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Richness in Functional Connectivity Depends on the Neuronal Integrity within the Posterior Cingulate Cortex

机译:功能连接性的丰富性取决于扣带后部皮质内的神经元完整性

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摘要

The brain's connectivity skeleton—a rich club of strongly interconnected members—was initially shown to exist in human structural networks, but recent evidence suggests a functional counterpart. This rich club typically includes key regions (or hubs) from multiple canonical networks, reducing the cost of inter-network communication. The posterior cingulate cortex (PCC), a hub node embedded within the default mode network, is known to facilitate communication between brain networks and is a key member of the “rich club.” Here, we assessed how metabolic signatures of neuronal integrity and cortical thickness influence the global extent of a functional rich club as measured using the functional rich club coefficient (fRCC). Rich club estimation was performed on functional connectivity of resting state brain signals acquired at 3T in 48 healthy adult subjects. Magnetic resonance spectroscopy was measured in the same session using a point resolved spectroscopy sequence. We confirmed convergence of functional rich club with a previously established structural rich club. N-acetyl aspartate (NAA) in the PCC is significantly correlated with age (p = 0.001), while the rich club coefficient showed no effect of age (p = 0.106). In addition, we found a significant quadratic relationship between fRCC and NAA concentration in PCC (p = 0.009). Furthermore, cortical thinning in the PCC was correlated with a reduced rich club coefficient after accounting for age and NAA. In conclusion, we found that the fRCC is related to a marker of neuronal integrity in a key region of the cingulate cortex. Furthermore, cortical thinning in the same area was observed, suggesting that both cortical thinning and neuronal integrity in the hub regions influence functional integration of at a whole brain level.
机译:最初显示大脑的连通性骨架(一个由大量相互连接的成员组成的丰富俱乐部)存在于人类结构网络中,但最近的证据表明它具有功能上的对应关系。这个丰富的俱乐部通常包括来自多个规范网络的关键区域(或集线器),从而降低了网络间通信的成本。后扣带回皮质(PCC)是嵌入默认模式网络中的枢纽节点,众所周知,它可以促进大脑网络之间的通信,并且是“富人俱乐部”的关键成员。在这里,我们评估了神经元完整性和皮质厚度的代谢特征如何影响功能丰富的球杆系数(fRCC)的整体范围。对48名健康成人受试者在3T时获得的静止状态大脑信号的功能连通性进行了丰富的俱乐部估计。使用点分辨光谱序列在同一会话中测量磁共振波谱。我们确认了功能丰富的俱乐部与先前建立的结构丰富的俱乐部的融合。 PCC中的N-乙酰天门冬氨酸(NAA)与年龄显着相关(p = 0.001),而丰富的球杆系数显示没有年龄的影响(p = 0.106)。此外,我们发现PCC中fRCC与NAA浓度之间存在显着的二次关系(p = 0.009)。此外,考虑到年龄和NAA后,PCC中的皮质变薄与富俱乐部系数的降低相关。总之,我们发现fRCC与扣带回皮层关键区域神经元完整性的标记有关。此外,在同一区域观察到皮质变薄,这表明在中心区域,皮质变薄和神经元完整性都会影响整个大脑水平的功能整合。

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