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Neural Engineering: Brain-Computer Interface, Optogenetics, Sensory Substitution, Brain Implant, Eduardo Reck Miranda

Source Wikipedia
4.9/5 (12393 ratings)
Description:Please note that the content of this book primarily consists of articles available from Wikipedia or other free sources online. Pages: 25. Chapters: Brain-computer interface, Optogenetics, Sensory substitution, Brain implant, Eduardo Reck Miranda, Cultured neuronal network, Spinal cord stimulator, Neurotrophic electrode, Wirehead, Neurotechnology Industry Organization, Neurally controlled animat. Excerpt: A brain-computer interface (BCI), sometimes called a direct neural interface or a brain-machine interface (BMI), is a direct communication pathway between the brain and an external device. BCIs are often aimed at assisting, augmenting or repairing human cognitive or sensory-motor functions. Research on BCIs began in the 1970s at the University of California Los Angeles (UCLA) under a grant from the National Science Foundation, followed by a contract from DARPA. The papers published after this research also mark the first appearance of the expression brain-computer interface in scientific literature. The field of BCI research and development has since focused primarily on neuroprosthetics applications that aim at restoring damaged hearing, sight and movement. Thanks to the remarkable cortical plasticity of the brain, signals from implanted prostheses can, after adaptation, be handled by the brain like natural sensor or effector channels. Following years of animal experimentation, the first neuroprosthetic devices implanted in humans appeared in the mid-nineties. Neuroprosthetics is an area of neuroscience concerned with neural prostheses-using artificial devices to replace the function of impaired nervous systems and brain related problems or sensory organs. The most widely used neuroprosthetic device is the cochlear implant, which, as of 2006, has been implanted in approximately 100,000 people worldwide. There are also several neuroprosthetic devices that aim to restore vision, including retinal implants. The differences between BCIs and neuroprosthetics are mo...We have made it easy for you to find a PDF Ebooks without any digging. And by having access to our ebooks online or by storing it on your computer, you have convenient answers with Neural Engineering: Brain-Computer Interface, Optogenetics, Sensory Substitution, Brain Implant, Eduardo Reck Miranda. To get started finding Neural Engineering: Brain-Computer Interface, Optogenetics, Sensory Substitution, Brain Implant, Eduardo Reck Miranda, you are right to find our website which has a comprehensive collection of manuals listed.
Our library is the biggest of these that have literally hundreds of thousands of different products represented.
Pages
Format
PDF, EPUB & Kindle Edition
Publisher
Books LLC, Wiki Series
Release
2011
ISBN
1157482333

Neural Engineering: Brain-Computer Interface, Optogenetics, Sensory Substitution, Brain Implant, Eduardo Reck Miranda

Source Wikipedia
4.4/5 (1290744 ratings)
Description: Please note that the content of this book primarily consists of articles available from Wikipedia or other free sources online. Pages: 25. Chapters: Brain-computer interface, Optogenetics, Sensory substitution, Brain implant, Eduardo Reck Miranda, Cultured neuronal network, Spinal cord stimulator, Neurotrophic electrode, Wirehead, Neurotechnology Industry Organization, Neurally controlled animat. Excerpt: A brain-computer interface (BCI), sometimes called a direct neural interface or a brain-machine interface (BMI), is a direct communication pathway between the brain and an external device. BCIs are often aimed at assisting, augmenting or repairing human cognitive or sensory-motor functions. Research on BCIs began in the 1970s at the University of California Los Angeles (UCLA) under a grant from the National Science Foundation, followed by a contract from DARPA. The papers published after this research also mark the first appearance of the expression brain-computer interface in scientific literature. The field of BCI research and development has since focused primarily on neuroprosthetics applications that aim at restoring damaged hearing, sight and movement. Thanks to the remarkable cortical plasticity of the brain, signals from implanted prostheses can, after adaptation, be handled by the brain like natural sensor or effector channels. Following years of animal experimentation, the first neuroprosthetic devices implanted in humans appeared in the mid-nineties. Neuroprosthetics is an area of neuroscience concerned with neural prostheses-using artificial devices to replace the function of impaired nervous systems and brain related problems or sensory organs. The most widely used neuroprosthetic device is the cochlear implant, which, as of 2006, has been implanted in approximately 100,000 people worldwide. There are also several neuroprosthetic devices that aim to restore vision, including retinal implants. The differences between BCIs and neuroprosthetics are mo...We have made it easy for you to find a PDF Ebooks without any digging. And by having access to our ebooks online or by storing it on your computer, you have convenient answers with Neural Engineering: Brain-Computer Interface, Optogenetics, Sensory Substitution, Brain Implant, Eduardo Reck Miranda. To get started finding Neural Engineering: Brain-Computer Interface, Optogenetics, Sensory Substitution, Brain Implant, Eduardo Reck Miranda, you are right to find our website which has a comprehensive collection of manuals listed.
Our library is the biggest of these that have literally hundreds of thousands of different products represented.
Pages
Format
PDF, EPUB & Kindle Edition
Publisher
Books LLC, Wiki Series
Release
2011
ISBN
1157482333

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