纺织学报 ›› 2026, Vol. 47 ›› Issue (07): 160-168.doi: 10.13475/j.fzxb.20251104601
苑洁1,2,3, 朱芸嘉2, 许昌亮4, 娄琳1,2,3(
)
YUAN Jie1,2,3, ZHU Yunjia2, XU Changliang4, LOU Lin1,2,3(
)
摘要:
针对织物接触冷暖感在人体大脑神经电生理学上的感知表征问题,采用事件相关电位技术,招募健康受试者,分别施加不同接触冷感强度的织物刺激,并同步采集大脑皮层体觉功能脑区的脑电信号。通过离线分析提取刺激后诱发的特征神经电位成分,重点考察不同冷感强度对体觉功能脑区的影响规律。研究结果显示:当人体一侧受到织物接触冷感刺激时,在300 ms左右出现的P300电位的激活反应最大,且在触觉刺激的对侧和中间脑区呈现正激活反应,而在同侧呈现负激活反应。对侧及中间脑区的P300电位波幅、同侧脑区的P300电位波幅分别与接触冷感值呈高度正相关和高度负相关的线性关系。但是,由于感知后效的影响,P300电位的潜伏期并非随接触冷感值的增加而线性缩短,而是左右脑以不规则波动速度缩短,中间脑区则相对稳定,以单指数衰减速度缩短。本研究揭示了织物接触冷感在大脑中枢加工中的时空动态特征及其偏侧化神经机制,为智能织物设计与热舒适评价提供了神经科学依据。
中图分类号:
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