Closed Loop Neuroscience
Autor Ahmed El Hadyen Limba Engleză Hardback – 2 oct 2016
Although closed-loop approaches have long been a part of the neuroscientific toolbox, these techniques are only now gaining popularity in research and clinical applications. As there is not yet a comprehensive methods book addressing the topic as a whole, this volume fills that gap, presenting state-of-the-art approaches and the technical advancements that enable their application to different scientific problems in neuroscience.
- Presents the first volume to offer researchers a comprehensive overview of the technical realities of employing closed loop techniques in their work
- Offers application to in-vitro, in-vivo, and hybrid systems
- Contains an emphasis on the actual techniques used rather than on specific results obtained
- Includes exhaustive protocols and descriptions of software and hardware, making it easy for readers to implement the proposed methodologies
- Encompasses the clinical/neuroprosthetic aspect and how these systems can also be used to contribute to our understanding of basic neurophysiology
- Edited work with chapters authored by leaders in the field from around the globe – the broadest, most expert coverage available
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Specificații
ISBN-13: 9780128024522
ISBN-10: 0128024526
Pagini: 304
Dimensiuni: 216 x 276 x 23 mm
Greutate: 1.07 kg
Editura: ELSEVIER SCIENCE
ISBN-10: 0128024526
Pagini: 304
Dimensiuni: 216 x 276 x 23 mm
Greutate: 1.07 kg
Editura: ELSEVIER SCIENCE
Cuprins
Theoretical Axis 1. Adaptive Bayesian methods for closed-loop neurophysiology2. Information geometric analysis of neurophysiological data3. Control theory for closed loop neurophysiology4. Testing the theory of practopoiesis using closed loops5. Local field potential analysis for closed loop neuromodulation 6. Online event detection requirements in closed-loop neuroscience 7. Closing Dewey's Circuit8. Stochastic optimal control of spike times in single neurons9. Hybrid systems neuroscience 10. Computational Complexity and the Function-Structure-Environment Loop of the Brain11. Subjective Physics12. Contextual emergence in neuroscience
Experimental Axis 13. Closed loop methodologies for cellular electrophysiology14. Bidirectional Brain-Machine Interfaces15. Real time movement prediction for closed loop neurotechnology16. Adaptive brain stimulation for Parkinson’s disease17. Closed loop neuroprosthetics18. Closed Loop Limbic Neurostimulation 19. Conscious brain-to-brain communication
Philosophical Axis 20. Philosophical aspects of closed loop neuroscience 21. Closed Loops in Neuroscience and Computation: What It Means and Why It Matters
Experimental Axis 13. Closed loop methodologies for cellular electrophysiology14. Bidirectional Brain-Machine Interfaces15. Real time movement prediction for closed loop neurotechnology16. Adaptive brain stimulation for Parkinson’s disease17. Closed loop neuroprosthetics18. Closed Loop Limbic Neurostimulation 19. Conscious brain-to-brain communication
Philosophical Axis 20. Philosophical aspects of closed loop neuroscience 21. Closed Loops in Neuroscience and Computation: What It Means and Why It Matters