Gescheider George A, Wright John H
a Hamilton College , Clinton , New York , USA.
Somatosens Mot Res. 2018 Jun;35(2):59-68. doi: 10.1080/08990220.2018.1460262. Epub 2018 Apr 29.
Observers judged the tactile dissimilarities of raised-dot surfaces presented in pairs. The role of the SA I channel in determining these tactile dissimilarities was investigated by examining the dissimilarity judgments when this channel was adapted and when it was not. In an earlier study, the role of the PC channel in determining tactile dissimilarity was examined using the same stimulus materials when the PC channel was adapted and when it was not. Three orthogonal perceptual dimensions identified as blur, pattern roughness, and clarity were found using ALSCAL multidimensional analysis to account for the judged dissimilarities. The same three dimensions were found again in the present study. The dimensions of blur and pattern roughness were unaffected by adaptation of either the SA I or the PC channel. The finding of no effect of adaptation of the SA I channel on either of these two dimensions suggests that the roughness of the macrostructure of a textured surface is coded by the relative rather than by the absolute spatial variation in the firing rates of SA I nerve fibers. The dimension of dot clarity was strongly affected by adaptation of both the SA I channel and the PC channel. Adaptation of the PC channel increased dot clarity but adaptation of the SA I channel decreased it. This finding suggests that the perceived roughness of the microstructure of a textured surface is enhanced by the activity of the PC channel but decreased by the activity of the SA I channel.
观察者对成对呈现的凸点表面的触觉差异进行判断。通过检查SA I通道适应和未适应时的差异判断,研究了该通道在确定这些触觉差异中的作用。在早期的一项研究中,当PC通道适应和未适应时,使用相同的刺激材料研究了PC通道在确定触觉差异中的作用。使用ALSCAL多维分析发现了三个正交的感知维度,即模糊度、图案粗糙度和清晰度,以解释判断出的差异。在本研究中再次发现了相同的三个维度。模糊度和图案粗糙度维度不受SA I或PC通道适应的影响。SA I通道适应对这两个维度均无影响这一发现表明,有纹理表面宏观结构的粗糙度是由SA I神经纤维放电率的相对空间变化而非绝对空间变化编码的。点清晰度维度受到SA I通道和PC通道适应的强烈影响。PC通道的适应增加了点清晰度,而SA I通道的适应则降低了点清晰度。这一发现表明,有纹理表面微观结构的感知粗糙度通过PC通道的活动增强,但通过SA I通道的活动降低。