Department of Biomedical Engineering, Washington University in St. Louis, Box 1097, One Brookings Drive, St. Louis, MO 63130, USA.
Neuroimage. 2010 Oct 15;53(1):233-8. doi: 10.1016/j.neuroimage.2010.06.022. Epub 2010 Jun 15.
Using voltage-sensitive dye optical imaging methods, we visualized neural activity in the rat barrel cortex in response to the deflection of a single whisker in different directions. Obtained data indicates that fast movements of single whiskers in varying directions correlate with different patterns of activation in the somatosensory cortex. A functional map was created based on the voltage-sensitive dye optical signal. This supports prior research that vibrissae deflections cause responses in different cortical neurons within the barrel field according to the direction of the deflection. By analogy with the orientation columns in the visual cortex, directionally biased single-whisker responses to different directions of deflection could be a possible mechanism for the directional selectivity of this important sensory response.
使用电压敏感染料光学成像方法,我们可视化了大鼠皮层感觉区对单个触须在不同方向上的偏斜的神经活动。获得的数据表明,不同方向上的单个触须的快速运动与感觉皮层中不同的激活模式相关。基于电压敏感染料光学信号创建了一个功能图谱。这支持了先前的研究,即触须的偏斜根据偏斜的方向引起桶状皮层内不同皮质神经元的反应。与视觉皮层中的方位柱类似,对不同偏斜方向的单触须的方向偏向反应可能是这种重要感觉反应的方向选择性的一种可能机制。