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Peer reviewedSherman, Robert W. – Journal of Research in Music Education, 1970
Descriptors: Auditory Perception, Educational Change, Hypothesis Testing, Music Education
Vaught, Glen M. – Percept Mot Skills, 1969
Descriptors: Auditory Perception, Discrimination Learning, Perception Tests, Perceptual Development
Golden, Nancy E.; Steiner, Sharon R. – J Learning Disabilities, 1969
Descriptors: Auditory Perception, Dyslexia, Exceptional Child Research, Identification
Peer reviewedRamsey, Jonny H. – Journal of Research in Music Education, 1983
Study results revealed the following: (1) age affected the children's perception of melodic rhythm, contour, and interval; (2) high-ability singers scored higher than low-ability singers on perception of melodic rhythm, contour, and interval and tonal center; and (3) instrumental experience did not significantly affect perception of melodic…
Descriptors: Age, Applied Music, Auditory Perception, Educational Research
Peer reviewedLuick, Anthony H.; And Others – Journal of Speech and Hearing Disorders, 1982
The study investigated whether children assigned to classes for severe oral language handicaps in California by a multidisciplinary diagnostic team exhibit a characteristic Illinois Test of Psycholinguistic Abilities performance profile or a number of distinct profiles. (Author)
Descriptors: Aphasia, Auditory Perception, Language Handicaps, Perceptual Motor Learning
Peer reviewedDeutsch, Diana; Feroe, John – Psychological Review, 1981
A model for the internal representation of pitch sequences in tonal music is advanced. Pitch sequences are retained as hierarchical networks. At each level, elements are organized as structural units, in accordance with laws of figural goodness. Processing advantages of the system are discussed. (Author/BW)
Descriptors: Auditory Discrimination, Auditory Perception, Auditory Stimuli, Cognitive Processes
Peer reviewedMykel, Nan; Daves, Walter F. – British Journal of Psychology, 1979
Right-handed subjects listened to music with one ear and received subliminal words in the other. The words emerged in subjects' reported imagery of the music more when the words were presented to the right ear (left brain hemisphere). A second experiment eliminated the music. (SJL)
Descriptors: Auditory Perception, Auditory Stimuli, Cerebral Dominance, Imagery
Peer reviewedBundy, Robert S. – Child Development, 1980
Twenty-two infants aged eight weeks and 23 infants aged 16 weeks were tested in a visual fixation paradigm for the detection and use of sound localization cues. (JMB)
Descriptors: Age Differences, Auditory Discrimination, Auditory Perception, Eye Fixations
Peer reviewedChistovich, Ludmilla A. – Language and Speech, 1980
Outlines an approach for studying auditory levels in speech perception, focusing on the artificial speech understanding system that is most compatible with the experimental data obtained in speech perception research. (RL)
Descriptors: Acoustic Phonetics, Adults, Artificial Speech, Auditory Perception
Peer reviewedNeuman, Susan B. – Reading Teacher, 1981
Reports that first grade children could be taught auditory perceptual skills, but that this training did not have a significant effect on their reading achievement. (Author/FL)
Descriptors: Auditory Perception, Grade 1, Primary Education, Reading Achievement
Peer reviewedTent, J. Clark, J. E. – Journal of Phonetics, 1980
Describes an experiment designed to verify the notion that many slips of the tongue go undetected and demonstrates that phonemic slips of the tongue are perceived less often than nonphonemic slips of the tongue. Findings also indicate that the latter disturb perception of segments in the rest of the sentence more than the former. (Author/MES)
Descriptors: Auditory Perception, Error Analysis (Language), Linguistic Performance, Native Speakers
Peer reviewedErber, Norman P. – Journal of Speech and Hearing Disorders, 1979
Examples of pattern cues that are available to profoundly hearing-impaired children are presented through an optical analog, and the usefulness of these cues is shown with regard to vowel and consonant identification, word stress-pattern perception, and distinction among sentences that differ in number of syllables, pattern, intensity, or rate.…
Descriptors: Audiology, Auditory Evaluation, Auditory Perception, Cues
Peer reviewedHolden, Edward A., Jr.; Corrigan, James G. – American Journal of Mental Deficiency, 1980
Eighteen educable mentally retarded adolescents, 18 chronological age (CA) matched nonretarded adolescents, and 18 mental age (MA) matched nonretarded children stylus-tracked an intermittently disappearing rotary pursuit target with and without auditory feedback. (Author)
Descriptors: Adolescents, Auditory Perception, Exceptional Child Research, Feedback
Peer reviewedWeaver, Phyllis A.; Rosner, Jerome – Journal of Learning Disabilities, 1979
Scores of 25 learning disabled students (aged 9 to 13) were compared on five tests: a visual-perceptual test (Coloured Progressive Matrices); an auditory-perceptual test (Auditory Motor Placement); a listening and reading comprehension test (Durrell Listening-Reading Series); and a word recognition test (Word Recognition subtest, Diagnostic…
Descriptors: Auditory Perception, Comprehension, Elementary Education, Exceptional Child Research
Peer reviewedHarber, Jean R. – Reading World, 1980
Reports on a study of 76 learning disabled children to discover the relationship between the auditory perceptual skills and reading skills. Indicates that the relationship between reading performance and the auditory skills of auditory closure and sound blending are relatively small. (TJ)
Descriptors: Auditory Perception, Elementary Education, Learning Disabilities, Listening Skills


