绘制人类和猕猴跨物种大脑连接图谱和颞极半球不对称。

IF 5.8 2区 医学 Q1 NEUROSCIENCES
Qinyao Sun, Shunli Zhu, Futing Yang, Zhigang Chen, Heling Li, Heng Shao, Hong Wang, Sangma Xie, Jiaojian Wang
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引用次数: 0

摘要

颞极(TP)是人类大脑皮层中相对于其他灵长类动物扩展最大的区域之一,在人类语言处理中起着至关重要的作用。它也是结构和功能最不对称的区域之一。然而,人类和猕猴是否共享颞叶的功能结构是一个悬而未决的问题。我们使用光谱聚类算法来定义具有不同解剖连接模式的跨物种细粒度TP图谱。我们在人类和猕猴的TP中发现了三个相似的亚区,两个腹侧和一个背侧。通过功能梯度映射、解剖连通性和静息状态功能连通性模式分析以及功能表征验证了TP的包封方案。此外,结合Allen人类大脑图谱,我们揭示了每个人类TP亚区功能连接模式的分子基础。此外,我们比较了平均灰质体积、解剖连接指纹和全脑功能连接模式的半球不对称,以揭示TP的进化差异,发现人类和猕猴之间存在不同的不对称模式。总之,我们的研究结果表明,结构和连接的不对称可能是大脑半球功能特化的基础,并为理解颞叶的进化起源提供了新的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mapping the Cross-species Brain Connectivity Atlas and Hemispheric Asymmetry of the Temporal Pole in Humans and Macaques.

The temporal pole (TP), one of the most expanded cortical regions in humans relative to other primates, plays a crucial role in human language processing. It is also one of the most structurally and functionally asymmetric regions. However, whether the functional architecture of the TP is shared by humans and macaques is an open question. We used spectral clustering algorithms to define a cross-species fine-grained TP atlas with different anatomical connectivity patterns. We identified three similar subregions, two ventral and one dorsal, within the TP in both humans and macaques. The parcellation scheme for the TP was validated using functional gradient mapping, anatomical connectivity and resting-state functional connectivity pattern analysis, and functional characterization. Furthermore, in conjunction with the Allen Human Brain Atlas, we revealed the molecular basis for the functional connectivity patterns of each human TP subregion. In addition, we compared the hemispheric asymmetry in mean gray matter volume, anatomical connectivity fingerprints, and whole brain functional connectivity patterns to reveal the evolutionary differences in the TP and found different asymmetric patterns between humans and macaques. In conclusion, our findings reveal that the asymmetry in structure and connectivity may underpin the hemispheric functional specialization of the brain and provide a novel insight into understanding the evolutionary origin of the TP.

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来源期刊
Neuroscience bulletin
Neuroscience bulletin NEUROSCIENCES-
CiteScore
7.20
自引率
16.10%
发文量
163
审稿时长
6-12 weeks
期刊介绍: Neuroscience Bulletin (NB), the official journal of the Chinese Neuroscience Society, is published monthly by Shanghai Institutes for Biological Sciences (SIBS), Chinese Academy of Sciences (CAS) and Springer. NB aims to publish research advances in the field of neuroscience and promote exchange of scientific ideas within the community. The journal publishes original papers on various topics in neuroscience and focuses on potential disease implications on the nervous system. NB welcomes research contributions on molecular, cellular, or developmental neuroscience using multidisciplinary approaches and functional strategies. We feature full-length original articles, reviews, methods, letters to the editor, insights, and research highlights. As the official journal of the Chinese Neuroscience Society, which currently has more than 12,000 members in China, NB is devoted to facilitating communications between Chinese neuroscientists and their international colleagues. The journal is recognized as the most influential publication in neuroscience research in China.
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