VON Bohlen Und Halbach Viola, VON Bohlen Und Halbach Oliver
Institute of Anatomy and Cell Biology,Universitätsmedizin Greifswald,17487 Greifswald,Germany.
Vis Neurosci. 2016 Jan;33:E012. doi: 10.1017/S0952523816000080.
The cholinergic system is involved in cortical plasticity, attention, and learning. Within the visual cortex the cholinergic system seems to play a role in visual perception. The cholinergic neurons which project into the visual cortex are located in the basal forebrain. It has been shown that mice deficient for the low-affinity neurotrophin receptor p75NTR display increased numbers of cholinergic neurons in the basal forebrain and a denser cholinergic innervation of the hippocampus. This prompted us to analyze whether the cholinergic system is altered in adult p75NTR deficient mice. By analyzing the densities of cholinergic fibers within layer IV as well as within layer V of the visual cortex, we found that adult p75NTR deficient mice display increased cholinergic fiber densities. However, this increase was not accompanied by an increase in the density of local cholinergic neurons within the visual cortex. This indicates that the enhanced cholinergic innervation of the visual cortex is due to alteration of the cholinergic neurons located in the basal forebrain, projecting to the visual cortex. The increased cholinergic innervation of the visual cortex makes the p75NTR deficient mice an attractive model to study the necessity of the cholinergic system for the visual cortex.
胆碱能系统参与皮层可塑性、注意力和学习过程。在视觉皮层中,胆碱能系统似乎在视觉感知中发挥作用。投射到视觉皮层的胆碱能神经元位于基底前脑。研究表明,缺乏低亲和力神经营养因子受体p75NTR的小鼠,其基底前脑胆碱能神经元数量增加,海马胆碱能神经支配更密集。这促使我们分析成年p75NTR缺陷小鼠的胆碱能系统是否发生改变。通过分析视觉皮层IV层和V层内胆碱能纤维的密度,我们发现成年p75NTR缺陷小鼠的胆碱能纤维密度增加。然而,这种增加并未伴随着视觉皮层内局部胆碱能神经元密度的增加。这表明,视觉皮层胆碱能神经支配的增强是由于位于基底前脑、投射到视觉皮层的胆碱能神经元发生了改变。视觉皮层胆碱能神经支配的增加,使p75NTR缺陷小鼠成为研究胆碱能系统对视觉皮层必要性的一个有吸引力的模型。