Stochastic Pattern Recognition Dramatically Outperforms Conventional Techniques
technologyreview.com
technologyreview.com
I'd also like to know if there's any good sources for learning more about this.
Regardless, the results are impressive, and the ability to impose the mathematical properties' of PDFs or CDFs over those of discrete numbers could have an enormous impact on the efficiency of certain types of algorithms.
A
T
G
C
What is the value of the next item in the list? Pure guessing and you have a 25% chance of being right. But what if a review of past lists allows you to develop weighted averages, to the point where you could be, say, 70% correct? What if there was a way to do multiple scans, such that the chance of correctness gets to be some value of 99.x% ?
Imagine the 4 values stand for:
Adenine
Thymine
Guanine
Cytosine
It seems to me there is here suggested a new way of parsing a genome. I have friends who've worked on automated cancer detection based on recognizing certain patters in photos of cells. Possibly similar techniques could take electron microscope scans and figure out a sequence of DNA?
But, we know that the nervous system has coincidence detectors - basically AND gates for spikes.
This article got me excited because I never thought of coincidence detectors as performing multiplication - an operation very hard to thing about in neural circuitry terms.