ScienceIQ.com

NASA Hits a Hole-In-One

How are NASA and golf related? Ask the professional golfers using clubs made from NASA's space-age technology. NASA needed stronger, more durable materials for its space missions. A landmark discovery was made during a research project with vitrified metals in 1992. A vitrified metal is a frozen liquid that fails to crystallize during ...

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NASAHitsaHoleInOne
Geology

Weathering, Erosion, and Deposition

Weathering, erosion, and deposition are processes continually at work on or near earth's surface. Over time, these processes result in the formation of sedimentary rocks. Weathering occurs when rocks ... Continue reading

WeatheringErosionDeposition
Biology

How Do Bacteria Reproduce?

Bacteria are microorganisms that have been around for billions of years. How have they survived all that time? Microorganisms are experts at reproducing, not only can they produce new bacteria fast, ... Continue reading

HowDoBacteriaReproduce
Biology

Regeneration 101

So who is the greatest regeneration superhero of all? Among vertebrates the lowly salamander is the champion 'comeback kid.' We humans are pitiful by comparison. We can often regrow the tip of a ... Continue reading

Regeneration101
Astronomy

Jumping Starlight

'Twinkle, twinkle, little star, how I wonder what you are,' says the song by Jane Taylor. But stars don’t really twinkle; their light reaches the earth in a steady way. Why then do we see them ... Continue reading

JumpingStarlight

Take Two And Call Me In The Morning

AspirinAspirin has been used for hundreds of years to relieve pain and reduce inflammation. It belongs to a group of chemicals called salicylates and was originally derived from the bark of the willow tree. But how does aspirin work? When you fall down and scrape your knees, how does it know that it needs to go down to your legs? When you bruise an elbow, how does it know where to go to fix that pain?

First let us understand what happens when you get hurt in a fall. Your skin is covered with tiny nerve endings. Each is a little sensor that detects pressure, pain and heat. All these nerve endings communicate what they sense back to the brain. They do this by releasing chemical signals which are sent to the brain. When a nerve touches something lightly, the signal is not very strong. When you apply pressure or damage the nerve ending, it sends out a much stronger signal. Aspirin simply inhibits the release of the chemical, called prostaglandin, that creates the signal that our brains interpret as pain. In a way, the pain is still there, we just feel it less.

To answer our earlier question, aspirin doesn't really have any idea where to go to relieve the pain. When you swallow an aspirin it quickly gets into your bloodstream and travels throughout your body. If it finds a nerve ending that is generating prostaglandin, it interferes with its production. Something to consider is that while painkiller can reduce what your brain feels, you are still hurt. It doesn't automatically make your grazed knee better!