Department of Anatomy and Neurobiology, Washington University School of Medicine, St. Louis, MO 63110, USA.
Brain Res. 2012 May 15;1454:33-47. doi: 10.1016/j.brainres.2012.02.066. Epub 2012 Mar 4.
We studied activation magnitudes in core, belt, and parabelt auditory cortex in adults with normal hearing (NH) and unilateral hearing loss (UHL) using an interrupted, single-event design and monaural stimulation with random spectrographic sounds. NH patients had one ear blocked and received stimulation on the side matching the intact ear in UHL. The objective was to determine whether the side of deafness affected lateralization and magnitude of evoked blood oxygen level-dependent responses across different auditory cortical fields (ACFs). Regardless of ear of stimulation, NH showed larger contralateral responses in several ACFs. With right ear stimulation in UHL, ipsilateral responses were larger compared to NH in core and belt ACFs, indicating neuroplasticity in the right hemisphere. With left ear stimulation in UHL, only posterior core ACFs showed larger ipsilateral responses, suggesting that most ACFs in the left hemisphere had greater resilience against reduced crossed inputs from a deafferented right ear. Parabelt regions located posterolateral to core and belt auditory cortex showed reduced activation in UHL compared to NH irrespective of RE/LE stimulation and lateralization of inputs. Thus, the effect in UHL compared to NH differed by ACF and ear of deafness.
我们使用间断的单事件设计和随机频谱声音对单侧听力损失(UHL)的正常听力(NH)成年人的核心、带和旁带听觉皮层的激活幅度进行了研究。NH 患者的一只耳朵被阻塞,并在 UHL 中与健全耳朵同侧的耳朵接受刺激。目的是确定耳聋的一侧是否会影响不同听觉皮层区域(ACF)的诱发血氧水平依赖性反应的侧化和幅度。无论刺激耳朵如何,NH 在几个 ACF 中均表现出更大的对侧反应。在 UHL 中右耳刺激时,与 NH 相比,同侧反应在核心和带 ACF 中更大,表明右半球的神经可塑性。在 UHL 中左耳刺激时,只有后核心 ACF 显示出更大的同侧反应,这表明左侧半球的大多数 ACF 对来自去传入的右耳的交叉输入减少具有更大的弹性。旁带区位于核心和带听觉皮层的后外侧,与 NH 相比,无论 RE/LE 刺激和输入的侧化如何,UHL 的激活均减少。因此,与 NH 相比,UHL 的效果因 ACF 和耳聋的耳朵而异。