Lin Yung-Yang, Shih Yang-Hsin, Chen Jen-Tse, Hsieh Jen-Chuen, Yeh Tzu-Chen, Liao Kwong-Kum, Kao Chuen-Der, Lin Kon-Ping, Wu Zin-An, Ho Low-Tone
Integrated Brain Research Unit, Department of Medical Research and Education, Taipei Veterans General Hospital, Taipei, Taiwan.
Neuroimage. 2003 Oct;20(2):909-17. doi: 10.1016/S1053-8119(03)00387-2.
To study the differential effects of tactile stimulus intensity on cortical and peripheral responses, we measured neuromagnetic cortical responses, compound muscle action potentials (CMAP), sensory nerve action potentials (SNAP), and the subjective estimation of tactile magnitude to electric median nerve stimulation at the wrist in 13 male healthy adults. The sensory perception threshold (ST) for electric pulses at wrist skin was determined and then various levels of stimulus intensity (1 approximately 6 ST) were given to each subject. At 1 ST, only the P50m components of the primary somatosensory (SI) cortical responses were recorded. The second somatosensory (SII) cortical responses were saturated at 2 ST, while the SI responses reached maximum at 3 ST equivalent to the subjective threshold intensity for "strong" tactility. The CMAP and SNAP were maximum at 4-5 ST. At 2 ST, >70% of maximum SI responses were produced, whereas only <40% of maximum CMAP or SNAP responses were obtained. We concluded that the stimulus intensities for activating or saturating somatosensory cortical responses were lower than those for CMAP and SNAP. The differential intensity effects on cortical and peripheral responses suggest a polysynaptic organization underlying the central amplification for somatosensory cortical activation. The optimal intensity levels for producing maximum SI and SII responses were 3 and 2 ST, respectively. Compared with the SII, the SI plays a crucial role in the coding of the tactile stimulus intensity.
为研究触觉刺激强度对皮质和外周反应的不同影响,我们在13名健康成年男性中测量了神经磁皮质反应、复合肌肉动作电位(CMAP)、感觉神经动作电位(SNAP),以及对腕部正中神经电刺激的触觉强度主观评估。确定了腕部皮肤电脉冲的感觉阈(ST),然后给每个受试者施加不同水平的刺激强度(1至6个ST)。在1个ST时,仅记录到初级体感(SI)皮质反应的P50m成分。第二体感(SII)皮质反应在2个ST时达到饱和,而SI反应在相当于“强”触觉主观阈强度的3个ST时达到最大值。CMAP和SNAP在4至5个ST时最大。在2个ST时,产生了>70%的最大SI反应,而仅获得了<40%的最大CMAP或SNAP反应。我们得出结论,激活或使体感皮质反应饱和的刺激强度低于CMAP和SNAP的刺激强度。对皮质和外周反应的不同强度影响表明,体感皮质激活的中枢放大存在多突触组织。产生最大SI和SII反应的最佳强度水平分别为3个ST和2个ST。与SII相比,SI在触觉刺激强度编码中起关键作用。