The Clinical Hospital of Chengdu Brain Science Institute, MOE Key Laboratory for Neuroinformation, University of Electronic Science and Technology of China, 611731 Chengdu, China.
Department of Biomedical Engineering, New Jersey Institute of Technology, Newark, NJ 07102, USA.
Cereb Cortex. 2021 Feb 5;31(3):1848-1860. doi: 10.1093/cercor/bhy295.
Attention and salience processing have been linked to the intrinsic between- and within-network dynamics of large-scale networks engaged in internal (default network [DN]) and external attention allocation (dorsal attention network [DAN] and salience network [SN]). The central oxytocin (OXT) system appears ideally organized to modulate widely distributed neural systems and to regulate the switch between internal attention and salient stimuli in the environment. The current randomized placebo (PLC)-controlled between-subject pharmacological resting-state fMRI study in N = 187 (OXT, n = 94; PLC, n = 93; single-dose intranasal administration) healthy male and female participants employed an independent component analysis approach to determine the modulatory effects of OXT on the within- and between-network dynamics of the DAN-SN-DN triple network system. OXT increased the functional integration between subsystems within SN and DN and increased functional segregation of the DN with both attentional control networks (SN and DAN). Whereas no sex differences were observed, OXT effects on the DN-SN interaction were modulated by autistic traits. Together, the findings suggest that OXT may facilitate efficient attention allocation by modulating the intrinsic functional dynamics between DN components and large-scale networks involved in external attentional demands (SN and DAN).
注意力和突显处理与参与内部(默认网络 [DN])和外部注意力分配(背侧注意网络 [DAN] 和突显网络 [SN])的大网络的内在网络间和网络内动力学有关。中央催产素(OXT)系统似乎组织得很好,可以调节广泛分布的神经网络,并调节内部注意力和环境中显著刺激之间的转换。目前,在 N = 187(OXT,n = 94;PLC,n = 93;单次鼻内给药)健康男性和女性参与者中进行了随机安慰剂(PLC)对照的基于静息状态 fMRI 的药理学研究,采用独立成分分析方法来确定 OXT 对 DAN-SN-DN 三重网络系统的网络内和网络间动力学的调节作用。OXT 增加了 SN 和 DN 内子系统之间的功能整合,并增加了 DN 与两个注意力控制网络(SN 和 DAN)之间的功能分离。尽管没有观察到性别差异,但 OXT 对 DN-SN 相互作用的影响受到自闭症特征的调节。总的来说,这些发现表明,OXT 可以通过调节参与外部注意力需求的 DN 成分和大型网络(SN 和 DAN)之间的内在功能动力学来促进有效的注意力分配。