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声压级和视觉感知负荷对听觉失匹配负波的影响。

Effects of sound pressure level and visual perceptual load on the auditory mismatch negativity.

作者信息

Szychowska Malina, Eklund Rasmus, Nilsson Mats E, Wiens Stefan

机构信息

Gösta Ekman Laboratory, Department of Psychology, Stockholm University, Frescati Hagväg 9A, Stockholm, Sweden.

Gösta Ekman Laboratory, Department of Psychology, Stockholm University, Frescati Hagväg 9A, Stockholm, Sweden.

出版信息

Neurosci Lett. 2017 Feb 15;640:37-41. doi: 10.1016/j.neulet.2017.01.001. Epub 2017 Jan 3.

Abstract

Auditory change detection has been studied extensively with mismatch negativity (MMN), an event-related potential. Because it is unresolved if the duration MMN depends on sound pressure level (SPL), we studied effects of different SPLs (56, 66, and 76dB) on the duration MMN. Further, previous research suggests that the MMN is reduced by a concurrent visual task. Because a recent behavioral study found that high visual perceptual load strongly reduced detection sensitivity to irrelevant sounds, we studied if the duration MMN is reduced by load, and if this reduction is stronger at low SPLs. Although a duration MMN was observed for all SPLs, the MMN was apparently not moderated strongly by SPL, perceptual load, or their interaction, because all 95% CIs overlapped zero. In a contrast analysis of the MMN (across loads) between the 56-dB and 76-dB groups, evidence (BF=0.31) favored the null hypothesis that duration MMN is unaffected by a 20-dB increase in SPL. Similarly, evidence (BF=0.19) favored the null hypothesis that effects of perceptual load on the duration MMN do not change with a 20-dB increase in SPL. However, evidence (BF=3.12) favored the alternative hypothesis that the effect of perceptual load in the present study resembled the overall effect in a recent meta-analysis. When the present findings were combined with the meta-analysis, the effect of load (low minus high) was -0.43μV, 95% CI [-0.64, -0.22] suggesting that the duration MMN decreases with load. These findings provide support for a sensitive monitoring system of the auditory environment.

摘要

听觉变化检测已通过失配负波(MMN)这一事件相关电位进行了广泛研究。由于MMN的时长是否取决于声压级(SPL)尚无定论,我们研究了不同声压级(56、66和76分贝)对MMN时长的影响。此外,先前的研究表明,同时进行的视觉任务会使MMN降低。由于最近一项行为研究发现,高视觉感知负荷会大幅降低对无关声音的检测灵敏度,我们研究了MMN时长是否会因负荷而降低,以及这种降低在低声压级时是否更明显。尽管在所有声压级下均观察到了MMN时长,但MMN显然并未受到声压级、感知负荷或它们之间相互作用的强烈调节,因为所有95%的置信区间都与零重叠。在对56分贝组和76分贝组之间的MMN(跨负荷)进行对比分析时,证据(贝叶斯因子=0.31)支持零假设,即声压级增加20分贝不会影响MMN时长。同样,证据(贝叶斯因子=0.19)支持零假设,即感知负荷对MMN时长的影响不会随着声压级增加20分贝而改变。然而,证据(贝叶斯因子=3.12)支持备择假设,即本研究中感知负荷的影响类似于最近一项荟萃分析中的总体影响。当将本研究结果与荟萃分析相结合时,负荷(低减去高)的影响为-0.43微伏,95%置信区间为[-0.64, -0.22],表明MMN时长随负荷降低。这些发现为听觉环境的灵敏监测系统提供了支持。

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