猕猴岛叶皮层的内在功能集群

IF 2.6 3区 医学 Q2 BEHAVIORAL SCIENCES Frontiers in Integrative Neuroscience Pub Date : 2023-12-18 DOI:10.3389/fnint.2023.1272529
Lotte Sypré, Saloni Sharma, Dante Mantini, Koen Nelissen
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引用次数: 0

摘要

对灵长类脑岛功能组织的研究采用了多种技术,重点关注结构、连接或功能方面的区域差异。这些互补的方法有助于深入了解脑岛的复杂组织结构,并提出了不同详细程度和复杂程度的不同划分方案。成像技术的出现允许对结构和功能连接性进行非侵入性评估,从而推广了基于数据驱动的连接性划分方法来研究人脑岛的组织结构。然而,从这些数据驱动的聚类方法中得出的细分是否反映了对脑岛功能特化的有意义描述,目前仍不清楚。在本研究中,我们采用了分层聚类法来研究猕猴脑岛的聚类细分。由于我们的目的是探索性的,因此我们研究了由两个到十个聚类组成的旁系。三种不同的聚类验证方法(指纹法、剪影法、肘法)都认为四聚类是数据的最佳代表。除了全脑功能连通性之外,对这些聚类的功能响应特性进行研究也表明,其功能特化与处理味觉、躯体运动、前庭和社会视觉线索有关。然而,当脑簇数量超过了所建议的最佳四个脑簇数量时,与之前对脑岛亚场进行的功能研究相一致的更详细的功能分化就变得显而易见了。总之,我们的研究结果表明,基于静息态的分层聚类可以在一定程度上对脑岛的功能组织提供有意义的描述。然而,这种方法得出的聚类细分最好与通过其他模式获得的数据相结合,以便更全面、更详细地描述脑岛的复杂功能组织。
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Intrinsic functional clustering of the macaque insular cortex

The functional organization of the primate insula has been studied using a variety of techniques focussing on regional differences in either architecture, connectivity, or function. These complementary methods offered insights into the complex organization of the insula and proposed distinct parcellation schemes at varying levels of detail and complexity. The advent of imaging techniques that allow non-invasive assessment of structural and functional connectivity, has popularized data-driven connectivity-based parcellation methods to investigate the organization of the human insula. Yet, it remains unclear if the subdivisions derived from these data-driven clustering methods reflect meaningful descriptions of the functional specialization of the insula. In this study, we employed hierarchical clustering to examine the cluster parcellations of the macaque insula. As our aim was exploratory, we examined parcellations consisting of two up to ten clusters. Three different cluster validation methods (fingerprinting, silhouette, elbow) converged on a four-cluster solution as the most optimal representation of our data. Examining functional response properties of these clusters, in addition to their brain-wide functional connectivity suggested a functional specialization related to processing gustatory, somato-motor, vestibular and social visual cues. However, a more detailed functional differentiation aligning with previous functional investigations of insula subfields became evident at higher cluster numbers beyond the proposed optimal four clusters. Overall, our findings demonstrate that resting-state-based hierarchical clustering can provide a meaningful description of the insula’s functional organization at some level of detail. Nonetheless, cluster parcellations derived from this method are best combined with data obtained through other modalities, to provide a more comprehensive and detailed account of the insula’s complex functional organization.

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来源期刊
Frontiers in Integrative Neuroscience
Frontiers in Integrative Neuroscience Neuroscience-Cellular and Molecular Neuroscience
CiteScore
4.60
自引率
2.90%
发文量
148
审稿时长
14 weeks
期刊介绍: Frontiers in Integrative Neuroscience publishes rigorously peer-reviewed research that synthesizes multiple facets of brain structure and function, to better understand how multiple diverse functions are integrated to produce complex behaviors. Led by an outstanding Editorial Board of international experts, this multidisciplinary open-access journal is at the forefront of disseminating and communicating scientific knowledge and impactful discoveries to researchers, academics, clinicians and the public worldwide. Our goal is to publish research related to furthering the understanding of the integrative mechanisms underlying brain functioning across one or more interacting levels of neural organization. In most real life experiences, sensory inputs from several modalities converge and interact in a manner that influences perception and actions generating purposeful and social behaviors. The journal is therefore focused on the primary questions of how multiple sensory, cognitive and emotional processes merge to produce coordinated complex behavior. It is questions such as this that cannot be answered at a single level – an ion channel, a neuron or a synapse – that we wish to focus on. In Frontiers in Integrative Neuroscience we welcome in vitro or in vivo investigations across the molecular, cellular, and systems and behavioral level. Research in any species and at any stage of development and aging that are focused at understanding integration mechanisms underlying emergent properties of the brain and behavior are welcome.
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