PubMed HealthSearch

Biomedical subjects

M A Hammer

Publications and source records attributed to M A Hammer.

10 recordsLinked to original sources

Fine-grained auditory discrimination: factor structures.

This research tested the hypothesis that as children's language development matures, factor-analytic structural changes occur that are associated with measurements of fine-grained auditory discrimination, receptive vocabulary, receptive language, speech production, and three performance subtests of the WISC-R. Among 6- to 7-year-old children, the percent of total variance attributed to the factor defined by fine-grained auditory discrimination measures was approximately 43% for children who were intellectually impaired (Experiment 2), 27% for youngsters who had language-learning problems, and 16% for regularly progressing children (Experiment 1). The WISC-R subtest scores, generally, did not load on the auditory discrimination factor. The difference in variance explained by the auditory discrimination factor was interpreted as representing greater relative importance of auditory discrimination among children with less-well-developed language competencies than among children with more mature language skills. This interpretation was strengthened by the finding of no distinct auditory discrimination factor for 8- to 11-year-old children who were either regularly progressing or language-disabled even though the language/speech factor at this age closely resembled that found among younger children. Results were consonant with Ackerman's (1987) model, suggesting that task-specific variance associated with tasks that remain resource-dependent may diminish after practice and experience.

Child

Asymmetrical discrimination of narrow-band stimuli.

A three-interval, forced-choice procedure that obtained complete psychometric functions was used to study frequency discrimination for 13-item continua of impulse-generated, narrow-band, buzz-like, steady-state sounds. For all subjects and durations, discrimination relative to the highest center frequency (1060 Hz) stimuli was better than discrimination relative to the lowest center frequency (940 Hz). This result is not in consonance with traditional reports of pure tone frequency discrimination and is not readily explained. However, additional experiments with similar stimuli replicated these findings.

Adult

Discrimination of second-format-like frequency transitions.

Discrimination of two types of simulated single-second-format frequency transitions was studied, transitions where members of a stimulus set shared the same onset frequency and transitions where stimuli of a set shared the same offset frequency. Experiment 1 employed an adaptive procedure to measure just-noticeable differences for transitions that increased in frequency. Experiment 2 obtained complete psychometric functions, based on a three-interval, forced-choice procedure, for transitions that either increased or decreased in frequency. In both experiments, better discrimination occurred for longer stimuli, measured in hertz/millisecond, and for transitions that shared the same onset frequency. There were no differences, in Experiment 2, between discrimination of rising and falling transitions. Results are considered from several theoretical perspectives.

Adult

Perception of gated, highly familiar spoken monosyllabic nouns by children with and without learning disabilities.

A forward-gating procedure employing highly familiar monosyllabic words was used in auditory testing of age- and gender-matched children with learning disabilities and normally achieving children aged 8 to 11 years. The portion of the word presented, or "gate," was longer on each successive trial. Nondisabled children identified an average of one more word than the children with learning disabilities, but the mean duration required for word identification did not differ between groups. Better receptive vocabulary scores were associated with identification of words at shorter durations only among the children with learning disabilities. The two groups of children had similar numbers of different meaningful-word and different non-word incorrect responses. The children with learning disabilities exhibited poorer fine-grained auditory discrimination than a control group of nondisabled children. The study concluded that auditory closure skills for the gating task were as good among children with learning disabilities as among nondisabled children, but that sensory discrimination problems may contribute significantly to the learning difficulties of the former group.

Attention

Fine-grained auditory discrimination in normal children and children with language-learning problems.

Two large groups of children--one progressing normally in school and the other exhibiting language-learning problems--were tested on a set of fine-grained auditory discrimination tasks that required responding to small acoustic differences. Discriminant analysis procedures, using only results for the auditory tasks, correctly classified nearly 80% of the 6- and 7-year-olds and nearly 65% of the 8- to 11-year-olds according to their school placements. Percentages of correct classifications increased to 87% and 75% when measures of receptive vocabulary (PPVT-R), receptive language (the Token Test for Children), and the Digit Span, Coding, and Block Design subtests of the WISC-R were also included in the discriminant functions. Results suggested that fine-grained auditory discrimination makes a major contribution to language learning, particularly in the early elementary school years.

Child

Discrimination of rising and falling simulated single-formant frequency transitions: practice and transition duration effects.

Two experiments evaluated discrimination of simulated single-format frequency transitions. In the first experiment, listeners received practice with trial-by-trial feedback in discriminating either rising or falling frequency transitions of three different durations (30, 60, and 120 ms). Transitions either occurred in isolation or were followed by a steady-state sound matched in frequency to the transition end point. Some improvement in discrimination over practice runs occurred for the shortest transitions. Whether performance was evaluated at the beginning or end of practice, there were no differences attributable to transition direction or to whether transitions were followed by steady-state sound. Discrimination, however, was significantly better for the longest transitions. Just noticeable differences (jnd's) for the longest transitions, measured in Hz at transition onsets, were of approximately the same magnitude as jnd's for steady-state sounds that were equal in frequency to the midpoints of the transitions. Subjects of the second experiment discriminated the longer rising and falling transitions, but did not receive extensive practice. Results of experiment 2 replicated results of experiment 1 in showing similar jnd's. Experiment 2 also showed no differences attributable to transition direction or to the presence of the steady-state sound following transitions.

Acoustic Stimulation

Age differences in discrimination of simulated single-formant frequency transitions.

We studied auditory discrimination of simulated single-formant frequency transitions that resembled portions of certain speech consonants. Significant age differences in transition discrimination occurred; both children and older adults required larger acoustic differences between transitions for discrimination than did teenagers/young adults. Longer transitions were more easily discriminated than shorter transitions by all listeners, and there were no differences between discriminations of rising and falling transitions. Teens/young adults and older adults, but not children, required larger frequency differences to discriminate frequency transitions followed by a steady-state sound than for transitions alone. There were also age differences in discrimination of steady-state sounds. These developmental-perceptual differences may help explain why children and older adults who have good pure-tone sensitivity may experience difficulty in understanding speech.

Adolescent

Longitudinal changes in auditory discrimination in normal children and children with language-learning problems.

Two groups of children--one progressing normally in school and the other exhibiting language-learning problems--were tested in each of 3 years on a set of fine-grained auditory discrimination tasks that required listening for small acoustic differences. Children's ages ranged from 6 to 9 years; there were 21 children per group. The children with language-learning problems, despite having normal intelligence and normal pure-tone sensitivity, showed poorer auditory discrimination than normal children for temporally based acoustic differences. This effect continued across the 3 years. Children with language-learning problems also exhibited poorer receptive vocabulary and language performance as well as more deviations from standard Midwest articulation than children making normal progress in school. All children had hearing within the normal range, but at some frequencies there was a significant association of pure-tone sensitivity with performance on the auditory discrimination, receptive language, and speech production tasks.

Auditory Perception