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Broca's region: linking human brain functional connectivity data and non-human primate tracing anatomy studies

机译:Broca的区域:连接人脑功能连接数据和非人类灵长类动物追踪解剖学研究

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摘要

Brodmann areas 6, 44 and 45 in the ventrolateral frontal cortex of the left hemisphere of the human brain constitute the anterior language production zone. The anatomical connectivity of these areas with parietal and temporal cortical regions was recently examined in an autoradiographic tract-tracing study in the macaque monkey. Studies suggest strong correspondence between human resting state functional connectivity (RSFC) based on functional magnetic resonance imaging data and experimentally demonstrated anatomical connections in non-human primates. Accordingly, we hypothesized that areas 6, 44 and 45 of the human brain would exhibit patterns of RSFC consistent with patterns of anatomical connectivity observed in the macaque. In a primary analysis, we examined the RSFC associated with regions-of-interest placed in ventrolateral frontal areas 6, 44 and 45, on the basis of local sulcal and gyral anatomy. We validated the results of the primary hypothesis-driven analysis with a data-driven partitioning of ventrolateral frontal cortex into regions exhibiting distinct RSFC patterns, using a spectral clustering algorithm. The RSFC of ventrolateral frontal areas 6, 44 and 45 was consistent with patterns of anatomical connectivity shown in the macaque. We observed a striking dissociation between RSFC for the ventral part of area 6 that is involved in orofacial motor control and RSFC associated with Broca's region (areas 44 and 45). These findings indicate rich and differential RSFC patterns for the ventrolateral frontal areas controlling language production, consistent with known anatomical connectivity in the macaque brain, and suggest conservation of connectivity during the evolution of the primate brain.
机译:人脑左半球腹外侧额叶皮层的Brodmann区域6、44和45构成了前语言产生区。最近在猕猴的放射自显影示踪研究中检查了这些区域与顶叶和颞皮质区域的解剖学连通性。研究表明,基于功能磁共振成像数据的人体静息状态功能连接性(RSFC)与非人类灵长类动物的实验性解剖连接之间存在很强的对应关系。因此,我们假设人脑的第6、44和45区将显示RSFC模式,与猕猴中观察到的解剖学连通性模式一致。在初步分析中,我们根据局部的沟渠和回旋解剖结构检查了与位于腹外侧额叶区域6、44和45中的感兴趣区域相关的RSFC。我们使用频谱聚类算法,通过将数据驱动的腹侧额叶皮层划分为展示不同RSFC模式的区域,验证了主要假设驱动分析的结果。腹外侧额叶区域6、44和45的RSFC与猕猴中显示的解剖学连通性模式一致。我们观察到涉及面颌运动控制的区域6腹侧RSFC与与Broca区域(区域44和45)相关的RSFC之间发生了惊人的分离。这些发现表明,与控制猕猴大脑中的解剖学连通性相一致的控制语言产生的腹外侧额叶区域存在丰富且不同的RSFC模式,并表明在灵长类动物大脑进化过程中保持了连通性。

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