College of Textile Science and Engineering (International Institute of Silk), Key Laboratory of Intelligent Textile and Flexible Interconnection of Zhejiang Province, Zhejiang Sci-Tech University, Hangzhou, China.
High Fashion Womenswear Institute, Hangzhou Vocational and Technical College, Hangzhou, Zhejiang, China.
Skin Res Technol. 2024 Feb;30(2):e13626. doi: 10.1111/srt.13626.
The complex network connections, information transmission and organization play key roles in brain cognition on sensory stimulation. Previous studies showed that several brain regions of somatosensory, motor, emotional, cognitive, etc. are linked to fabric-evoked prickle. But the functional connectivity characteristics of the brain network involved in prickle perception is still unclear.
In the present study, resting state fMRI (functional magnetic resonance imaging) with functional connectivity analysis was adopted to build the initial brain functional network, and task fMRI with psychophysiological interaction analysis was employed to investigate modulation features of prickling task to functional connections in the brain network.
The results showed that, in resting state, six groups or sub-networks can be identified in the prickle network, and when the subjects performed the prickling task, functional connectivity strength between some seed regions (e.g., somatosensory regions and precuneus, emotional regions and the prefrontal cortex, etc.) in the network increased.
Combining resting-state fMRI with task fMRI is a feasible and promising method to study functional connectivity characteristics of the brain network involved in prickle perception. It is inferred that the "itch" ingredient of prickle sensation was transmitted from somatosensory cortices to precuneus, and emotional attribute (e.g., pain) from somatosensory cortices to the prefrontal cortex and at last to emotional regions.
复杂的网络连接、信息传递和组织在大脑对感觉刺激的认知中起着关键作用。以前的研究表明,感觉、运动、情感、认知等几个大脑区域与织物诱发的刺痛有关。但是,刺痛感知中涉及的大脑网络的功能连接特征仍不清楚。
本研究采用静息态功能磁共振成像(功能磁共振成像)结合功能连接分析构建初始大脑功能网络,并采用任务态功能磁共振成像结合心理生理交互分析研究刺痛任务对大脑网络中功能连接的调制特征。
结果表明,在静息状态下,可以在刺痛网络中识别出六个组或子网,当受试者执行刺痛任务时,网络中一些种子区域(例如,感觉区域和楔前叶、情感区域和前额叶等)之间的功能连接强度增加。
将静息态 fMRI 与任务态 fMRI 相结合是研究刺痛感知中涉及的大脑网络功能连接特征的一种可行且有前途的方法。可以推断,刺痛感觉的“痒”成分是从感觉皮层传递到楔前叶的,而情感属性(如疼痛)是从感觉皮层传递到前额叶,最后传递到情感区域的。