Butler Blake E, Chabot Nicole, Lomber Stephen G
Cerebral Systems Laboratory, University of Western Ontario, London, Ontario, Canada, N6A 5C2.
Department of Physiology and Pharmacology, University of Western Ontario, London, Ontario, Canada, N6A 5C1.
J Comp Neurol. 2016 Oct 15;524(15):3042-63. doi: 10.1002/cne.24005. Epub 2016 Apr 14.
Following sensory loss, compensatory crossmodal reorganization occurs such that the remaining modalities are functionally enhanced. For example, behavioral evidence suggests that peripheral visual localization is better in deaf than in normal hearing animals, and that this enhancement is mediated by recruitment of the posterior auditory field (PAF), an area that is typically involved in localization of sounds in normal hearing animals. To characterize the anatomical changes that underlie this phenomenon, we identified the thalamic and cortical projections to the PAF in hearing cats and those with early- and late-onset deafness. The retrograde tracer biotinylated dextran amine was deposited in the PAF unilaterally, to label cortical and thalamic afferents. Following early deafness, there was a significant decrease in callosal projections from the contralateral PAF. Late-deaf animals showed small-scale changes in projections from one visual cortical area, the posterior ectosylvian field (EPp), and the multisensory zone (MZ). With the exception of these minor differences, connectivity to the PAF was largely similar between groups, with the principle projections arising from the primary auditory cortex (A1) and the ventral division of the medial geniculate body (MGBv). This absence of large-scale connectional change suggests that the functional reorganization that follows sensory loss results from changes in synaptic strength and/or unmasking of subthreshold intermodal connections. J. Comp. Neurol. 524:3042-3063, 2016. © 2016 Wiley Periodicals, Inc.
感觉丧失后,会发生代偿性跨模态重组,使得其余感觉模态在功能上得到增强。例如,行为学证据表明,聋动物的外周视觉定位比听力正常的动物更好,而且这种增强是由后听觉场(PAF)的募集介导的,PAF这个区域在听力正常的动物中通常参与声音定位。为了描述这一现象背后的解剖学变化,我们确定了听力正常的猫以及早发性和迟发性聋猫中丘脑和皮层向PAF的投射。将逆行示踪剂生物素化葡聚糖胺单侧注入PAF,以标记皮层和丘脑传入纤维。早期耳聋后,对侧PAF的胼胝体投射显著减少。迟发性聋动物在来自一个视觉皮层区域,即后外侧沟外区(EPp)和多感觉区(MZ)的投射中表现出小规模变化。除了这些微小差异外,各组之间与PAF的连接在很大程度上相似,主要投射来自初级听觉皮层(A1)和内侧膝状体腹侧部(MGBv)。这种大规模连接变化的缺失表明,感觉丧失后的功能重组是由突触强度的变化和/或阈下跨模态连接的去掩蔽引起的。《比较神经学杂志》524:3042 - 3063,2016年。© 2016威利期刊公司。