Ознакомительная версия. Доступно 17 страниц из 81
279
VICE on HBO. The Future of Brain Hacking. Видео на YouTube от 21 сентября 2018: https://www.youtube.com/watch?v=rfW-WBB7csTo.
280
Bolu Ajiboye A. et al. Restoration of Reaching and Grasping Movements Through Brain-Controlled Muscle Stimulation in a Person with Tetraplegia: A Proof-of-Concept Demonstration. Lancet. 389 (2017): 1821–30.
281
Западный резервный университет Кейза: полностью парализованный человек вновь движется с помощью технологии – и силы
282
Brindley, Lewin. The Sensations Produced.
283
Naumann J. Search for Paradise: A Patient’s Account of the Artificial Vision Experiment. Bloomington: XLibris Corporation, 2012.
284
Naumann. Search for Paradise.
285
Lewis P.M., Rosenfeld J.V. Electrical Stimulation of the Brain and the Development of Cortical Visual Prostheses: An Historical Perspective. Brain Research. 1630 (2016): 208–24.
286
Bosking W.H. et al. Electrical Stimulation of Visual Cortex: Relevance for the Development of Visual Cortical Prosthetics. Annual Review of Vision Science. 3 (2017): 141–66.
287
Beauchamp M.S. et al. Dynamic Stimulation of Visual Cortex Produces Form Vision in Sighted and Blind Humans. Cell. 181 (2020): 774–83.
288
Shull P.B., Damian D.D. Haptic Wearables as Sensory Replacement, Sensory Augmentation, and Trainer – A Review. Journal of NeuroEngineering and Rehabilitation. 12 (2015). DOI 10.1186/s12984-015-0055-z.
289
Thomson E.E. et al. Perceiving Invisible Light Through a Somatosensory Cortical Prosthesis. Nature Communications. 4 (2013): 1482.
290
Baldassarre A. et al. Individual Variability in Functional Connectivity Predicts Performance on a Perceptual Task. Proceedings of the National Academy of Sciences of the United States of America. 109 (2012): 3516–21.
291
Gabrieli J.D.E. et al. Prediction as a Humanitarian and Pragmatic Contribution from Human Cognitive Neuroscience. Neuron. 85 (2015): 11–26; A Neuromarker of Sustained Attention from Whole-Brain Functional Connectivity. Nature Neuroscience. 19 (2016): 165–71.
292
Rashid B., Calhoun V. Towards a Brain-Based Predictome of Mental Illness. Human Brain Mapping. 41 (2020): 3468–535.
293
Gabrieli et al. Prediction as a Humanitarian.
294
Molfese D.L. Predicting Dyslexia at 8 Years of Age Using Neonatal Brain Responses. Brain and Language. 72 (2000): 238–45; Kook H. et al. Multi-stimuli Multi-Channel Data and Decision Fusion Strategies for Dyslexia Prediction Using Neonatal ERPs. Pattern Recognition. 38 (2005): 2174–84.
295
Aharoni E. et al. Neuroprediction of Future Rearrest. Proceedings of the National Academy of Sciences of the United States of America. 110 (2013): 6223–28.
296
Илон Маск, запуск проекта “Нейролинк”, 16 июля 2019 г., Сан-Франциско: https://www.youtube.com/watch?v=r-vbh3t7WVI.
297
Пресс-релиз компании “GSK”: GSK and Verily to Establish Galvani Bioelectronics – A New Company Dedicated to the Development of Bioelectric Medicines, 1 августа 2016 г.: https://www.gsk. com/en-gb/media/press-releases/gsk-and-verily-to-establish-galvani-bioelectronics-a-new-company-dedicated-to-the-development-of-bioelectronic-medicines/.
298
Moses D.A. et al. Real-time Decoding of Question-and-Answer Speech Dialogue Using Human Cortical Activity. Nature Communications. 10 (2019): 3096.
299
Марк Цукерберг, 19 апреля 2017: https://www.facebook.com/ zuck/videos/vb.4/10103661167577621/?type= 2&theater.
300
Duhigg C. How Companies Learn Your Secrets. New York Times Magazine. February 16, 2012.
301
Kramer A.D.I. et al. Experimental Evidence of Massive-Scale Emotional Contagion Through Social Networks. Proceedings of the National Academy of Sciences of the United States of America. 111(2014): 8788–90; Tiku N. Get Ready for the Next Big Privacy Backlash Against Facebook. Wired. May 21, 2017.
302
Mastoras R.-E. et al. Touch-screen Typing Pattern Analysis for Remote Detection of the Depressive Tendency. Scientifiс Reports. 9 (2019): 13414.
303
Giancardo L. et al. Computer Keyboard Interaction as an Indicator of Early Parkinson’s Disease. Scientifiс Reports. 6 (2016): 34468; Nieto-Reyes A. et al. Classification of Alzheimer’sPatients Through Ubiquitous Computing. Sensors. 17 (2017): 1679.
304
The Royal Society, iHuman: Blurring Lines Between Mind and Machine (2019). http://www.royalsociety.org/ihuman-perspective.
305
Yuste R. et al. Four Ethical Priorities for Neurotechnologies and AI. Nature. 551 (2017): 159–63.
306
Zennou-Azogui Y. et al. Hypergravity Within a Critical Period Impacts on the Maturation of Somatosensory Cortical Maps and Their Potential for Use-Dependent Plasticity in the Adult. Journal of Neurophysiology. 115 (2016): 2740–60.
307
Muckli L. et al. Bilateral Visual Field Maps in a Patient with Only One Hemisphere. Proceedings of the National Academy of Sciences of the United States of America. 106 (2009): 13034–39.
308
Sur M. et al. Experimentally Induced Visual Projections into Auditory Thalamus and Cortex. Science. 242 (1988): 1437–41.
309
Roe A.W. et al. A Map of Visual Space Induced in Primary Auditory Cortex. Science. 250 (1990): 818–20.
310
Melchner L. von et al. Visual Behaviour Mediated by Retinal Projections Directed to the Auditory Pathway. Nature. 404 (2000): 871–76.
311
Ballantyne A.O. et al. Plasticity in the Developing Brain: Intellectual, Language, and Academic Functions in Children with Ischaemic Perinatal Stroke. Brain. 131 (2008): 2975–85.
312
Roseboom T. et al. The Dutch Famine and Its Long-Term Consequences for Adult Health. Early Human Development. 82 (2006): 485–91.
313
Diorio J., Meaney M. Maternal Programming of Defensive Responses Through Sustained Effects on Gene Expression. Journal of Psychiatry & Neuroscience. 32 (2007): 275–84.
314
Frankenhuis W.E., Weerth C. de. Does Early-Life Exposure to Stress Shape or Impair Cognition? Current Directions in
Ознакомительная версия. Доступно 17 страниц из 81