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Future Extreme

- Believe that new technology and science can be used for the benefit of humankind!

- Future Extreme wants to breake free from all dogmas and beliefsystems!

- We promote new alternative ways of living and thinking!

- We front new science and technology for better health and solving the global energy crises!

- We have a dream that we one day will be able to create a world without war, hunger and poverty!

We strongly believe that creativity and out of the box thinking is the way!



Future Extreme´s Profile:

  • || Human Enhancement
  • || Present and Future High-Tech
  • || Society and Politics
  • || The non Hierarchical System
  • || Genetic Engineering
  • || Space
  • || AI
  • || Robots
  • || Animal, Human and AI - Rights
  • || The right to decide over your own body
  • || The right to die
  • || Alternative energy / propulsion systems


Robotics

Robots our new helpers?
Robots our new helpers? How can robots make our daily life easier?



Movies of interest !


Posthumanism

What abilities could a posthuman have?
What abilities could a posthuman have? What abilities would you like?



Nordic Technology News
  • PROGRAMMERBARE TATOVERINGER:
    Sidste år lavede kunstneren Gina Miller (også kendt som "nanogirl") en række billeder efter et koncept, udviklet af Robert A. Freitas jr., som er seniorforsker ved Institute for Molecular Manufacturing i Palo Alto, Californien. I en futuristisk afhandling forestiller han sig muligheden for at implantere et display umiddelbart under overhudens overflade, således at lyset herfra ville trænge igennem den gennemsigtige hud på håndryg eller underarm. Les mer
  • Fremtidens selvrengørende hus:
    Fremtidens hus skal ikke gøres rent. Ikke af mennesker, i hvert fald. Alle flader bliver smudsafvisende og antibakterielle, og nede på gulvet kører støvsugeren selv rundt. Ydervæggene er af glas, som kan lukkes helt af og forvandles til en tv-skærm på indersiden. Les mer
  • 10 teknologier på vej. Disse teknologiene er top 10. Les mer
  • Fra fladskærm til hologram:
    Alle husker Star Wars-hologrammet ('Hjælp mig, Obi-Wan Kenobi…'), og alle har set Tom Cruise fægte med armene foran en svævende holografisk brugerflade i Minority Report. Snart bliver 3D-magien andet og mere end Hollywood– fremtidens skærmteknologier vil gøre den virtuelle virkelighed til en del af dagligdagen. les mer
  • Chips på hjernen:
    I dag er vi på vej imod en verden, hvor alle elektroniske enheder kommunikerer med hinanden. Mennesker kommunikerer med disse enheder via primitive interfaces som tastatur, mikrofon og eventuelt et kamera. I fremtiden vil vi kunne kommunikere med elektronik via en direkte opkobling til vores hjerneceller. Les mer
  • Drømmestoffet:
    Fremtidens IT kommer tættere på os end nogensinde før. Om få år vil vi nemlig se intelligens i modetøj og arbejdsbeklædning. Les mer
  • Robotterne kommer…
    I Ridley Scotts kultfilm ”Bladerunner” fra 1982 beskrives en dyster fremtid, hvor mennesket er blevet i stand til at designe robotter – androider – der i så høj grad ligner mennesker, hvad angår krop og sjæl, at både mennesker og robotter har uhyre svært ved at skelne hinanden. For mange beskrev filmen et mareridt. I dag, godt tyve år senere, har Sony netop lanceret Qrio, den første perifert menneskelignende robot, som straks har taget verden med storm. Qrio taler og danser og har fået sendetid på alverdens nyhedskanaler som dirigent for Tokyos Symfoni Orkester. Der er stadig en verden til forskel mellem Qrio og Ridley Scotts dybsindige skurk, androiden Roy. Men verden bliver som bekendt mindre. Les mer
  • Pilot, p-vagt og grossist er bare nogle af de job, som ikke vil eksistere om en årrække, ifølge Institut for Fremtidsforskning. Les mer


Transport

Transport vehicle of the future,what will they look like?
Transport vehicle of the future,what will they look like? Are we going to see new propulsion systems on the market? Beyond hydrogen?



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Brain Scanner Can Tell What You're Looking At
  Admin  2008-03-07 15:38  

Tell me what you see.

On second thought, don't: A computer will soon be able to do it, simply by analyzing the activity of your brain.

That's the promise of a decoding system unveiled this week in Nature by neuroscientists from the University of California at Berkeley.

The scientists used a functional magnetic resonance imaging machine -- a real-time brain scanner -- to record the mental activity of a person looking at thousands of random pictures: people, animals, landscapes, objects, the stuff of everyday visual life. With those recordings the researchers built a computational model for predicting the mental patterns elicited by looking at any other photograph. When tested with neurological readouts generated by a different set of pictures, the decoder passed with flying colors, identifying the images seen with unprecedented accuracy.

"No one that I know would ever have guessed our decoder would do this well," study co-author Jack Gallant said.

As the decoder is refined, it could be used to explore the phenomenon of visual attention -- concentration on one part of a complicated scene -- and then to illuminate the dimly understood intricacies of the mind's eyes.

"One day it may even be possible to reconstruct the visual content of dreams," Gallant said.

After that, the decoding model could be harnessed for more visionary purposes: early warning systems for neurological diseases or interfaces that allow paralyzed people to engage with the world.

Other uses may not be so noble, such as marketing campaigns crafted for maximum mental penetration or invasions of mental privacy mounted in the name of fighting terrorism and crime.

Those technologies remain decades away, but researchers say it's not too soon to think about them, especially if research progresses at the pace set by this study.

Earlier decoders could only tell whether someone looked at a general type of image -- at a dog, for example -- but couldn't identify more specific photos, such as a small dog eating a bone. They've also been incapable of predicting what thought patterns an image would provoke.

The Berkeley model overcame both those limitations.

"It's quite tedious to measure every possible thought you might encounter, then measure the brain activity for that," said John-Dylan Haynes, a Max Planck Institute neuroscientist who was not involved in the study. "This is a big step forward."

Future steps involve expanding the decoder beyond its current focus on the brain's primary visual cortex, which represents general forms but doesn't handle the more complicated optical information processed in other parts of the brain.

More detail is also required, as the brain scanners used for the study measure blood flow caused by neural activity at a relatively coarse resolution of two cubic millimeters.

A higher-resolution, fully reconstructive decoder could help researchers chart the incredibly complex processes underlying visual perception. Gallant also hopes it could be used to detect early symptoms of neurological diseases like Alzheimer's and Parkinson's.

Eventually, Haynes said, the Berkeley model could be harnessed for something akin to mind reading.

"We want not only to decode people's perceptions, but also high-level mental states: people's intentions, their plans," Haynes said.

But Gallant warned of technological malfeasance. In the courtroom, mental readouts could have the same problems as eyewitness testimony, which is often unreliable and biased even though witnesses believe they're telling the truth.

The allure of reading minds to prove innocence or guilt, Haynes said, could override concerns about mental privacy -- an ethically ambiguous conflict. More obviously dubious is the possible use of mind-reading machines by marketers.

"There's some things we can do, and some we can't," Haynes said. "Some things are very easy, and others are not. But it's vital to think about the ethics now."

Source: http://www.wired.com/science/discoveries/news/2008/03/mri_vision

 
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Quotations

"No more gods, no more faith, no more timid holding back. The future belongs to posthumanity." -- Max More



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