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Right hemisphere specialization for intensity discrimination of musical and speech sounds.

机译:右半球专业化,用于区分音乐和语音。

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摘要

Sound intensity is the primary and most elementary feature of auditory signals. Its discrimination plays a fundamental role in different behaviours related to auditory perception such as sound source localization, motion detection, and recognition of speech sounds. This study was aimed at investigating hemispheric asymmetries for processing intensity of complex tones and consonant-vowel syllables. Forty-four right-handed non-musicians were presented with two dichotic matching-to-sample tests with focused attention: one with complex tones of different intensities (musical test) and the other with consonant-vowel syllables of different intensities (speech test). Intensity differences (60, 70, and 80dBA) were obtained by altering the gain of a synthesized harmonic tone (260Hz fundamental frequency) and of a consonant-vowel syllable (/ba/) recorded from a natural voice. Dependent variables were accuracy and reaction time. Results showed a significant clear-cut left ear advantage in both tests for both dependent variables. A monaural control experiment ruled out possible attentional biases. This study provides behavioural evidence of a right hemisphere specialization for the perception of the intensity of musical and speech sounds in healthy subjects.
机译:声音强度是听觉信号的主要和最基本的特征。它的区别在与听觉相关的各种行为中起着根本作用,例如声源定位,运动检测和语音识别。这项研究旨在调查半球形不对称性,以处理复杂音调和辅音元音节的强度。向44位惯用右手的非音乐家提供了两个重点关注的二分法匹配样本测试:一个具有不同强度的复杂音调(音乐测试),另一个具有不同强度的辅音元音节(语音测试) 。通过改变合成谐波音(260Hz基本频率)和从自然声音记录的辅音元音节(/ ba /)的增益,可以获得强度差(60、70和80dBA)。因变量是准确性和反应时间。结果表明,在两个测试中,两个因变量均具有明显的左耳优势。单耳控制实验排除了可能的注意力偏差。这项研究提供了正确的半球专业化的行为证据,可以感知健康受试者的音乐和语音强度。

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