Chang Peng Fei, Arendt-Nielsen Lars, Chen Andrew C N
Human Brain Mapping and Cortical Imaging Laboratory, Center for Sensory-Motor Interaction, Aalborg University, Fredrik Bajers Vej 7 D-3, DK-9220 Aalborg, Denmark.
Int J Psychophysiol. 2005 Jan;55(1):73-83. doi: 10.1016/j.ijpsycho.2004.06.006.
The cerebral processing of painful thermal (heat/cold) stimulation have been extensively studied, but little is known about cerebral activation to non-painful warm and cold stimuli. This study aimed to investigate the comparative EEG effects of warm vs. cold stimulus in man.
The left nondominant hands of 13 healthy male subjects were stimulated by non-painful warm (40-43 degrees C) and cold (12-15 degrees C) water. The somatic sensations were continuously assessed with an analogue visual scale device. EEG data (32 channels) recorded before, during and after the warm and cold stimulations were analysed quantitatively.
No significant difference in intensity of sensation was found during warm and cold stimulations. Different patterns of EEG activity were superimposed on the similar background of EEG activation during and after warm and cold stimulations. Significant decrease of theta activity in contra-stimulus frontal region was observed during cold stimulation rather than warm stimulation. EEG power spectra in theta, alpha-1 and alpha-2 bands significantly increased after cold stimulation compared to baseline. EEG coherence in delta, alpha-1 and alpha-2 bands significantly increased in the contra-stimulus hemisphere during stimulations.
This suggests that similar neural networks may process somatic warm and cold sensory inputs differently and the differential EEG patterns may be encoded by the qualities of thermal stimuli.
对疼痛性热(热/冷)刺激的大脑处理过程已进行了广泛研究,但对于大脑对非疼痛性温觉和冷觉刺激的激活情况却知之甚少。本研究旨在调查人类中温热刺激与冷刺激的脑电图(EEG)对比效应。
用非疼痛性温水(40 - 43摄氏度)和冷水(12 - 15摄氏度)刺激13名健康男性受试者的左手(非优势手)。使用模拟视觉量表装置持续评估躯体感觉。对温热刺激和冷刺激之前、期间及之后记录的脑电图数据(32通道)进行定量分析。
在温热刺激和冷刺激期间,感觉强度未发现显著差异。在温热刺激和冷刺激期间及之后,不同的脑电图活动模式叠加在相似的脑电图激活背景上。在冷刺激而非温热刺激期间,观察到对侧刺激额叶区域的θ波活动显著降低。与基线相比,冷刺激后θ波、α1波和α2波频段的脑电图功率谱显著增加。在刺激期间,对侧刺激半球的δ波、α1波和α2波频段的脑电图相干性显著增加。
这表明相似的神经网络可能对躯体温热和冷觉感觉输入进行不同的处理,并且不同的脑电图模式可能由热刺激的性质编码。