Garion Liora, Dubin Uri, Rubin Yoav, Khateb Mohamed, Schiller Yitzhak, Azouz Rony, Schiller Jackie
Department of Physiology and Biophysics, The Rappaport Faculty of Medicine and Research Institute, Technion-Israel Institute of Technology, Haifa, Israel.
Department of Physiology, Ben-Gurion University of the Negev, Beer-Sheva, Israel.
Elife. 2014 Sep 18;3:e03405. doi: 10.7554/eLife.03405.
Texture discrimination is a fundamental function of somatosensory systems, yet the manner by which texture is coded and spatially represented in the barrel cortex are largely unknown. Using in vivo two-photon calcium imaging in the rat barrel cortex during artificial whisking against different surface coarseness or controlled passive whisker vibrations simulating different coarseness, we show that layer 2-3 neurons within barrel boundaries differentially respond to specific texture coarsenesses, while only a minority of neurons responded monotonically with increased or decreased surface coarseness. Neurons with similar preferred texture coarseness were spatially clustered. Multi-contact single unit recordings showed a vertical columnar organization of texture coarseness preference in layer 2-3. These findings indicate that layer 2-3 neurons perform high hierarchical processing of tactile information, with surface coarseness embodied by distinct neuronal subpopulations that are spatially mapped onto the barrel cortex.
纹理辨别是体感系统的一项基本功能,然而,纹理在桶状皮层中如何被编码以及在空间上如何呈现,在很大程度上仍是未知的。在大鼠桶状皮层进行体内双光子钙成像实验,实验中让大鼠对着不同表面粗糙度的物体进行人工触须运动,或者模拟不同粗糙度进行可控的被动触须振动,我们发现桶状边界内的第2 - 3层神经元对特定的纹理粗糙度有不同的反应,而只有少数神经元会随着表面粗糙度的增加或减少而单调反应。具有相似偏好纹理粗糙度的神经元在空间上聚集在一起。多触点单单元记录显示,第2 - 3层中存在纹理粗糙度偏好的垂直柱状组织。这些发现表明,第2 - 3层神经元对触觉信息进行高级层次处理,表面粗糙度由不同的神经元亚群体现,这些亚群在空间上映射到桶状皮层。