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新生去眼球仓鼠的跨模态神经可塑性:结构、电生理学与行为

Cross-modal neuroplasticity in neonatally enucleated hamsters: structure, electrophysiology and behaviour.

作者信息

Izraeli Ruth, Koay Gimseong, Lamish Meyrav, Heicklen-Klein Alice J, Heffner Henry E, Heffner Rickye S, Wollberg Zvi

机构信息

Department of Zoology, George S. Wise Faculty of Life Sciences, Tel Aviv University, Tel Aviv 69978, Israel.

出版信息

Eur J Neurosci. 2002 Feb;15(4):693-712. doi: 10.1046/j.1460-9568.2002.01902.x.

Abstract

Potential auditory compensation in neonatally bilaterally enucleated Syrian hamsters was explored anatomically, electrophysiologically and behaviourally. Gross morphology of the visual cortex appeared normal and no obvious cytoarchitectural malformation was discerned. However, enucleation induced a significant increase in the spontaneous firing rate of visual cortex cells. Further, auditory stimuli elicited field potentials and single unit responses in the visual cortex of enucleated, but not normal, animals. About 63% of the cells isolated in the visual cortex of 16 enucleated hamsters responded to at least one type of auditory stimulus. Most of the responses were less vigorous and less time-locked than those of auditory cortex cells, and thresholds were typically higher. Projection tracing with WGA-HRP disclosed reciprocal connections between the visual cortex and the dorsal lateral geniculate nucleus in both intact and enucleated animals. However, in the enucleated animals retrogradely labelled cells were also found in the inferior colliculus, the major midbrain auditory nucleus. Behaviourally determined auditory sensitivity across the hearing range did not differ between enucleated and intact hamsters. Minimum audible angle, as determined by a conditioned suppression task, ranged from around 17 to 22 degrees, with no significant difference between normal and enucleated animals. The two groups also did not differ with regard to the direction of their unconditioned head orientating response to intermittent noise. However, the enucleated animals showed a more vigorous response and were slower to habituate to the noise. These results show that bilateral enucleation of newborn hamsters results in auditory activation of visual targets, in addition to the typical activation of the intact auditory pathway. Behaviourally it appears that enucleated hamsters, compared with their normal littermates, are slower to habituate in their response to an unexpected source of sound.

摘要

对新生双侧摘除眼球的叙利亚仓鼠的潜在听觉补偿进行了解剖学、电生理学和行为学方面的探究。视觉皮层的大体形态看起来正常,未发现明显的细胞结构畸形。然而,摘除眼球导致视觉皮层细胞的自发放电率显著增加。此外,听觉刺激在摘除眼球而非正常的动物的视觉皮层中引发了场电位和单单位反应。在16只摘除眼球的仓鼠的视觉皮层中分离出的细胞中,约63%对至少一种类型的听觉刺激有反应。大多数反应比听觉皮层细胞的反应更不强烈且时间锁定性更差,阈值通常更高。用WGA-HRP进行的投射追踪揭示了完整和摘除眼球的动物的视觉皮层与背侧外侧膝状体核之间的相互连接。然而,在摘除眼球的动物中,在下丘(中脑主要的听觉核)也发现了逆行标记的细胞。行为学测定的整个听力范围内的听觉敏感性在摘除眼球和完整的仓鼠之间没有差异。通过条件抑制任务确定的最小可听角度在17度到22度左右,正常和摘除眼球的动物之间没有显著差异。两组在对间歇性噪声的无条件头部定向反应方向上也没有差异。然而,摘除眼球的动物表现出更强烈的反应,并且对噪声的习惯化较慢。这些结果表明,新生仓鼠的双侧摘除眼球除了导致完整听觉通路的典型激活外,还会导致视觉靶点的听觉激活。从行为学上看,与正常同窝仓鼠相比,摘除眼球的仓鼠对意外声源的反应习惯化较慢。

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