Search PubMedSearch

PubMed · 9265757

Modulation detection interference with two-component masker modulators.

Abstract

Thresholds were measured for detecting amplitude modulation of a single tonal carrier in the presence of modulated maskers. The masker modulator contained either one or two sinusoidal components. As found in previous studies, there was a detrimental effect of masker modulation on the detection of probe modulation. Interference was obtained with a 4-Hz separation between the two components of the masker modulator with the probe modulated at the 4-Hz beat rate. The amount of interference obtained with the two-component masker modulator was greater than that produced by the individual components of the masker modulator. The amount of interference increased with the depth of the masker-modulator beating and the number of masker carriers. The interference due to beating of the masker-modulator components was reduced when the beat rate was increased from 4 to 10 Hz. Results obtained with two-component masker modulators indicate a masking effect not predicted by a spectral representation of the probe and masker envelopes.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

S Sheft, W A Yost. 1997. Modulation detection interference with two-component masker modulators.. https://doi.org/10.1121/1.419862

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Auditory training in severely and profoundly hearing impaired toddlers: the development of auditory skills and verbal communication.

Three different tests are applied to evaluate the performance of very young hearing impaired children. Three subgroups were formed according to hearing loss. The sound identification test as well as the Reynell Developmental Scales proved to be useful but Early Scales of Communication did not differentiate well enough between the three subgroups.

Auditory Perception

Auditory distance perception in rooms.

The perceived distance of a sound source in a room has been shown to depend on the ratio of the energies of direct and reflected sound. Although this relationship was verified in later studies, the research has never led to a quantitative model. The advent of techniques for the generation of virtual sound sources has made it possible to study distance perception using controlled, deterministic stimuli. Here we present two experiments that make use of such stimuli and we show that a simple model, based on a modified direct-to-reverberant energy ratio, can accurately predict the results and also provide an explanation for the 'auditory horizon' in distance perception. The modification of the ratio consists of the use of an integration time of 6 milliseconds in the calculation of the energy of the direct sound. This time constant seems to be important in spatial hearing-the precedence effect is also based on a similar integration window.

Auditory Perception

Scale-invariance as a unifying psychological principle.

How can the classical psychological laws be explained and unified? It is proposed here that scale-invariance is a unifying principle. Distributions of many environmental magnitudes are observed to be scale invariant; that is, the statistical structure of the world remains the same at different measurement scales [Mandelbrot, B., 1982. The Fractal Geometry of Nature (2nd Edn.). W.H. Freeman, San Francisco, CA; Bak, P., 1997. How Nature Works: The Science of Self-organized Criticality. Oxford University Press, Oxford, UK]. We hypothesise that the perceptual-motor system reflects and preserves these scale invariances. This allows derivation of several of the most widely applicable psychological laws governing perception and action across domains and species (Weber's, Stevens', Fitts' and Piéron's Laws). We suggest that these fundamental laws reflect accommodation of the perceptuo-motor system to the scale-invariant physical world and therefore have a common foundation.

Auditory Perception