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首页> 外文期刊>The Journal of Comparative Neurology >c-Fos and Arc/Arg3.1 expression in auditory and visual cortices after hearing loss: Evidence of sensory crossmodal reorganization in adult rats
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c-Fos and Arc/Arg3.1 expression in auditory and visual cortices after hearing loss: Evidence of sensory crossmodal reorganization in adult rats

机译:听力损失后的C-FOS和ARC / ARC3.1听觉和视觉皮质的表达:成人大鼠感官跨大型重组的证据

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Cross-modal reorganization in the auditory and visual cortices has been reported after hearing and visual deficits mostly during the developmental period, possibly underlying sensory compensation mechanisms. However, there are very few data on the existence or nature and timeline of such reorganization events during sensory deficits in adulthood. In this study, we assessed long-term changes in activity-dependent immediate early genes c-Fos and Arc/Arg3.1 in auditory and neighboring visual cortical areas after bilateral deafness in young adult rats. Specifically, we analyzed qualitatively and quantitatively c-Fos and Arc/Arg3.1 immunoreactivity at 15 and 90 days after cochlea removal. We report extensive, global loss of c-Fos and Arc/Arg3.1 immunoreactive neurons in the auditory cortex 15 days after permanent auditory deprivation in adult rats, which is partly reversed 90 days after deafness. Simultaneously, the number and labeling intensity of c-Fos- and Arc/Arg3.1-immunoreactive neurons progressively increase in neighboring visual cortical areas from 2 weeks after deafness and these changes stabilize three months after inducing the cochlear lesion. These findings support plastic, compensatory, long-term changes in activity in the auditory and visual cortices after auditory deprivation in the adult rats. Further studies may clarify whether those changes result in perceptual potentiation of visual drives on auditory regions of the adult cortex.
机译:在发动机期间在发育期间,可能是潜在的感官补偿机制,听觉和视觉皮质中的跨模式重组已经报告了听觉和视觉皮质。然而,在成年期间的感觉缺陷期间,存在关于这种重组事件的存在或性质和时间表的数据。在这项研究中,我们在年轻成年大鼠双侧耳聋后评估了在听觉和相邻的视觉皮质区域中的活性依赖性立即早期基因C-FOS和ARC / ARC3.1的长期变化。具体地,在耳蜗去除后的15和90天,我们分析了定性和定量的C-FOS和ARC / ARG3.1免疫反应性。我们在成人大鼠永久听觉剥夺永久听觉剥夺后的预防皮层中报告广泛,全球丧失C-FOS和ARC / ARG3.1免疫反作神经元,这部分在耳聋后90天逆转。同时,C-FOS-和ARC / ARG3.1-免疫反应神经元的数量和标记强度从耳聋后2周逐渐增加相邻的视觉皮质区域,并且在诱导耳蜗病变后三个月稳定这些变化。这些发现在成人大鼠听觉剥夺后,支持听觉和视觉皮质活动中的塑料,补偿,长期变化。进一步的研究可以阐明这些变化是否导致成人皮质听觉区域对视觉驱动的感知潜力。

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