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Masaharu Kato

Publications and source records attributed to Masaharu Kato.

2 recordsLinked to original sources

Auditory dominance in the error correction process: a synchronized tapping study.

The goal of this study was to reveal auditory dominance in the error correction process that operates in the synchronized tapping paradigm. We presented six female subjects with a sound and a flash, alternately and successively. The subjects' task was to tap in synchrony with the sequence of the attended to modality (the target sequence). The inter-onset interval of the target sequence was 996 ms but varied irregularly between 996 - alpha ms and 996 + alpha ms for the distractor sequence. We found that tapping accuracy was influenced by the irregularity of the distractor sequence. As distractor stimuli were temporally separated from target stimuli, auditory-visual integration in timing did not occur in our experiment. Therefore, the irregularity of the distractor sequence must have directly influenced the error correction process in timing and not indirectly by affecting the target sequence to subsequently influence the error correction process. We also found that tapping accuracy was influenced by the irregularity of the auditory distractor, even when the irregularity was unnoticeable, but it was not affected by the irregularity of the visual distractor when the irregularity was unnoticeable, which suggests that the error correction process is located before, or is independent of, the perception of irregularity in timing. We conclude that the error correction process depends more on temporal information from the auditory system than on information from the visual system.

Acoustic Stimulation↗

[Development of auditory-visual spatial integration using saccadic response time as the index].

We measured saccadic response time (SRT) to investigate developmental changes related to spatially aligned or misaligned auditory and visual stimuli responses. We exposed 4-, 5-, and 11-month-old infants to ipsilateral or contralateral auditory-visual stimuli and monitored their eye movements using an electro-oculographic (EOG) system. The SRT analyses revealed four main results. First, saccades were triggered by visual stimuli but not always triggered by auditory stimuli. Second, SRTs became shorter as the children grew older. Third, SRTs for the ipsilateral and visual-only conditions were the same in all infants. Fourth, SRTs for the contralateral condition were longer than for the ipsilateral and visual-only conditions in 11-month-old infants but were the same for all three conditions in 4- and 5-month-old infants. These findings suggest that infants acquire the function of auditory-visual spatial integration underlying saccadic eye movement between the ages of 5 and 11 months. The dependency of SRTs on the spatial configuration of auditory and visual stimuli can be explained by cortical control of the superior colliculus. Our finding of no differences in SRTs between the ipsilateral and visual-only conditions suggests that there are multiple pathways for controlling the superior colliculus and that these pathways have different developmental time courses.

Acoustic Stimulation↗