触觉太平洋通道心理物理正向掩蔽对躯体感觉诱发反应的影响

M. Yıldız, Burak Güçlü
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摘要

触觉知觉起源于四种心理物理触觉通道。这些通道由四个相应的受体系统介导。特别是,对于太平洋触觉通道,人类的最低触觉阈值大约在250赫兹。最初,太平洋海峡的绝对阈值是用两间隔强迫选择范式测量的。实验采用掩蔽刺激(频率:250 Hz;强度:SL+10、SL+20、SL+30 dB)。结果,被掩盖阈值随着被掩盖刺激水平的变化而升高,这与之前的研究结果一致。然后,使用与实验中心理物理部分相同的协议,在振动触觉刺激期间记录体感皮层(CPc-CPi)的脑电图信号。对500次脑电信号进行平均处理,采用傅里叶变换和小波变换进行分析。在SL+30掩蔽水平下,掩蔽测试刺激与未掩蔽测试刺激间隔的功率谱总面积差异显著(Wilcoxon显著性检验p=0.013)。此外,在SL+20和SL+30掩蔽水平下,两种情况下驱动频率下功率谱面积的差异分别为p=0.013和p=0.019。这是首次在触觉系统中证实了心理物理前向掩蔽的神经关联。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The effect of psychophysical forward masking in the tactile Pacinian channel on somatosensory evoked responses
Tactile perception originates in the four psychophysical tactile channels. These channels are mediated by four corresponding receptor systems. Particularly, for the Pacinian tactile channel, the lowest tactile threshold of humans is approximately at 250 Hz. In this study, we measured frequency-following brain responses to 250-Hz vibratory stimuli with intensities at varying sensation levels. Initially, the absolute threshold of the Pacinian channel was measured using the two-interval forced-choice paradigm. The experiments were repeated with a masking stimulus (frequency: 250 Hz; intensity: SL+10, SL+20, SL+30 dB) which preceded the test-stimulus interval. As a result, the masked thresholds were elevated as a function of the masking-stimulus level, consistent with previous studies. Then, EEG signals were recorded over the somatosensory cortex (CPc-CPi) during vibrotactile stimulation, using the same protocol as described in psychophysical part of the experimets. The EEG signals were averaged 500 times, and analyzed by using Fourier and wavelet transforms. The difference between the total area of power spectrum during the masked test-stimulus and during the unmasked test stimulus interval was significant for SL+30 masking level (Wilcoxon signrank test p=0.013). In addition, the difference of power spectrum area at driving frequency between two cases was significant for SL+20 and SL+30 masking level p=0.013 and p=0.019 respectively. This is the first time that a neural correlate of psychophysical forward masking is demonstrated in the tactile system.
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