Land P W, Simons D J
J Comp Neurol. 1985 Aug 8;238(2):225-35. doi: 10.1002/cne.902380209.
Patterns of cytochrome oxidase (CO) activity were examined histochemically in the rat SmI cortex. Discrete regions of high enzymatic activity were centered upon the granule cell aggregates (barrels) in layer IV. Those barrels which correspond to the mystacial vibrissae and make up the posteromedial barrel subfield (PMBSF) were especially interesting in that CO staining revealed distinct metabolic subdivisions which do not have an easily demonstrable cytoarchitectonic counterpart. By analogy with the barrels in mouse PMBSF and with the cytoarchitectonically distinct barrels representing the smaller sinus hairs in the rat we propose that regions of high CO activity denote the "hollow" of the rat PMBSF barrels. In accord with previous physiological studies demonstrating a vertical organization in the rodent barrel cortex, we also noted columns of intense CO activity extending from layer VI through sublamina Vb. The centers of these columns coincided with the centers of the barrels in layer IV. In tangential sections through the infragranular laminae the segmentation of CO-positive zones was less distinct than in layer IV and appeared as bands of heightened activity oriented like the five rows of layer IV barrels. Highly reactive somata and dendrites were observed in both the granular and infragranular CO barrels indicating that some of the increased activity of these regions reflects oxidative metabolism of cortical neurons per se. These patterns of metabolic activity underscore the vertical and horizontal organization of the SmI vibrissa cortex and suggest that neurons located within the central core of a column have functional properties distinct from those located in zones where individual columns interface.
采用组织化学方法研究了大鼠初级体感皮层(SmI)中细胞色素氧化酶(CO)的活性模式。酶活性高的离散区域集中在IV层的颗粒细胞簇(桶状结构)上。那些对应于触须且构成后内侧桶状亚区(PMBSF)的桶状结构特别有趣,因为CO染色揭示了明显的代谢细分,而这些细分在细胞结构上没有容易证明的对应物。通过与小鼠PMBSF中的桶状结构以及代表大鼠较小鼻窦毛的细胞结构上不同的桶状结构进行类比,我们提出CO活性高的区域表示大鼠PMBSF桶状结构的“空洞”。与先前证明啮齿动物桶状皮层存在垂直组织的生理学研究一致,我们还注意到从VI层延伸到Vb亚层的强烈CO活性柱。这些柱的中心与IV层桶状结构的中心重合。在穿过颗粒下层的切向切片中,CO阳性区域的分割不如IV层明显,呈现为像IV层桶状结构的五排那样排列的活性增强带。在颗粒状和颗粒下层的CO桶状结构中都观察到了高反应性的体细胞和树突,这表明这些区域活性的增加部分反映了皮层神经元本身的氧化代谢。这些代谢活动模式强调了SmI触须皮层的垂直和水平组织,并表明位于柱中心核心内的神经元具有与位于单个柱界面区域的神经元不同的功能特性。