School of Psychological Sciences, University of Manchester, Oxford Road, Manchester M13 9PL, United Kingdom.
Clin Neurophysiol. 2013 Feb;124(2):391-9. doi: 10.1016/j.clinph.2012.07.016. Epub 2012 Aug 25.
To investigate the effect of acquired unilateral deafness on hemispheric asymmetries in adult humans using cortical auditory evoked potentials.
N1 cortical auditory evoked potentials were measured from 30 channels in 18 unilateral profoundly-deaf participants (6 right-sided and 12 left-sided deafness) and 18 audiogram-matched controls. Stimuli were 0.5-kHz and 4-kHz tones presented monaurally, and the data were analysed using global field power and dipole source analysis.
There was a statistically significant difference in dipole source strength and orientation between the two groups. Similar changes (increased dipole strength and more medial orientation) were apparent after profound unilateral deafness of either ear and for both stimuli.
The results reveal evidence of central auditory system plasticity that is consistent with animal models having experimentally induced unilateral deafness.
The trend towards reduced hemispheric asymmetries was reflected in the dipole source model by changes in dipole strength, location and orientation. These findings may explain the inconsistencies reported in previous studies involving dipole source analysis where location and orientation have not always been considered.
使用皮质听觉诱发电位研究后天单侧耳聋对成人半球间不对称性的影响。
在 18 名单侧深度耳聋参与者(6 名右侧耳聋和 12 名左侧耳聋)和 18 名听力图匹配的对照组中,从 30 个通道测量 N1 皮质听觉诱发电位。刺激物为 0.5 kHz 和 4 kHz 单声道声音,使用全局场功率和偶极子源分析对数据进行分析。
两组之间偶极子源强度和方向存在统计学上的显著差异。无论是哪只耳朵的深度单侧耳聋,对于两种刺激,都明显出现了类似的变化(偶极子强度增加,更偏向内侧)。
这些结果提供了中枢听觉系统可塑性的证据,与实验诱导单侧耳聋的动物模型一致。
在偶极子源模型中,这种半球间不对称性降低的趋势反映在偶极子强度、位置和方向的变化上。这些发现可能解释了先前涉及偶极子源分析的研究中报告的不一致性,因为在这些研究中,位置和方向并不总是被考虑在内。