首页> 美国卫生研究院文献>Frontiers in Integrative Neuroscience >Right Hemispheric Contributions to Fine Auditory Temporal Discriminations: High-Density Electrical Mapping of the Duration Mismatch Negativity (MMN)
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Right Hemispheric Contributions to Fine Auditory Temporal Discriminations: High-Density Electrical Mapping of the Duration Mismatch Negativity (MMN)

机译:右半球对精细听觉时间歧视的贡献:持续时间不匹配负数(MMN)的高密度电映射

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摘要

That language processing is primarily a function of the left hemisphere has led to the supposition that auditory temporal discrimination is particularly well-tuned in the left hemisphere, since speech discrimination is thought to rely heavily on the registration of temporal transitions. However, physiological data have not consistently supported this view. Rather, functional imaging studies often show equally strong, if not stronger, contributions from the right hemisphere during temporal processing tasks, suggesting a more complex underlying neural substrate. The mismatch negativity (MMN) component of the human auditory evoked-potential provides a sensitive metric of duration processing in human auditory cortex and lateralization of MMN can be readily assayed when sufficiently dense electrode arrays are employed. Here, the sensitivity of the left and right auditory cortex for temporal processing was measured by recording the MMN to small duration deviants presented to either the left or right ear. We found that duration deviants differing by just 15% (i.e. rare 115 ms tones presented in a stream of 100 ms tones) elicited a significant MMN for tones presented to the left ear (biasing the right hemisphere). However, deviants presented to the right ear elicited no detectable MMN for this separation. Further, participants detected significantly more duration deviants and committed fewer false alarms for tones presented to the left ear during a subsequent psychophysical testing session. In contrast to the prevalent model, these results point to equivalent if not greater right hemisphere contributions to temporal processing of small duration changes.
机译:语言处理主要是左半球的功能,导致了这样的假设,即听觉时间歧视在左半球特别好,因为认为语音歧视在很大程度上依赖于时间过渡的记录。但是,生理数据并不能始终如一地支持这种观点。相反,功能影像学研究通常显示,在颞叶处理任务过程中,右半球的贡献同样强大,即使不是更强,也表明潜在的神经基础更为复杂。人类听觉诱发电位的失配负性(MMN)分量提供了人类听觉皮层中持续时间处理的灵敏指标,当使用足够密集的电极阵列时,可以容易地检测MMN的侧向化。在这里,通过将MMN记录到呈现给左耳或右耳的小持续时间偏差,来测量左右听觉皮层对时间处理的敏感性。我们发现,持续时间偏差仅相差15%(即,在100µms音流中呈现的罕见115µms音)引起了呈现给左耳(偏向右半球)的音的显着MMN。但是,出现在右耳上的变形导致该分离未检测到MMN。此外,参与者在随后的心理物理测试过程中检测到明显更多的持续时间偏差,并针对出现在左耳的音调发出了较少的错误警报。与流行的模型相比,这些结果表明,如果持续时间较小,则右半球对时间处理的贡献即使没有更大,也相等。

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