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揭示雄性和雌性八哥大脑和小脑的多感觉和运动神经可塑性的“敏感窗口”。

Uncovering a 'sensitive window' of multisensory and motor neuroplasticity in the cerebrum and cerebellum of male and female starlings.

机构信息

Bio-Imaging Lab, University of Antwerp, Antwerp, Belgium.

Laboratory of Comparative Endocrinology, Biology Department, Leuven, Belgium.

出版信息

Elife. 2021 Jun 7;10:e66777. doi: 10.7554/eLife.66777.

Abstract

Traditionally, research unraveling seasonal neuroplasticity in songbirds has focused on the male song control system and testosterone. We longitudinally monitored the song behavior and neuroplasticity in male and female starlings during multiple photoperiods using Diffusion Tensor and Fixel-Based techniques. These exploratory data-driven whole-brain methods resulted in a population-based tractogram confirming microstructural sexual dimorphisms in the song control system. Furthermore, male brains showed hemispheric asymmetries in the pallium, whereas females had higher interhemispheric connectivity, which could not be attributed to brain size differences. Only females with large brains sing but differ from males in their song behavior by showing involvement of the hippocampus. Both sexes experienced multisensory neuroplasticity in the song control, auditory and visual system, and cerebellum, mainly during the photosensitive period. This period with low gonadal hormone levels might represent a 'sensitive window' during which different sensory and motor systems in the cerebrum and cerebellum can be seasonally re-shaped in both sexes.

摘要

传统上,研究揭示季节性神经可塑性的鸣禽集中在雄性鸣禽控制系统和睾丸激素上。我们使用弥散张量和基于固定像素的技术,对雄性和雌性麻雀在多个光周期中的歌唱行为和神经可塑性进行了纵向监测。这些探索性的数据驱动的全脑方法得到了一个基于群体的束示踪图,证实了歌唱控制系统存在微观结构的性别二态性。此外,雄性大脑的大脑皮层表现出半球不对称性,而雌性具有更高的大脑半球间连接性,这不能归因于大脑大小的差异。只有大脑较大的雌性会唱歌,但它们的歌唱行为与雄性不同,表现为海马的参与。两性在歌唱控制、听觉和视觉系统以及小脑都经历了多感觉神经可塑性,主要是在感光期。这个性腺激素水平较低的时期可能代表着一个“敏感窗口”,在此期间,大脑和小脑的不同感觉和运动系统可以在两性中季节性重塑。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/14a3/8219385/e4e815f58fcf/elife-66777-fig1.jpg

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