Wang Qicai, Tao Yuan, Sun Tao, Sun Fengxin, Jiang Zhaohui, Jia Zhao, Ding Zuowei, Sun Jie
Lutai School of Textile and Apparel, Shandong University of Technology, Zibo, China.
Department of Radiology, The First Affiliated Hospital with Nanjing Medical University, Nanjing, China.
Skin Res Technol. 2021 Jul;27(4):494-500. doi: 10.1111/srt.12965. Epub 2021 Jan 6.
It is now well understood that, as an uncomfortable sensation evoked by special fabric, prickle derives from the mechanical stimulation of protruding hairiness from fabric surface against the human skin, in which some nociceptors are easy to be triggered by stiff fiber ends. However, up to now, the neural mechanism of the brain for perceiving fabric-evoked prickle is still unclear.
In this work, A type of single-fiber stimulus made from nylon filament was used to repetitively prick the skin of volar forearm at a specific frequency, and the technology of functional magnetic resonance imaging (fMRI) was adopted to detect the brain response synchronously.
The results show that repetitive prickling stimulation from the single fiber applied to the volar forearm aroused distributed activation in several brain regions, such as primary somatosensory cortex, secondary somatosensory cortex, motor cortex, bilateral occipital lobe, insular cortex, and ipsilateral limbic lobe. Although the brain activation distribution is similar to pain, the single fiber-evoked prickle sensation possesses unique activation characteristics in several brain regions.
It is suggested that the sensation evoked by cutaneous prickling stimulation from single fiber belongs to a kind of multidimensional experience involving somatosensory, motor, emotional, cognitive, etc Our study constitutes an important step toward identifying the brain mechanism of fabric-evoked prickle.
现在人们已经清楚地认识到,刺痛作为一种由特殊织物引起的不舒服感觉,源于织物表面突出的毛羽对人体皮肤的机械刺激,其中一些伤害感受器很容易被硬纤维末端触发。然而,到目前为止,大脑感知织物引起的刺痛的神经机制仍不清楚。
在这项工作中,使用一种由尼龙长丝制成的单纤维刺激物,以特定频率重复刺痛掌侧前臂皮肤,并采用功能磁共振成像(fMRI)技术同步检测大脑反应。
结果表明,施加于掌侧前臂的单纤维重复刺痛刺激在几个脑区引起了分布式激活,如初级体感皮层、次级体感皮层、运动皮层、双侧枕叶、岛叶皮层和同侧边缘叶。虽然大脑激活分布与疼痛相似,但单纤维诱发的刺痛感觉在几个脑区具有独特的激活特征。
提示单纤维皮肤刺痛刺激诱发的感觉属于一种涉及体感、运动、情感、认知等多维度的体验。我们的研究是朝着确定织物诱发刺痛的脑机制迈出的重要一步。