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耳聋患者上丘皮质投射的起源改变:听觉传出纤维的离散。

Modified Origins of Cortical Projections to the Superior Colliculus in the Deaf: Dispersion of Auditory Efferents.

机构信息

Department of Psychology,

Brain and Mind Institute.

出版信息

J Neurosci. 2018 Apr 18;38(16):4048-4058. doi: 10.1523/JNEUROSCI.2858-17.2018. Epub 2018 Apr 2.

Abstract

Following the loss of a sensory modality, such as deafness or blindness, crossmodal plasticity is commonly identified in regions of the cerebrum that normally process the deprived modality. It has been hypothesized that significant changes in the patterns of cortical afferent and efferent projections may underlie these functional crossmodal changes. However, studies of thalamocortical and corticocortical connections have refuted this hypothesis, instead revealing a profound resilience of cortical afferent projections following deafness and blindness. This report is the first study of cortical outputs following sensory deprivation, characterizing cortical projections to the superior colliculus in mature cats ( = 5, 3 female) with perinatal-onset deafness. The superior colliculus was exposed to a retrograde pathway tracer, and subsequently labeled cells throughout the cerebrum were identified and quantified. Overall, the percentage of cortical projections arising from auditory cortex was substantially increased, not decreased, in early-deaf cats compared with intact animals. Furthermore, the distribution of labeled cortical neurons was no longer localized to a particular cortical subregion of auditory cortex but dispersed across auditory cortical regions. Collectively, these results demonstrate that, although patterns of cortical afferents are stable following perinatal deafness, the patterns of cortical efferents to the superior colliculus are highly mutable. When a sense is lost, the remaining senses are functionally enhanced through compensatory crossmodal plasticity. In deafness, brain regions that normally process sound contribute to enhanced visual and somatosensory perception. We demonstrate that hearing loss alters connectivity between sensory cortex and the superior colliculus, a midbrain region that integrates sensory representations to guide orientation behavior. Contrasting expectation, the proportion of projections from auditory cortex increased in deaf animals compared with normal hearing, with a broad distribution across auditory fields. This is the first description of changes in cortical efferents following sensory loss and provides support for models predicting an inability to form a coherent, multisensory percept of the environment following periods of abnormal development.

摘要

在失去一种感觉模态(如失聪或失明)后,大脑中通常处理缺失模态的区域会出现跨模态可塑性。人们假设皮质传入和传出投射模式的显著变化可能是这些功能跨模态变化的基础。然而,对丘脑皮质和皮质皮质连接的研究反驳了这一假设,反而揭示了听觉丧失和失明后皮质传入投射的深刻恢复能力。本报告是首次研究感觉剥夺后的皮质输出,描述了成年猫(n = 5,3 只为雌性)听觉剥夺后皮质向高级视丘的投射。高级视丘暴露于逆行途径示踪剂中,随后鉴定并量化了整个大脑中的标记细胞。总体而言,与正常动物相比,早期失聪猫的皮质投射中来自听觉皮质的比例大大增加,而不是减少。此外,标记皮质神经元的分布不再局限于听觉皮质的特定皮质亚区,而是分散在整个听觉皮质区域。综上所述,这些结果表明,尽管皮质传入模式在围产期失聪后保持稳定,但皮质传出到高级视丘的模式高度可变。当一种感觉丧失时,其他感觉会通过补偿性跨模态可塑性来增强功能。在失聪中,通常处理声音的大脑区域有助于增强视觉和体感感知。我们证明,听力损失会改变感觉皮质和高级视丘之间的连接,高级视丘是一个整合感觉表示以指导定向行为的中脑区域。与预期相反,与正常听力相比,聋动物中来自听觉皮质的投射比例增加,并且在听觉区域中广泛分布。这是首次描述感觉丧失后皮质传出的变化,并为预测在异常发育时期后无法形成环境的连贯、多感觉感知的模型提供支持。

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