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首页> 外文期刊>Hippocampus >Subcortical connections of the perirhinal, postrhinal, and entorhinal cortices of the rat. II. efferents
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Subcortical connections of the perirhinal, postrhinal, and entorhinal cortices of the rat. II. efferents

机译:大鼠皮层,皮层和内层皮质的皮层下连接。二。传出

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This is the second of two studies detailing the subcortical connections of the perirhinal (PER), the postrhinal (POR) and entorhinal (EC) cortices of the rat. In the present study, we analyzed the subcortical efferents of the rat PER areas 35 and 36, POR, and the lateral and medial entorhinal areas (LEA and MEA). Anterograde tracers were injected into these five regions, and the resulting density of fiber labeling was quantified in an extensive set of subcortical structures. Density and topography of fiber labeling were quantitatively assessed in 36 subcortical areas, including olfactory structures, claustrum, amygdala nuclei, septal nuclei, basal ganglia, thalamic nuclei, and hypothalamic structures. In addition to reporting the density of labeled fibers, we incorporated a new method for quantifying the size of anterograde projections that takes into account the volume of the target subcortical structure as well as the density of fiber labeling. The PER, POR, and EC displayed unique patterns of projections to subcortical areas. Interestingly, all regions examined provided strong input to the basal ganglia, although the projections arising in the PER and LEA were stronger and more widespread. PER areas 35 and 36 exhibited similar pattern of projections with some differences. PER area 36 projects more heavily to the lateral amygdala and much more heavily to thalamic nuclei including the lateral posterior nucleus, the posterior complex, and the nucleus reuniens. Area 35 projects more heavily to olfactory structures. The LEA provides the strongest and most widespread projections to subcortical structures including all those targeted by the PER as well as the medial and posterior septal nuclei. POR shows fewer subcortical projections overall, but contributes substantial input to the lateral posterior nucleus of the thalamus. The MEA projections are even weaker. Our results suggest that the PER and LEA have greater influence over olfactory, amygdala, and septal nuclei, whereas PER area 36 and the POR have greater influence over thalamic nuclei. (c) 2016 Wiley Periodicals, Inc.
机译:这是两项研究的第二项,详细研究了大鼠皮层的皮层下连接(PER),后皮层(POR)和内层皮层(EC)。在本研究中,我们分析了大鼠PER区域35和36,POR以及外侧和内侧Ennerhinal区域(LEA和MEA)的皮层下射出。将顺行示踪剂注入这五个区域,并在广泛的皮层下结构集中量化所得的纤维标记密度。纤维标记的密度和形貌在36个皮质下区域进行了定量评估,包括嗅觉结构,锁骨,杏仁核,中隔核,基底神经节,丘脑核和下丘脑结构。除了报告标记纤维的密度外,我们还采用了一种新的方法来量化顺行性突起的大小,该方法考虑了目标皮层下结构的体积以及纤维标记的密度。 PER,POR和EC对皮层下区域显示出独特的投影图案。有趣的是,尽管PER和LEA的预测更强,更广泛,但所有检查的区域都为基底神经节提供了强大的投入。 PER区域35和36显示相似的投影图案,但有一些差异。 PER区域36更重地投射到外侧杏仁核,并且更重地投射到丘脑核,包括外侧后核,后复合体和骨核。 35区向嗅觉结构的投射更大。 LEA对皮层下结构提供了最强,最广泛的预测,包括PER以及内侧和后中隔核所靶向的所有结构。 POR显示总体皮层下投射较少,但为丘脑外侧后核贡献了大量输入。 MEA的预测甚至更弱。我们的结果表明,PER和LEA对嗅觉,杏仁核和中隔核的影响更大,而PER区域36和POR对丘脑核的影响更大。 (c)2016年威利期刊有限公司

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