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For example, tonotopic organization was analyzed to tone patterns of different frequency across 36 different task conditions (two tone intensities, three tone locations, continuous vs. sparse image acquisition, and three attention conditions).
Tone intensities progressed in 20-, 10-, and 5-dB steps, at 32, 20, 16, and 8 kHz, and the ABR threshold was determined as the lowest intensity that produced a visually distinct potential.
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Paul Cézanne, for example, demonstrated that subtle changes in the surface of a form and in its spatial relationship to others could be expressed primarily in facets of colour, modulated by varying degrees of tone, intensity, and temperature and by the introduction of complementary colour accents.
The sensory results were compared to conventional computer-assisted grey tone intensity histogram descriptors.
This is not surprising for the tone intensity is determined by the nonlinearities of the feedback loop.
Many studies have been shown to agree reasonably well with model and full-scale experimental data even at high jet velocities in the region near the jet axis [31, 32, 33, 34] However, there is no known way to predict tone intensity and directivity; even if it is entirely empirical.
The paper by Saz et al. presents the results in the analysis of the acoustic features (formants and the three suprasegmental features: tone, intensity, and duration) of the vowel production in a group of young speakers suffering different kinds of speech impairments due to physical and cognitive disorders.
This work presents the results in the analysis of the acoustic features (formants and the three suprasegmental features: tone, intensity and duration) of the vowel production in a group of 14 young speakers suffering different kinds of speech impairments due to physical and cognitive disorders.
Spatial distribution analysis suggested that changes in tone intensity shifted activation within isofrequency bands.
Distribution analysis suggested that both tone intensity and signal-to-noise ratio shifted activation distributions within isofrequency bands.
All-ASA activations did not differ in magnitude in the left and right hemispheres (F 1,8) = 2.61, p<0.15) and there were no significant interactions between Hemisphere and Tone Frequency (F 2,16) = 0.54), Tone Intensity (F 1,8) = 0.01), or Image Acquisition (F 1,8) = 0.10).
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