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成年斑胸草雀隔区的神经激活与非求偶鸣叫的内在动机有关。

Neural activation in a septal area is related to intrinsic motivation for non-courtship singing in adult zebra finches.

作者信息

Mori Chihiro, Ok-Yi Jeong, Kim Yunbok, Kojima Satoshi

机构信息

Department of Molecular Biology, Faculty of Pharmaceutical Sciences, Teikyo University, 2- 11-1 Kaga, Itabashi-ku, Tokyo, 173-8605, Japan.

Brain Sciences Department, Daegu Gyeongbuk Institute of Science and Technology, 333 Techno Jungang-daero, Hyeonpung-eup, Dalseong-gun, Daegu, 42988, Republic of Korea.

出版信息

Sci Rep. 2025 Apr 3;15(1):11452. doi: 10.1038/s41598-025-96096-2.

Abstract

Intrinsic motivation, which drives animals, including humans, to exhibit various voluntary behaviors, spontaneously originates within the brain without immediate external stimuli such as rewards or punishments. The zebra finch, a songbird, provides an ideal model for studying the neural substrates of intrinsic motivation because male birds spontaneously produce many renditions of non-courtship song ("undirected song") with a highly quantifiable structure for vocal practice. Here, we identified a brain area associated with intrinsic motivation for undirected singing through brain-wide mapping of neuronal activity using immediate early gene expression in birds with different levels of singing motivation. We found that birds with relatively high singing motivation exhibit increased expression levels of Arc mRNA in a septal area, the nucleus of the hippocampal commissure (NHpC), compared with birds with low singing motivation. Such high Arc mRNA expression was not observed after highly motivated birds decreased their singing motivation. These findings demonstrate that neuronal activity in the NHpC is associated with the degree of singing motivation, marking a crucial initial step in understanding the neural circuitry regulating intrinsic motivation for spontaneous singing behavior in songbirds.

摘要

内在动机驱使包括人类在内的动物表现出各种自发行为,它在大脑中自然产生,无需诸如奖励或惩罚等即时外部刺激。斑胸草雀是一种鸣禽,是研究内在动机神经基础的理想模型,因为雄鸟会自发地唱出许多非求偶歌曲(“无定向歌曲”),其结构高度可量化,用于发声练习。在这里,我们通过使用即刻早期基因表达对不同歌唱动机水平的鸟类进行全脑神经元活动图谱分析,确定了一个与无定向歌唱内在动机相关的脑区。我们发现,与歌唱动机低的鸟类相比,歌唱动机相对较高的鸟类在一个间隔区域——海马连合核(NHpC)中Arc mRNA的表达水平有所增加。在高动机鸟类降低其歌唱动机后,未观察到如此高的Arc mRNA表达。这些发现表明,NHpC中的神经元活动与歌唱动机程度相关,这标志着理解调节鸣禽自发歌唱行为内在动机的神经回路的关键第一步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/997a/11968860/ffb993dd5872/41598_2025_96096_Fig1_HTML.jpg

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