Tannan V, Simons S, Dennis R G, Tommerdahl M
Department of Biomedical Engineering, University of North Carolina at Chapel Hill, Chapel Hill, NC, USA.
Brain Res. 2007 Dec;1186:164-70. doi: 10.1016/j.brainres.2007.10.024. Epub 2007 Oct 22.
The capacity of 20 healthy adult subjects for detecting differences in the amplitude of two simultaneously delivered 25 Hz vibrotactile stimuli was assessed both in the absence and presence of prior exposure to different conditions of adapting stimulation. Results obtained from this study demonstrate that increasing durations of adapting stimulation at one of the two skin sites, in the range of 0.2 to 2.0 s, lead to a systematic and progressive decrease in a subject's ability to accurately discriminate between the two different amplitudes. Delivery of adapting stimuli to both of the sites of skin stimulation prior to simultaneous delivery of the test and standard stimuli, however, leads to an improvement in amplitude discrimination performance--a finding which is consistent with prior published psychophysical studies that demonstrate improvements in discriminatory capacity with much longer durations of adaptation. Striking parallels between the results obtained in this study and those reported in a prior study of the effects of vibrotactile adaptation on the optical response of squirrel monkey contralateral SI cortex to vibrotactile stimulation [Simons, S.B., Chiu, J., Favorov, O.V., Whitsel, B.L., Tommerdahl, M., 2007. Duration-dependent response of SI to vibrotactile stimulation in squirrel monkey. J Neurophysiol. 97, 2121-9, Simons, S.B., Tannan, V., Chiu, J., Favorov, O.V., Whitsel, B.L., Tommerdahl, M., 2005. Amplitude-dependency of response of SI cortex to flutter stimulation. BMC Neurosci. 6, 43] suggest that the perceptual effects detected in this study could be attributable to adaptation-induced alterations of SI response.
在20名健康成年受试者中,评估了他们在不存在和存在不同适应刺激条件的预先暴露情况下,检测同时施加的两个25Hz振动触觉刺激幅度差异的能力。本研究获得的结果表明,在两个皮肤部位之一增加适应刺激的持续时间(在0.2至2.0秒范围内),会导致受试者准确区分两种不同幅度的能力出现系统性和渐进性下降。然而,在同时施加测试和标准刺激之前,将适应刺激施加到两个皮肤刺激部位,会导致幅度辨别性能得到改善——这一发现与先前发表的心理物理学研究一致,这些研究表明,适应时间更长时,辨别能力会有所提高。本研究获得的结果与先前一项关于振动触觉适应对松鼠猴对侧体感皮层对振动触觉刺激的光学反应影响的研究[Simons, S.B., Chiu, J., Favorov, O.V., Whitsel, B.L., Tommerdahl, M., 2007. Duration-dependent response of SI to vibrotactile stimulation in squirrel monkey. J Neurophysiol. 97, 2121-9, Simons, S.B., Tannan, V., Chiu, J., Favorov, O.V., Whitsel, B.L., Tommerdahl, M., 2005. Amplitude-dependency of response of SI cortex to flutter stimulation. BMC Neurosci. 6, 43]所报告的结果之间存在显著的相似之处,这表明本研究中检测到的感知效应可能归因于适应引起的体感皮层反应改变。