Human Eyes See Cosmic Bubbles that Algorithms Miss

In summary, a team of citizen scientists has discovered over 5,000 space bubbles in our Milky Way galaxy, indicating active star formation. This suggests that the Milky Way is a much more active star-forming galaxy than previously thought. The human brain's ability for pattern recognition is still unmatched by computer algorithms, as seen in examples such as identifying a familiar face in a crowd with just a split second glimpse. This skill has also led to the discovery of planets in data analyzed by NASA's Kepler team.
  • #1
Dotini
Gold Member
635
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I thought this story was charming, since it hints that there still might be a few things people can do that computers cannot (yet) do. I have no idea of the significance of these bubbles, but I'd be interested to hear others comments.

http://www.space.com/14846-milkyway-space-bubbles-citizen-science.html
More than 5,000 space bubbles have been discovered in the disk of our Milky Way galaxy by a team of part-time citizen scientists.

These bubbles are blown by young, hot stars into the surrounding gas and dust, and indicate areas of brand-new star formation, scientists say.

"These findings make us suspect that the Milky Way is a much more active star-forming galaxy than previously thought," Eli Bressert, an astrophysics doctoral student at the European Southern Observatory, said in a statement. "The Milky Way's disk is like champagne with bubbles all over the place."


Respectfully submitted,
Steve
 
Astronomy news on Phys.org
  • #2
The human brain is absolutely astounding in its ability to do pattern recognition. To me the surprise is not at all that there are "still" things the brain can do that algorithms can't (yet) but rather than algorithms can do as much as they CAN at this relatively early stage of computer development.

My favorite example is this: Have you ever seen a VERY simple line drawing that represents, say, Bob Hope, or Alfred Hitchcock? People have recognized those drawing on seeing them for the first time but it's pretty much unthinkable that a computer could come anywhere close to doing that.

EDIT: I once read an article that explained in some detail how pattern recognition is a survival mechanism in humans (and other animals), and also how it causes the "false positives" that sometimes make us think we are seeing something that on closer inspection turns out to be a random pattern that we misinterpreted.
 
  • #3
It continually fascinates me how little information I need to be able to identify a familiar face in a crowd. A split second flash of 25% of their face, (2% of the whole person), from virtually any angle, in a database of thousands of people I know by sight.
 
  • #4
In January, the NASA Kepler team decided to let citizens take a look at data that their algorithms had already gone through. In form of graphs generated by the brightness of the stars. The point was to spot a pattern in the transitions, that could possibly prove to be a planet or a binary star. And again, human pattern recognition had its say. I think it actually led to the discovery of one or more planets. The one I heard of was Neptune sized..
 
  • #5
DaveC426913 said:
It continually fascinates me how little information I need to be able to identify a familiar face in a crowd. A split second flash of 25% of their face, (2% of the whole person), from virtually any angle, in a database of thousands of people I know by sight.

Yeah. Or how quickly we can identify a melody. Sometimes two or three notes will do it.
 

Related to Human Eyes See Cosmic Bubbles that Algorithms Miss

1. What are cosmic bubbles?

Cosmic bubbles are large, spherical structures in space that are filled with hot gas and are formed by the energy released from violent phenomena such as supernovae and black holes.

2. How do human eyes see cosmic bubbles?

Human eyes see cosmic bubbles through the use of telescopes and other imaging equipment. These instruments capture and enhance the light emitted by the hot gas in the bubbles, making them visible to the human eye.

3. Why do algorithms miss cosmic bubbles?

Algorithms are computer programs that are designed to detect patterns and structures in data. However, they can only detect what they are programmed to look for, and may miss certain features or structures that are not included in their programming.

4. How do scientists use algorithms to study cosmic bubbles?

Scientists use algorithms to analyze large amounts of data collected from telescopes and other instruments. These algorithms can help identify and classify different types of cosmic bubbles, providing valuable information about the formation and evolution of these structures.

5. What are the implications of human eyes seeing cosmic bubbles that algorithms miss?

The ability of human eyes to see cosmic bubbles that algorithms miss allows scientists to discover new structures and phenomena in space that may have gone unnoticed. This can lead to a deeper understanding of the universe and its evolution.

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