragments, hot gas and ash out vents and collapsing domes. This sudden outpouring of superheated material reaches ... Continue reading

VolcanoFlows
Astronomy

The First Starlight

Imagine being able to see our Universe 14 billion years ago when it was just a baby. If we had a time machine, we could go back and watch how its infant features emerged after the Big Bang. There are ... Continue reading

FirstStarlight

Electricity and the Brain

BrainElectricityA child's electric train and our brains have something in common. They both require electricity for any activity to take place. But the brain uses electricity in a much different way than a toy train.

In 1791, Italian scientist Luigi Galvani demonstrated that electrical forces not only existed in the body, but that electricity also played a dynamic role in the operations of nerves and muscles. Galvani's experiments showed that it was possible to activate the motor nerves connected to a frog's leg muscles by introducing a mild electrical current. His conclusion that muscle movements were proof of electricity flowing between the nerves and the muscles was an erroneous deduction. However, his research took the emerging study of the electrochemical basis of neural activity and pointed it in the right direction. Galvani's astonishing discoveries inspired Mary Shelley's 1818 novel 'Frankenstein,' which served as a testament to the torrent of public curiosity in scientific research that was unleashed by Galvani's fascinating research findings.

In the early 1900's, teams of researchers confirmed the existence of electrical pulses traveling through brain cells. Today, we know that motor and cognitive functions rely on a combined electro-chemical neural process. Neurons, the 'network communicators' inside the brain, transmit messages to one another by sending electrical signals down the neuron's elongated axon. But the release of electrical signals is just the first step. The electrical signal triggers the release of neurotransmitters, which carry chemical messages to the adjoining neurons along an elaborate neural circuit. Nonetheless, the flow of electrons that we describe as an electrical current allows our brains to orchestrate walking, reading, creating and vast range of activities in the repertoire of human behavior.