Uneingeschränkter Zugang

Auditory Perception – Its Functions and Disorders. Towards a Mechanistic Analyses of Auditory Hybrid Systems

   | 11. Okt. 2020

Zitieren

Bamiou, D.E., Musiek, F.E., Luxon, L.M. (2001). Etiology and clinical presentation of auditory processing disorders – a review. Archives of Disease in Childhood, 85, 361–365.10.1136/adc.85.5.361Search in Google Scholar

Bechtel, W., Richardson, R.C. (1993). Discovering Complexity: Decomposition and Localization as Strategies in Scientific Research. Cambridge, MA: MIT Press.Search in Google Scholar

Bechtel, W., Abrahamsen, A. (2005). Explanation: A Mechanistic Alternative. Studies in History and Philosophy of the Biological and Biomedical Sciences, 36, 421–441.10.1016/j.shpsc.2005.03.010Search in Google Scholar

Bellis, T.J. (2011). Assessment and Management of Central Auditory Processing Disorders in the Educational Setting. From Science to Practice. San Diego: Plural Publishing.Search in Google Scholar

Benabid, A.L. (2003). Deep brain stimulation for Parkinson's disease. Current Opinion in Neurobiology, 13(6), 696–706.10.1016/j.conb.2003.11.001Search in Google Scholar

Berger, C. C., Ehrsson, H. H. (2016). Auditory Motion Elicits a Visual Motion Aftereffect. Frontiers in Neuroscience, 10, 559. https://doi.org/10.3389/fnins.2016.00559.10.3389/fnins.2016.00559Search in Google Scholar

Berger, T.W., Song, D., Marmarelis, V.Z., LaCoss, J., Wills J., Gerhardt, G.A., Granacki, J.J., Hampson, R.E., Deadwyler, S.A. (2013). Reverse Engineering the Brain: A Hippocampal Cognitive Prosthesis for Repair and Enhancement of Memory Function. In: He, B. (Ed.). Neural Engineering. Boston, MA: Springer, 725–764.10.1007/978-1-4614-5227-0_18Search in Google Scholar

Brooks, R. (2002). Flesh and Machines. New York: Pantheon.Search in Google Scholar

Clark, A. (2003).Natural-Born Cyborgs. Oxford: Oxford University Press.Search in Google Scholar

Clark, A. (2008). Supersizing the Mind: Embodiment, Action, and Cognitive Extension. New York: Oxford University Press.10.1093/acprof:oso/9780195333213.001.0001Search in Google Scholar

Clark, A., Chalmers, D.J. (1998). The extended mind. Analysis, 58(1), 7–19.10.1093/analys/58.1.7Search in Google Scholar

Chorost, M. (2005). Rebuilt: How Becoming Part Computer made Me More Human. Boston: Houghton Mifflin Harcourt.Search in Google Scholar

Christiansen, J.B., Leigh, I.W. (Eds.) (2002). Cochlear Implants in Children. Ethics and Choices. Washington: Gallaudet University Press.Search in Google Scholar

Craver, C. (2007). Explaining the Brain: Mechanisms and the Mosaic Unity of Neuroscience. Oxford: Clarendon Press.10.1093/acprof:oso/9780199299317.001.0001Search in Google Scholar

Craver, C. F. (2010). Prosthetic models. Philosophy of Science, 77(5), 840–851.10.1086/656822Search in Google Scholar

Craver, C., Tabery, J. (2019). Mechanisms in Science. In E.N. Zalta (Ed.), The Stanford Encyclopedia of Philosophy. Retrieved December 15, 2019 from: https://plato.stanford.edu/archives/sum2019/entries/science-mechanisms/.Search in Google Scholar

Cummins, R. (1975). Functional Analysis. Journal of Philosophy, 72, 741–765.10.2307/2024640Search in Google Scholar

Danilov, Y, Tyler, M. (2005). Brainport: an alternative input to the brain. Journal of Integrative Neuroscience, 4(4), 537–550.10.1142/S0219635205000914Search in Google Scholar

Dawes, P., Bishop, D.V. (2011). Psychometric profile of children with auditory processing disorder and children with dyslexia. Archives of Disease in Childhood, 96(6), 432–436.10.1136/adc.2009.170118Search in Google Scholar

Donoghue, J. (2005). Connecting cortex to machines: recent advances in brain interfaces. Nature Neuroscience, 5 (Supp.), 1085–1088.Search in Google Scholar

Eagleman, D. (2015). The Brain: The Story of You. New York: Pantheon Books.Search in Google Scholar

Emanuel, D.C., Letowski, C. (2007). Hearing Science. Philadelphia: Lippincott Williams & Wilkins.Search in Google Scholar

Ferguson, M.A., Hall, R.L., Riley, A., Moore, D.R. (2011). Communication, listening, cognitive and speech perception skills in children with auditory processing disorder (APD) or Specific Language Impairment (SLI). Journal of Speech, Language, and Hearing Research, 54(1), 211–227.10.1044/1092-4388(2010/09-0167)Search in Google Scholar

Glennan, S. (2017). The New Mechanical Philosophy. Oxford: Oxford University Press.10.1093/oso/9780198779711.001.0001Search in Google Scholar

Grau, C., Riera, A., Ginhoux, R., Nguyen, T.L. (2014). Conscious Brain-to-Brain Communication in Humans Using Non-Invasive Technologies. PloS One, 9(8). https://doi.org/10.1371/journal.pone.0105225.10.1371/journal.pone.0105225Search in Google Scholar

Graves, A. et al. (2016). Hybrid computing using a neural network with dynamic external memory. Nature, 538 (7626), 471–476.Search in Google Scholar

Hoffmann, D. (2009). The Interface Theory of perception: Natural Selection drives true perception to swift extension. In: Dickinson, D., Tarr, M., Leonardis, A., Schiele B. (Eds). Objects Categorization: Computer and Human Vision Perception (pp. 148–165). Cambridge: Cambridge University Press.Search in Google Scholar

Holden, L. K., Firszt, J. B., Reeder, R.M., Dwyer, N.Y., Stein, A.L., Litvak, L.M., (2019). Evaluation of a New Algorithm to Optimize Audibility in Cochlear Implant Recipients. Ear and Hearing, 40(4), 990–1000.10.1097/AUD.0000000000000680Search in Google Scholar

Gazzaniga, M.S. (2008). Human: The science behind what makes us unique. New York: Harper Collins.Search in Google Scholar

Hakim, N.S. (Ed.) (2009). Artificial Organs. London: Springer.10.1007/978-1-84882-283-2Search in Google Scholar

Kaku, M. (2014). The Future of the Mind. The Scientific Quest to Understand, Enhance, and Empower the Mind, New York: Doubleday Books.Search in Google Scholar

Krickel, B. (2019). Extended cognition, the new mechanists’ mutual manipulability criterion, and the challenge of trivial extendedness. Mind & Language. https://doi.org/10.1111/mila.12262.10.1111/mila.12262Search in Google Scholar

Machamer, P.K., Darden, L., Craver, C.F. (2000). Thinking about Mechanisms. Philosophy of Science, 67, 1–25.10.1086/392759Search in Google Scholar

Madan, C.R. (2014). Augmented memory: A survey of the approaches to remembering more. Frontiers in Systems Neuroscience, 8, 30. https://doi.org/10.3389/fnsys.2014.0003010.3389/fnsys.2014.00030Search in Google Scholar

McAlpine, D. (2005). Creating a Sense of Auditory Space. Journal of Physiology, 1, 21–28.10.1113/jphysiol.2005.083113Search in Google Scholar

Micallef, L.A. (2015). Auditory Processing Disorder (APD): Progress in Diagnostics So Far. A Mini-Review on Imaging Techniques. The Journal of International Advanced Otology, 11(3), 257–61.10.5152/iao.2015.1009Search in Google Scholar

Moore, B.C.J. (1997). An Introduction to Psychology of Hearing. London: Academic Press.Search in Google Scholar

Musiek, F.E., Chermak, G.D. (Eds.) (2014). Handbook of Central Auditory Processing Disorder, vol. I: Auditory Neuroscience and Diagnosis. San Diego: Plural Publishing.Search in Google Scholar

Musiek F.E., Baran J.A. (Eds.) (2018). The Auditory System: Anatomy, Physiology, and Clinical Correlates, San Diego: Plural Publishing.Search in Google Scholar

Nam, Ch.S., Nijholt, A., Lotte, F. (Eds.) (2018). Brain-Computer Interfaces Handbook: Technological and Theoretical Advances. London–New York: CRC Press.10.1201/9781351231954Search in Google Scholar

Nozaradan, S. (2014). Exploring how musical rhythm entrains brain activity with electroencephalogram frequency-tagging. Philosophical Transactions of the Royal Society B: Biological Sciences. Vol. 369, Issue 1658. https://doi.org/10.1098/rstb.2013.0393.10.1098/rstb.2013.0393Search in Google Scholar

Piccinini, G. (2007). Computing Mechanisms. Philosophy of Science, 74, 501–526.10.1086/522851Search in Google Scholar

Piccinini, G., Craver, C.F. (2011). Integrating Psychology and Neuroscience: Functional Analyses as Mechanism Sketches. Synthese, 183, 283–300.10.1007/s11229-011-9898-4Search in Google Scholar

Piccinini, G., Scarantino, A. (2011). Information Processing, Computation, and Cognition. Journal of Biological Physics, 37, 1–38.10.1007/s10867-010-9195-3Search in Google Scholar

Purves, D., Augustine, G.J., Fitzpatrick, D., Katz, L.C., LaMantia, A.S., McNamara, J.O., Williams, S.M (Eds.) (2001). Neuroscience (chapter 13: The Auditory System). Sunderland, MA: Sinauer Associates.Search in Google Scholar

Simon, H. (1969). The Science of the Artificial, Cambridge, Mass.: MIT Press.Search in Google Scholar

Thagard, P. (2000). How Scientists explain Disease. Princeton: Princeton University Press.Search in Google Scholar

Tilman, D., Evangelos, N. (eds.) (2020). Technology-Augmented Perception and Cognition. Springer International Publishing.Search in Google Scholar

Warren, R.M. (1982). Auditory Perception. A New Synthesis. New York: Pergamon Press.Search in Google Scholar

Wilson, B.S., Finley, Ch.C., Lawson, D.T., Wolford, R.D., Eddington, D.K., Rabinowitz, W.M. (1991). Better speech recognition with cochlear implants. Nature, 352, 236–238.10.1038/352236a0Search in Google Scholar

Wolpow, J. (2007). Brain-computer interfaces as a new brain output pathways. Journal of Physiology, 579, 613–619.10.1113/jphysiol.2006.125948Search in Google Scholar

Zeng, F.G, Popper, A.N., Fay, R.R. (Eds.) (2004). Cochlear Implants: Auditory Prostheses and Electric Hearing, New York: Springer-Verlag.10.1007/978-0-387-22585-2Search in Google Scholar

Zheng, N., Liu, Z., Ren, P., Ma, Y., Chen, S., Yu, S., Xue, J., Chen, B., Wang, F. (2017). Hybrid-augmented intelligence: collaboration and cognition, Frontiers of Information Technology & Electronic Engineering, 18(2), 153–179.10.1631/FITEE.1700053Search in Google Scholar

eISSN:
2199-6059
ISSN:
0860-150X
Sprache:
Englisch
Zeitrahmen der Veröffentlichung:
4 Hefte pro Jahr
Fachgebiete der Zeitschrift:
Philosophie, andere