ScienceIQ.com

Nematodes Are Everywhere

Nematodes are simple worms consisting of an elongate stomach and reproduction system inside a resistant outer cuticle (outer skin). Most nematodes are so small, between 400 micrometers to 5 mm long, that a microscope is needed to see them. Their small size, resistant cuticle, and ability to adapt to severe and changing environments have made ...

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NematodesAreEverywhere
Astronomy

Saturn: The Basics

To ancient astronomers, Saturn was a wandering light near the edge of the known universe. The planet and its rings have been objects of beauty and wonder ever since Galileo noticed the 'cup handles' ... Continue reading

SaturnTheBasics
Astronomy

Mission: Gather Comet Dust; Return To Earth

One of the most imaginative NASA missions of recent years is the Stardust mission. Its main purpose: to gather dust and particles from comet P/Wild 2 and return them to Earth for study. Think about ... Continue reading

CometDust
Astronomy

Backyard Telescopes for New Planets. Is it Possible?

Fifteen years ago, the largest telescopes in the world had yet to locate a planet orbiting another star. Today telescopes no larger than those available in department stores are proving capable of ... Continue reading

BackyardTelescopes
Biology

Synchronicity

There's something called synchronicity that we've probably all experienced at one time or another. Some people prefer the term 'meaningful coincidence.' You're thinking about your friend from high ... Continue reading

Sinchronicity

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!