Burton H, Sinclair R J
Department of Anatomy and Neurobiology, Washington University School of Medicine, St. Louis, MO 63110.
Can J Physiol Pharmacol. 1994 May;72(5):546-57. doi: 10.1139/y94-079.
Neuronal responses were recorded in the thalamic ventroposterior lateral nucleus and primary and secondary somatosensory cortical areas of two rhesus monkeys performing a tactile discrimination task. The subjects actively stroked their fingertips over gratings that varied in groove width. Many cells in each location displayed average firing rates that incrementally reflected groove with dimensions (0.5-2.9 mm). Approximately 10% of cortical cells were more active to surfaces with narrower grooves. i.e., had negative graded response functions. All thalamic cells and approximately 50% of cortical cells with positive graded functions to gratings also showed increased responsiveness to contact force. Some cells also varied their activity with stroke speed. Many thalamic, a few primary somatosensory cortical cells, and no secondary somatosensory cortical cells showed periodic firing patterns that reflected the spatial-temporal frequency of stimulation. Responses to gratings of nearly every cell with negative graded responses and the remaining cortical cells with positive functions were independent of contact force and stroke velocity. The results only partially confirm predictions based on different models of texture perception that propose spatial, intensive, or cross modal neural codes. Negative graded response functions may require a form of spatial convergence across a cell's receptive field that has not previously been discussed by these models.
在两只恒河猴执行触觉辨别任务时,记录了它们丘脑腹后外侧核以及初级和次级体感皮层区域的神经元反应。实验对象主动用指尖划过槽宽不同的光栅。每个位置的许多细胞显示出平均放电率,其逐渐反映出光栅尺寸(0.5 - 2.9毫米)的变化。大约10%的皮层细胞对槽更窄的表面反应更活跃,即具有负向分级反应函数。所有丘脑细胞以及大约50%对光栅具有正向分级函数的皮层细胞,对接触力也表现出反应增强。一些细胞的活动还随划动速度而变化。许多丘脑细胞、少数初级体感皮层细胞以及没有次级体感皮层细胞表现出周期性放电模式,反映了刺激的时空频率。几乎所有具有负向分级反应的细胞以及其余具有正向函数的皮层细胞对光栅的反应都与接触力和划动速度无关。这些结果仅部分证实了基于不同纹理感知模型所提出的空间、强度或跨模态神经编码的预测。负向分级反应函数可能需要一种细胞感受野上的空间汇聚形式,而这些模型之前并未对此进行讨论。