E. Glennie, Good Vibrations
(London: Hutchinson, 1990).
215
D. Bendor and X. Wang, “Cortical Representations of Pitch in Monkeys and Humans,” Current Opinion in Neurobiology
16 (2006): 391–399; R. J. Zatorre, “Finding the Missing Fundamental,” Nature 436 (2005): 1093–1094.
216
W. R. Drennan et al., “Clinical Evaluation of Music Perception, Appraisal and Experience in Cochlear Implant Users,” International Journal of Audiology
54 (2015): 114–123; J. Schnupp, I. Nelken, and A. J. King, Auditory Neuroscience: Making Sense of Sound (Cambridge, MA: MIT Press, 2012); C. M. Sucher and H. J. McDermott, “Pitch Ranking of Complex Tones by Normally Hearing Subjects and Cochlear Implant Users,” Hearing Research 230 (2007): 80–87.
217
K. Gfeller et al., “A Preliminary Report of Music-Based Training for Adult Cochlear Implant Users: Rationales and Development,” Cochlear Implants International
16, no. S3 (2015): S22–S31.
218
B. Biderman, Wired for Sound: A Journey into Hearing
, rev. ed. (Toronto: Journey into Hearing Press, 2016); M. Chorost, “My Bionic Quest for Bolero,” Wired, November 1, 2005, https://www.wired.com/2005/11/bolero; Drennan et al., “Clinical Evaluation of Music Perception”; R. Wallace, Hearing Beethoven: A Story of Musical Loss and Discovery (Chicago: University of Chicago Press, 2019).
219
A. Romoff, Hear Again: Back to Life with a Cochlear Implant
(New York: League for the Hard of Hearing, 1999).
220
E. C. Cherry, “Some Experiments on the Recognition of Speech, with One and with Two Ears,” Journal of the Acoustical Society of America
25 (1953): 975–979.
221
A. W. Bronkhorst, “The Cocktail-Party Problem Revisited: Early Processing and Selection of Multi-talker Speech,” Attention, Perception & Psychophysics
77 (2015): 1465–1487.
222
J. O. O’Sullivan et al., “Hierarchical Encoding of Attended Auditory Objects in Multi-talker Speech Perception,” Neuron
104 (2019): 1–15.
223
R. Litovsky et al., “Simultaneous Bilateral Cochlear Implantation in Adults: A Multicenter Clinical Study,” Ear and Hearing
27 (2006): 714–731; R. J. M. Van Hoesel and R. S. Tyler, “Speech Perception, Localization, and Lateralization with Bilateral Cochlear Implants,” Journal of the Acoustical Society of America 113 (2003): 1617–1630.
224
A. Romoff, Listening Closely: A Journey to Bilateral Hearing
(Watertown, MA: Imagine Publishing, 2011).
225
J. Schnupp, I. Nelken, and A. J. King, Auditory Neuroscience: Making Sense of Sound
(Cambridge, MA: MIT Press, 2012).
226
J. M. Hull, Touching the Rock: An Experience of Blindness
(New York: Pantheon Books, 1990), 29–31.
227
Romoff, Listening Closely
, 128.
228
S. R. Barry, Fixing My Gaze: A Scientist’s Journey into Seeing in Three Dimensions
(New York: Basic Books, 2009).
229
B. Crassini and J. Broerse, “Auditory-Visual Integration in Neonates: A Signal Detection Analysis,” Journal of Experimental Child Psychology
29 (1980): 144–155; M. Wertheimer, “Psychomotor Coordination of Auditory and Visual Space at Birth,” Science 134 (1961): 1962.
230
L. M. Romanski et al., “Dual Streams of Auditory Afferents Target Multiple Domains in the Primate Prefrontal Cortex,” Nature Neuroscience
2 (1999): 131–136.
231
J. Boswell, The Life of Samuel Johnson
(New York: Penguin Random House, 2008)
232
S. R. Barry, Fixing My Gaze: A Scientist’s Journey into Seeing in Three Dimensions
(New York: Basic Books, 2009).
233
Barry, Fixing My Gaze
; O. Sacks, “Stereo Sue: Why Two Eyes Are Better than One,” New Yorker, June 19, 2006; O. Sacks, “Stereo Sue,” in The Mind’s Eye (New York: Alfred A. Knopf, 2010).
234
W. James, The Principles of Psychology
(New York: Henry Holt, 1890).
235
E. J. Gibson and A. D. Pick, An Ecological Approach to Perceptual Learning and Development
(New York: Oxford University Press, 2000).
236
E. Goldberg, Creativity: The Human Brain in the Age of Innovation
(New York: Oxford University Press, 2018).
237
Goldberg, Creativity
.
238