Kiani Roozbeh, Farazifard Rasoul, Noorbakhsh S Mohammad, Esteky Hossein
Research Group for Brain and Cognitive Sciences, School of Medicine, Shaheed Beheshti University of Medical Sciences, Tehran, Iran.
Brain Res. 2004 Jul 23;1015(1-2):129-35. doi: 10.1016/j.brainres.2004.04.057.
Controlled mechanical displacement was used to stimulate single whiskers in normal and C-fiber depleted rats to quantitatively examine the role of C-fibers in the response properties of barrel cortical cells. C-fiber depletion using neonatal capsaicin treatment increased the barrel single-unit response magnitude to deflection of both principal and adjacent whiskers while there was not any significant difference in the barrel cells' spontaneous activity. Capsaicin treatment increased the neural response duration of adjacent whisker stimulation but did not change that to the principal whisker deflection. There was no difference in response latencies of principal or adjacent whisker displacement between the normal and C-fiber-depleted groups. The efficiency of neural code for differentiation of principal and adjacent whiskers was measured by ROC analysis, which reflects the performance of an ideal observer in this discrimination using cells' firing rate. No significant difference was found in the performance of neurons in capsaicin-treated and control groups in distinguishing principal and adjacent whisker deflections from each other. These results suggest that neonatal C-fiber depletion causes an expansion of barrel cells receptive field but it does not affect the discrimination of individual whisker stimulation by the barrel cells.
采用控制性机械位移刺激正常大鼠和C纤维缺失大鼠的单根触须,以定量研究C纤维在桶状皮质细胞反应特性中的作用。使用新生期辣椒素处理使C纤维缺失,增加了桶状细胞对主要触须和相邻触须偏转的单单位反应幅度,而桶状细胞的自发活动没有任何显著差异。辣椒素处理增加了相邻触须刺激的神经反应持续时间,但未改变对主要触须偏转的反应持续时间。正常组和C纤维缺失组之间,主要触须或相邻触须位移的反应潜伏期没有差异。通过ROC分析测量区分主要触须和相邻触须的神经编码效率,ROC分析反映了理想观察者利用细胞放电率进行这种辨别的性能。在区分主要触须和相邻触须偏转方面,辣椒素处理组和对照组的神经元性能没有显著差异。这些结果表明,新生期C纤维缺失导致桶状细胞感受野扩大,但不影响桶状细胞对单个触须刺激的辨别。