RoboRoach surgery kit comes to Kickstarter: a remote control for real cockroaches

RoboRoach surgery kit comes to Kickstarter: a DIY remote control for real cockroaches

What DARPA does with animal test subjects behind closed doors is one thing, but here we have something else entirely: mad-scientist kits that allow anyone at home to control the movement of a real-life cockroach. Backyard Brains, the crew behind Twitter Roach, have been selling RoboRoach sets for creating cyborg insects for some time. But today, after getting as far as they can on their own, they’re seeking Kickstarter funding to improve their design and develop “educational materials” to go with it. The project will go live in the next 30 minutes or so, and pledges of $100 or more will get you a surgery kit consisting of a PCB “backpack,” battery and three sets of electrodes. The PCB pairs with mobile devices via the Bluetooth LE profile and a companion app delivers commands to the ‘roach, allowing you to steer the creature by swiping across your screen. Cough up $150 or more and they’ll send you a dozen ‘roaches to get you started.

The electrodes we mention need to be implanted into the cockroach’s antennae so directional triggers can be sent to the nerves within — effectively fooling the creature into thinking it’s hit an obstacle and needs to change course. This is where it starts to get uncomfortable. Backyard Brains are touting the RoboRoach as an educational tool, specifically stating that “this product is not a toy.” Something that’s glossed over on the Kickstarter page, however, is the allegedly painless surgery step: how you attach the electrodes to the insect. People can make their own minds up regarding the ethics of the campaign, and can start by heading to the Kickstarter source link once it goes live at 9am ET. We’ve also embedded an old tutorial video below we found on the company’s site, which demonstrates the surgery process. Be warned: there’s antenna-clipping and other mutilations involved, which make our skin crawl even more than the thought of handling the cockroaches in the first place.

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Source: Kickstarter, Backyard Brains (1), (2)

Soon, we will all be Professor X: researchers demo AR.Drone controlled by thought (video)

Soon, we will all be Professor X researchers demo AR Drone controlled by thought video

Researchers from the University of Minnesota seem hellbent on turning us all into Professor X — minus the hoverchair and Patrick Stewart-ly good looks, obviously. Why’s that, you ask? Well, back in 2011, the team devised a method, using non-invasive electroencephalogram (EEG), to allow test subjects to steer computer generated aircraft. Fast forward to today and that very same team has managed to translate their virtual work into real-world mind control over a quadrocopter. Using the same brain-computer interface technique, the team was able to successfully demonstrate full 3D control over an AR.Drone 1.0, using a video feed from its front-facing camera as a guide.

But it’s not quite as simple as it sounds. Before mind-handling the drone, subjects underwent a training period that lasted about three months on average and utilized a bevy of virtual simulators to let them get acquainted with the nuances of mental navigation. If you’re wondering just how exactly these human guinea pigs were able to fly a drone using thought alone, just imagine clenching your fists. That particular mental image was responsible for upward acceleration. Now imagine your left hand clenched alone… that’d cause it to move to the left; the same goes for using only the right. Get it? Good. Now, while we wait for this U. of Minnesota team to perfect its project (and make it more commercial), perhaps this faux-telekinetic toy can occupy your fancy.

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Via: SlashGear

Source: Journal of Neural Engineering

Samsung explores touchless tablet interaction with brainwave technology

Samsung explores touchless tablet interaction with brainwave technology

Try and wrap this one around your noggin. Samsung is currently working with researchers at the University of Texas on a project involving EEG caps that harnesses the power of one’s mind to control tablets and smartphones, and if that weren’t enough, the company’s actually hoping to take it mainstream. Now, before we get too far ahead of ourselves, let’s be clear: in its current stage, the system is cumbersome and aimed at those with disabilities, but Samsung’s already proven that it’s interested in alternative input methods, and this could certainly be the logical conclusion.

As is, participants are asked to wear EEG caps that measure the electrical activity along their scalp. Then, they’re able to make selections by focusing on an icon that flashes at a distinct frequency from others, which the system recognizes as a unique electrical pattern. Overall, the accuracy of the system is in the ballpark of 80 to 95 percent, and users are able to make selections on average of every five seconds. In order to make the system more approachable, the researchers hope to develop EEG hats that are more convenient and less intrusive — in other words, ones that people can wear throughout the day. We can’t promise this type of futuristic tech will come anytime soon, but for a closer peek, hit up the source link for a peek at Samsung’s next wild idea.

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Via: BGR

Source: MIT Technology Review

Harvard lets human minds control rats, private rodent armies remain distant (video)

Harvard links human and rat minds, Pied Piper no longer required

Sure, we’ve seen rats control other rats, but that won’t give us a legion of mind-controlled creatures to unleash upon an innocent public, will it? Harvard Medical School may unwittingly assist with solving our (rather misguided) plight, as it just experimented with a system that lets a human mind trigger actions in a rat’s motor cortex. The test had sensor-equipped humans watch a screen that flashed in sync with their EEG brain patterns for visual stimulation; as soon their attention shifted to controlling the rat, they triggered an ultrasonic pulse that twitched the rodent’s tail. There’s a few problems with the implementation beyond the obvious lack of autonomy for the poor target creature, though. The rat’s anaesthetized state likely affected the results, and the system isn’t currently sophisticated enough to map specific thoughts to corresponding actions. The Harvard team is working to refine the technology, however, and there may be a day when we can satisfy our megalomania… or at least, put the Pied Piper on notice.

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Via: New Scientist

Source: PLOS (PDF)

A look around Haier’s CES 2013 booth: HaiPads, plenty of panels and a wireless blender

A look around Haier's CES 2013 booth plenty of panels and a wireless blender

Haier had a pretty formidable booth here at CES, so naturally, we had to swing by and cast our eyeballs over anything and everything there. A wall of TVs greeted us, which turned out to be the company’s 2013 Roku-ready HDTVs and Android-packing smart models. Screens were everywhere, but there was also a table with some finger-friendly equipment like 9.7-, 7- and 5.3-inch HaiPads, as well as a Windows 8 laptop, touchscreen all-in-one and tab / laptop slider. The slider looked pretty nice, but all the aforementioned hardware was set up in Chinese, so we lost interest pretty quickly. A central hall booth wouldn’t be the same without a 4K TV, but not to worry, Haier had a couple on display — unfortunately, glare from all the other screens dotted around kind of dampened their impact.

What we were most interested in was all the prototype technologies on show, but all the Haier reps were from the US sales department, so not a soul could talk about the demonstrations. The eye-controlled TV we saw at IFA last year was getting quite a lot of attention, while the mind-controlled set we’ve also seen before was almost certainly playing a looping video to give the illusion something was happening. There were also several gesture-controlled models, but one wasn’t working and the other was hosting a very basic Kinect-type game. A ping-pong game played with a “Sensory Remote” was also up on one TV, but looked unresponsive and therefore, unfun. A multi-view demo using dual 3D specs did what it was supposed to, and a glasses-free 3D TV prototype showed nice depth as long as you were 12+ ft away (the camera can’t really replicate the effect, but there’s a quick video of it below anyway).

The booth also had a household section which we thought was safe to ignore, until a “wireless blender” caught the eye. “It’s just a blender with a battery in it, surely?” this editor asked. “No, there’s an inductive coil built into to the underside of the counter,” was the reply. Thus was our Haier experience at CES, and to revisit it through our eyes lens, check out the gallery below.

Kevin Wong contributed to this report.

Continue reading A look around Haier’s CES 2013 booth: HaiPads, plenty of panels and a wireless blender

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