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膀胱内冷觉对静息及内感受性任务期间使用独立成分分析估计的功能网络连通性的影响。

Impact of Intravesical Cold Sensation on Functional Network Connectivity Estimated Using ICA at Rest & During Interoceptive Task.

作者信息

Jarrahi Behnaz, Kollias Spyros

出版信息

Annu Int Conf IEEE Eng Med Biol Soc. 2020 Jul;2020:1722-1725. doi: 10.1109/EMBC44109.2020.9176391.

Abstract

Afferent nerves that carry interoceptive signals from the viscera to the brain include Aδ and C-fibers. Previously, we examined the effects of detrusor distention (conveyed mainly by Aδ fibers) on the static functional network connectivity (FNC) of the brain using independent component analysis (ICA) of fMRI time series. In the present study, we investigate the impact of intravesical cold sensation (thought to be conveyed by C-fibers) on brain FNC using similar ICA approach. Thirteen healthy women were scanned on a 3.0T MRI scanner during a resting state scan and an intravesical cold sensation task fMRI. High dimensional ICA (n = 75) were used to decompose the fMRI data into several intrinsic connectivity networks (ICNs) including the default-mode (DMN), subcortical (SCN; amygdala, thalamus), salience (SN), central executive (CEN), sensorimotor (SMN), and cerebellar/brainstem (CBN) networks. Results demonstrate significant FNC differences in several ICN pairs primarily between the SCN and cognitive networks such as CEN, as well as between SN and CBN and DMN when intravesical cold water condition was compared to rest (FDR-corrected p-value of 0.05). Significant increases in FNC between CBN and between SMN were also observed during interoceptive condition. The results indicate significant impact of Aδ and C-fiber-originated interoceptive signals on the brain connectivity when compared to the baseline rest.

摘要

将内脏的内感受信号传递至大脑的传入神经包括Aδ纤维和C纤维。此前,我们利用功能磁共振成像(fMRI)时间序列的独立成分分析(ICA),研究了逼尿肌扩张(主要由Aδ纤维传导)对大脑静态功能网络连接性(FNC)的影响。在本研究中,我们采用类似的ICA方法,探究膀胱内冷觉(认为由C纤维传导)对大脑FNC的影响。13名健康女性在静息状态扫描和膀胱内冷觉任务功能磁共振成像期间,接受了3.0T磁共振成像扫描仪的扫描。使用高维ICA(n = 75)将功能磁共振成像数据分解为几个内在连接网络(ICN),包括默认模式(DMN)、皮层下(SCN;杏仁核, 丘脑)、突显(SN)、中央执行(CEN)、感觉运动(SMN)以及小脑/脑干(CBN)网络。结果表明,与静息状态相比,在膀胱内冷水刺激条件下,多个ICN对之间的FNC存在显著差异,主要体现在SCN与诸如CEN等认知网络之间,以及SN与CBN和DMN之间(经错误发现率校正的p值为0.05)。在感受内感觉条件下,还观察到CBN之间以及SMN之间的FNC显著增加。结果表明,与基线静息状态相比,源自Aδ和C纤维的内感受信号对大脑连接性有显著影响。

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