Brain Stimulated Environments
Brain Stimulated Environments (BSE) are the theoretical field of study brought on by the experiments of the neurosurgeon Wilder Penfield in the 1960s. Using a thin electrode to actively stimulate areas of an -awake- patient's central cortex, they were able to force specific memories to rise to the surface.
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The brain is of profound importance. It is the place that houses our sense of self, our mind. It contains all of who and what we are. As technologies advance, Brain-Machine interfaces will become more and more sophisticated, and our understanding of the brain's functions will become ever-greater. This resource is a search engine specifically geared to finding all resources on the site that deal with developments / prosthetics for different brain regions.
This book demonstrates how bio-inspiration can lead to fully autonomous flying robots without relying on external aids. Most existing aerial robots fly in open skies, far from obstacles, and rely on external beacons ? mainly GPS ? to localise and navigate. However, these robots are not able to fly at low altitude or in confined environments, and yet this poses absolutely no difficulty to insects. Indeed, flying insects display efficient flight control capabilities in complex environments despite their limited weight and relatively tiny brain size.
For quite a few years now, there have been two disparate industries, both claiming to be true VR. Which truly is VR, and why?
There has been a great deal of effort, in recent years towards the simulation of a fully working brain. The drive to understand the workings of the human brain has never been greater, with actual neuroprosthetic devices in existence to drive research. We are a long, long way from recreating a human brain with it's billions of neurons and trillions of connections, however that does not mean we are incapable of building a brain.
An introduction to a new type of brain-machine interface, the subskull brain blanket.
The Allen Brain Atlas, a project like never before: Literally a mapping of the human brain, an attempt to make connections between anatomical, genetic, and behavioral observations.
On the sixth of June 2005, the most ambitious project to date for brain research was launched. Its mission: to recreate a human brain in simulation, neuron for neuron, connection for connection. Then, turn it on, and give it stimulai, to see what happens.
At the time of writing, researchers funded by the Biotechnology and Biological Sciences Research Council (BBSRC), have just published results proving what was long suspected by common sense: past experience really does help when we have to make complex decisions based on uncertain or confusing information.
A ten year old article talking about the potential for virtual environments for learning, long before serious games even came along.
Powering a neuroprosthetic is a tricky issue. As most of these devices are implanted either on the surface of the brain, or deep inside its folds, it is not a trivial matter to pop it out and change the battery. But, what if the same sugar that feeds the brain, could also feed the prosthetic?
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(Press Release) How do we learn our way around new environments, such as when you move to a new city? Scientists have been asking this question for many years, and new findings from brain imaging studies are helping to answer it.
Purdue University researchers have developed new miniature devices designed to be implanted in the brain to predict and prevent epileptic seizures.
A tiny transmitter three times the width of a human hair is designed to be i...
Researchers from the Centre for the Neural Basis of Cognition have for the first time described a mechanism called ?dynamic connectivity,? in which neuronal circuits are rewired ?on the fly? by the brain itself. This allows senses to become...
A specialized type of brain cell that tamps down stem cell activity ironically, perhaps, encourages the survival of the stem cells' progeny, Johns Hopkins researchers report. Understanding how these new brain cells "decide" whether to live ...
During the last several years, researchers have been building micro air vehicles (MAVs) that can autonomously fly through different environments by relying on GPS for navigation. Recently, a team of researchers has designed an MAV that can ...