405:. He showed that the ability of human listeners to detect small changes in frequency of brief tones was too good to be accounted for by a place mechanism of pitch for frequencies up to about 4 kHz. Together with Stephan Ernst he later showed that the ability to detect small changes in frequency worsened with increasing frequency from 2 to 8 kHz, consistent with the roll-off in the precision of phase-locking information at high frequencies, and then reached a plateau, consistent with a transition to a place mechanism. Together with Aleksander Sek he showed that phase locking to the temporal fine structure of complex tones contributes to the perception of pitch up to higher frequencies than previously assumed and that the detection of frequency modulation for low modulation rates also probably depends on phase locking.
463:: simultaneous sinewaves that form a harmonic series are heard as a single sound object, but if a single sinewave is mistuned slightly from the harmonic series it âpops outâ as a separate sound object. Moore and colleagues also showed that for rapid sequences of pure tones with alternating frequencies, the fission boundary (the frequency separation between successive tones at which they can no longer be heard as two separate streams) is constant across a wide range of centre frequencies when expressed on the ERB
40:
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384:. He started to consider the practical aspects and potential applications of this research in the 1980s with his work on a 2-channel compression hearing aid. Other examples of practical applications include the development of a new loudness model that eventually became an international (ISO) standard, and the implementation of models of sound quality applicable to mobile telephones and other devices with
617:
450:
Moore and colleagues developed the
Threshold Equalizing Noise (TEN) test for diagnosing dead regions in the cochlea; these are regions with very few or no functioning inner hair cells, synapses or neurons. The outcomes of the TEN test are relevant to the fitting of hearing aids and cochlear implants.
391:
Moore has written or edited several influential books on hearing. His text book An
Introduction to the Psychology of Hearing has been cited over 5600 times and has been translated into Japanese, Polish, Korean, and Chinese. Other books include Cochlear hearing Loss and Auditory Processing of Temporal
475:
Moore and colleagues have conducted several studies examining the relationship between psychoacoustic abilities and speech perception by people with cochlear hearing loss and older people. They have shown that difficulties in speech perception are at least partly linked to reduced sensitivity to the
451:
The TEN test has been incorporated in the audiometers of several major manufacturers. Brian Moore also contributed to the development of tests for assessing monaural and binaural sensitivity to the temporal fine structure of sounds. These tests have been widely used in research and clinical studies.
425:
standard. An extension of the model to deal with time-varying sounds is under consideration as an ISO standard (ISO532-3, 2020). The loudness model of Moore and colleagues has been extended to predict loudness for people with hearing loss and this has been used to develop methods of fitting hearing
400:
Moore was one of the first researchers to present convincing evidence for the role of phase locking (the synchronization of nerve spikes to individual cycles of the filtered stimulus in the cochlea) in the perception of
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Boyle, Patrick J.; BĂźchner, Andreas; Stone, Michael A.; Lenarz, Thomas; Moore, Brian C.J. (January 2009). "Comparison of dual-time-constant and fast-acting automatic gain control (AGC) systems in cochlear implants".
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Laurence, Roger F.; Moore, Brian C. J.; Glasberg, Brian R. (January 1983). "A Comparison of Behind-the-Ear High-Fidelity Linear
Hearing Aids and Two-Channel Compression Aids, in the Laboratory and in Everyday Life".
200:
364:, The International Journal of Audiology, Otology and Neuro-Otology, and Trends in Hearing. He was President of the Association of Independent Hearing Healthcare Professionals (UK) from 1994-2021.
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Moore, Brian C.J.; Glasberg, Brian R.; Stone, Michael A. (January 2010). "Development of a new method for deriving initial fittings for hearing aids with multi-channel compression: CAMEQ2-HF".
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Hopkins, Kathryn; Moore, Brian C. J. (July 2011). "The effects of age and cochlear hearing loss on temporal fine structure sensitivity, frequency selectivity, and speech reception in noise".
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of sounds by extending and modifying the earlier models of
Fletcher and Munson and of Zwicker and Scharf. The model proposed by Moore and co-workers formed the basis for an
476:
temporal fine structure of sounds. Deficits in the processing of temporal fine structure are associated with increasing age even when audiometric thresholds remain normal.
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Hopkins, Kathryn; Moore, Brian C. J. (December 2010). "Development of a fast method for measuring sensitivity to temporal fine structure information at low frequencies".
861:
Moore, Brian C. J.; Ernst, Stephan M. A. (September 2012). "Frequency difference limens at high frequencies: Evidence for a transition from a temporal to a place code".
955:
Moore, Brian C. J.; Sek, Aleksander (October 1996). "Detection of frequency modulation at low modulation rates: Evidence for a mechanism based on phase locking".
1336:
Moore, Brian C. J.; Glasberg, Brian R.; Stone, Michael A. (January 1991). "Optimization of a slow-acting automatic gain control system for use in hearing aids".
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in recognition of âsignificant contributions to the understanding of human auditory perception, particularly in relation to sound reproduction and hearing aidsâ
1697:"Age-group differences in speech identification despite matched audiometrically normal hearing: contributions from auditory temporal processing and cognition"
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Moore, Brian C. J.; Glasberg, Brian R.; Peters, Robert W. (August 1986). "Thresholds for hearing mistuned partials as separate tones in harmonic complexes".
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intended to compensate for the loudness recruitment experienced by most hearing-impaired people. He and his colleagues developed a dual-time-constant
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Moore, B.C.J.; Huss, M.; Vickers, D. A.; Glasberg, B. R.; AlcĂĄntara, J.I. (August 2000). "A Test for the
Diagnosis of Dead Regions in the Cochlea".
1913:
Rose, Marina M.; Moore, Brian C. J. (September 1997). "Perceptual grouping of tone sequences by normally hearing and hearing-impaired listeners".
540:
2008 Hugh
Knowles Prize for Distinguished Achievement from the Hugh Knowles Center for Clinical and Basic Science in Hearing and Its Disorders.
493:
1999 Elected an
Honorary Fellow of the British Society of Hearing Aid Audiologists in recognition of âoutstanding contributions to audiologyâ.
488:
1997 Appointed an
Honorary Member of the Belgian Society of Audiology in recognition of âoutstanding contributions to the field of audiologyâ.
2009:"The importance of temporal fine structure information in speech at different spectral regions for normal-hearing and hearing-impaired subjects"
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where he was subsequently appointed Reader (1989) and
Professor (1995). He became Emeritus Professor in 2014. He was appointed as Fellow of
1756:"The Association Between the Processing of Binaural Temporal-Fine-Structure Information and Audiometric Threshold and Age: A Meta-Analysis"
357:
176:
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Moore, Brian C.J.; Sek, Aleksander (January 2009). "Development of a fast method for determining sensitivity to temporal fine structure".
503:
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Moore, Brian C. J.; Peters, Robert W.; Glasberg, Brian R. (May 1985). "Thresholds for the detection of inharmonicity in complex tones".
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from 1971 to 1977, spending the year 1973-74 as a
Fulbright-Hays Senior Scholar and Visiting Professor at the Department of Psychology,
912:
Moore, Brian C. J.; SÄk, Aleksander (2009). "Sensitivity of the human auditory system to temporal fine structure at high frequencies".
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Moore, Brian C.J.; Glasberg, Brian R. (February 2004). "A revised model of loudness perception applied to cochlear hearing loss".
277:
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1983 Thomas Simm Littler prize of the British Society of Audiology for the book âAn Introduction to the Psychology of Hearingâ.
242:
1482:
Moore, Brian C. J. (April 2004). "Dead Regions in the Cochlea: Conceptual Foundations, Diagnosis, and Clinical Applications".
2440:
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220:, obtaining his BA in 1968. In 1971 he was awarded a Ph.D. in Experimental Psychology on the topic of Pitch Perception.
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530:
2006 Thomas Simm Littler prize of the British Society of Audiology for the best academic contribution to audiology.
324:
1964:
Glasberg, Brian R; Moore, Brian C.J (August 1990). "Derivation of auditory filter shapes from notched-noise data".
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1291:"Evaluation of a Dual-Channel Full Dynamic Range Compression System for People with Sensorineural Hearing Loss"
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1535:"Cochlear Dead Regions Constrain the Benefit of Combining Acoustic Stimulation With Electric Stimulation"
508:
145:
24:
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Fletcher, Harvey; Munson, W. A. (1933-10-01). "Loudness, Its Definition, Measurement and Calculation".
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Moore together with Brian Glasberg, Thomas Baer and Michael Stone developed a model for predicting the
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Moore, Brian C. J.; Johnson, Jeannette Seloover; Clark, Teresa M.; Pluvinage, Vincent (October 1992).
2117:"Speech perception problems of the hearing impaired reflect inability to use temporal fine structure"
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Moore, B. C. J. (September 1973). "Frequency difference limens for short-duration tones".
8:
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2015 Awarded a Doctorate Honoris Causa from Adam Mickiewicz University, Poznan, Poland.
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In his early career in the 1970s, Moore was mainly interested in fundamental research on
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203:. He has written or edited 21 books and over 750 scientific papers and book chapters.
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622:. Department of Experimental Psychology. University of Cambridge: Ph.D. Dissertation.
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Moore and colleagues were among the first to demonstrate the role of harmonicity in
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Moore collaborated in the development and evaluation of multi-channel compression
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345:. In 1977 he was appointed University Lecturer in Experimental Psychology at the
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Lorenzi, C.; Gilbert, G.; Carn, H.; Garnier, S.; Moore, B. C. J. (2006-12-05).
779:
Auditory Processing of Temporal Fine Structure: Effects of Age and Hearing Loss
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261:. Contentious material about living people that is unsourced or poorly sourced
148:(born 10 February 1946) is an Emeritus Professor of Auditory Perception in the
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Cochlear hearing loss : physiological, psychological and technical issues
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2021 Received the Life Achievement Award of the American Auditory Society.
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2004 International Award in Hearing from the American Academy of Audiology.
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377:
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Zwicker, Eberhard; Scharf, Bertram (1965). "A model of loudness summation".
730:
554:âFor leadership in research on human hearing and its clinical applicationsâ.
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FĂÂźllgrabe, Christian; Moore, Brian C. J.; Stone, Michael A. (2015-01-13).
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Zhang, Ting; Dorman, Michael F.; Gifford, Rene; Moore, Brian C. J. (2014).
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2013 Thomas Simm Littler lectureship of the British Society of Audiology.
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1008:"A model for the prediction of thresholds, loudness and partial loudness"
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2019 Appointed a Principal Fellow of the British Society of Audiology.
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system that has been widely used in hearing aids and cochlear implants.
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2342:"Acoustical Society of America Gold Medal 2014: Brian C. J. Moore"
2391:"Professor Brian Moore selected to receive an Honorary Doctorate"
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688:
International Organization for Standardization (Ginebra) (2017).
39:
1127:
385:
633:
http://www.admin.cam.ac.uk/reporter/2002-03/special/06/i.pdf
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Fellows of the Academy of Medical Sciences (United Kingdom)
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1130:
Procedure for the computation of loudness of steady sounds
2114:
1754:
FĂźllgrabe, Christian; Moore, Brian C. J. (January 2018).
1006:
Moore, B. C. J.; Glasberg, B. R.; Baer, T. (1997-01-01).
1430:
1132:. Standards Secretariat, Acoustical Society of America.
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520:
in Physiological and Psychological Acoustics from the
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Oxenham, Andrew J.; Carlyon, Robert P. (2014-04-01).
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1694:
690:
ISO 532-2 acoustics methods for calculating loudness
471:
Effects of hearing loss and age on speech perception
408:
2007:Hopkins, Kathryn; Moore, Brian C. J. (March 2010).
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748:(2nd ed.). Chichester: John Wiley & Sons.
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Brooklyn College of the City University of New York
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392:Fine Structure: Effects of Age and Hearing Loss.
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2346:The Journal of the Acoustical Society of America
2234:The Journal of the Acoustical Society of America
2066:The Journal of the Acoustical Society of America
2013:The Journal of the Acoustical Society of America
1915:The Journal of the Acoustical Society of America
1864:The Journal of the Acoustical Society of America
1813:The Journal of the Acoustical Society of America
1044:The Journal of the Acoustical Society of America
957:The Journal of the Acoustical Society of America
914:The Journal of the Acoustical Society of America
863:The Journal of the Acoustical Society of America
812:The Journal of the Acoustical Society of America
2189:The History of the British Society of Audiology
2121:Proceedings of the National Academy of Sciences
467:-number scale developed in Moore's laboratory.
2339:
1753:
1041:
445:
2388:
2317:"Hugh Knowles Prize | Knowles Hearing Center"
1963:
1690:
1688:
1150:
1084:
645:"Wolfson College Cambridge: Emeritus Fellows"
2456:Fellows of the Acoustical Society of America
2063:
2006:
1640:
713:An introduction to the psychology of hearing
358:Journal of the Acoustical Society of America
715:(5th ed.). Amsterdam: Academic Press.
201:British Society of Hearing Aid Audiologists
1685:
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535:Association for Research in Otolaryngology
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356:Moore has been an Associate Editor of the
337:Moore was a Lecturer in Psychology at the
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500:Fellow of the Academy of Medical Sciences
325:Learn how and when to remove this message
168:(signal processing and fitting methods).
2431:Academics of the University of Cambridge
1589:
954:
911:
164:, and the development and assessment of
2268:"Academy Honors and President's Awards"
1128:Acoustical Society of America. (2007).
619:Temporal parameters in pitch perception
353:in 1983 and is now an Emeritus Fellow.
2413:
2206:"Acoustical Society of America Awards"
2436:Fellows of Wolfson College, Cambridge
2321:knowleshearingcenter.northwestern.edu
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193:Association for Psychological Science
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597:Temporal envelope and fine structure
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1643:International Journal of Audiology
1592:International Journal of Audiology
1496:10.1097/01.AUD.0000120359.49711.D7
1382:International Journal of Audiology
1196:International Journal of Audiology
216:Moore studied Natural Sciences at
14:
2472:
678:
651:
409:Loudness perception and modelling
218:St Catharine's College, Cambridge
76:St Catharine's College, Cambridge
1307:10.1097/00003446-199210000-00012
587:Equivalent rectangular bandwidth
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1701:Frontiers in Aging Neuroscience
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777:Moore, Brian C J (April 2014).
560:2016 Elected a Fellow of the
533:2008 Award of Merit from the
803:
770:
737:
704:
637:
626:
609:
430:Hearing aid design and fitting
1:
2210:Acoustical Society of America
1165:10.1016/S0378-5955(03)00347-2
602:
552:Acoustical Society of America
522:Acoustical Society of America
181:Acoustical Society of America
2441:Fellows of the Royal Society
2389:Administrator (2015-04-23).
2240:(3): 1171â1189. 2003-09-01.
1978:10.1016/0378-5955(90)90170-T
1655:10.3109/14992027.2010.512613
1551:10.1097/AUD.0000000000000032
1433:British Journal of Audiology
1338:British Journal of Audiology
1248:British Journal of Audiology
274:"Brian Moore" scientist
243:biography of a living person
211:
206:
197:Belgian Society of Audiology
189:British Society of Audiology
7:
744:Moore, Brian C. J. (2007).
711:Moore, Brian C. J. (2003).
580:
509:Fellow of the Royal Society
446:Diagnostic tests of hearing
367:
263:must be removed immediately
177:Academy of Medical Sciences
10:
2477:
616:Moore, Brian C.J. (1972).
419:American National Standard
156:. His research focuses on
154:Wolfson College, Cambridge
152:and an Emeritus Fellow of
124:Wolfson College, Cambridge
1604:10.1080/14992020802475235
1445:10.3109/03005364000000131
1394:10.1080/14992020802581982
1350:10.3109/03005369109079851
1260:10.3109/03005368309081480
1208:10.3109/14992020903296746
562:Audio Engineering Society
360:, Auditory Neuroscience,
223:
185:Audio Engineering Society
171:Moore is a fellow of the
132:
111:
88:
81:
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49:
37:
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2191:. Ann Allen, Reading UK.
1772:10.1177/2331216518797259
1714:10.3389/fnagi.2014.00347
2142:10.1073/pnas.0607364103
461:auditory scene analysis
455:Auditory scene analysis
380:, masking effects, and
347:University of Cambridge
150:University of Cambridge
119:University of Cambridge
1023:Cite journal requires
592:Equal-loudness contour
440:automatic gain control
257:Please help by adding
2446:British psychologists
2395:www.psychol.cam.ac.uk
2230:"Acoustical NewsâUSA"
339:University of Reading
252:references or sources
2293:"ARO Award of Merit"
1087:Psychological Review
781:. WORLD SCIENTIFIC.
2358:2014ASAJ..135.2327O
2187:Allen, Ann (2011).
2133:2006PNAS..10318866L
2127:(49): 18866â18869.
2078:2011ASAJ..130..334H
2025:2010ASAJ..127.1595H
1927:1997ASAJ..102.1768R
1876:1986ASAJ...80..479M
1825:1985ASAJ...77.1861M
1766:: 233121651879725.
1056:1933ASAJ....5...82F
969:1996ASAJ..100.2320M
926:2009ASAJ..125.3186M
875:2012ASAJ..132.1542M
824:1973ASAJ...54..610M
662:"Brian Moore | ENS"
44:Brian Moore in 2017
382:speech recognition
241:This section of a
2367:10.1121/1.4877642
2246:10.1121/1.1600717
2086:10.1121/1.3585848
2034:10.1121/1.3293003
1760:Trends in Hearing
1064:10.1121/1.1915637
934:10.1121/1.3106525
883:10.1121/1.4739444
832:10.1121/1.1913640
796:978-981-4579-65-0
755:978-0-470-51818-2
507:2002 Elected a
498:2001 Elected a
480:Awards and honors
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101:Speech perception
83:Scientific career
60:February 10, 1946
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1966:Hearing Research
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511:of London (FRS).
396:Pitch perception
378:pitch perception
362:Hearing Research
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259:reliable sources
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139:Brian C.J. Moore
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