Inspired by brain’s visual cortex, new AI utterly wrecks CAPTCHA security

Enlarge / A representation of how physically close feature recognition units are built hierarchically to create an object hypothesis. (credit: Vicarious AI) Computer algorithms have gotten much better at recognizing patterns, like specific animals or people’s faces, allowing software to automatically categorize large image collections. But we’ve come to rely on some things that computers can’t do well. Algorithms can’t match their image recognition to semantic meaning, so today you can ensure a human’s present by asking them to pick out images of street signs. And algorithms don’t do especially well at recognizing when familiar images are distorted or buried in noise, either, which has kept us relying on text-based CAPTCHAs, the distorted text used to verify a human is interacting with Web services. Or we had relied on them ’til now, at least. In today’s issue of Science , a Bay Area startup called Vicarious AI describes an algorithm they created that is able to take minimal training and easily handle CAPTCHAs. It also managed general text recognition. Vicarious’ secret? They modeled the structure of their AI on information we’ve gained from studying how the mammalian visual cortex processes images. Thinking visually In the visual cortex, different groups of neurons recognize features like edges and surfaces (and others identify motions, which aren’t really relevant here). But rather than viewing a scene or object as a collection of these parts, the neurons start communicating among each other, figuring out by proximity which features are part of a single object. As objects are built up and recognized, the scene is built hierarchically based on objects instead of individual features. Read 9 remaining paragraphs | Comments

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Inspired by brain’s visual cortex, new AI utterly wrecks CAPTCHA security

Quantum computers reach deeper, find ground state of simple hydrides

Enlarge (credit: IBM ) Every time we discuss quantum computers, the headline tends to be that someone, somewhere is going to use the quantum to break your encryption and steal your student loan. If only that were true. But it is probably more realistic to think about quantum computers being used to solve quantum problems. And this has been demonstrated with recent chemistry calculations using a tiny quantum computer. If solving quantum problems with quantum computers sounds a bit circular, well, it is, but it is also practical. Think of it like this: every protein in your body has the structure it has because of quantum mechanics. And a physicist who is clever, but not intelligent, can write down an exact equation that describes that protein. But not even the most intelligent can solve that equation. Understanding molecules is hard A lazier physicist would write a computer script to solve the equation. But that won’t work either, because the time it takes to solve an exact description of the molecule will take longer than it takes to go from Big Bang to Heat Death. So we live with approximations. Approximations that are mostly pretty good but sometimes fail spectacularly. And, for some molecules, those approximations don’t speed up calculations very much at all. Read 13 remaining paragraphs | Comments

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Quantum computers reach deeper, find ground state of simple hydrides