Lèvai Olga, Strotmann Jörg
Institute of Physiology, University of Hohenheim, Garbenstrasse 30, 70593 Stuttgart, Germany.
Histochem Cell Biol. 2003 Dec;120(6):483-92. doi: 10.1007/s00418-003-0594-4. Epub 2003 Nov 20.
The septal organ represents one of the three chemosensory subsystems found in most vertebrate species. Analyzing the projection pattern of septal organ neurons using the OMP-GFP transgenic mouse line revealed that axons navigate in highly variable fiber tracks across the main olfactory epithelium toward the main olfactory bulb. All septal organ axons cross through the cribriform plate at a spatially defined site and terminate exclusively in the posterior, ventromedial aspect of the bulb. Here, one portion of axons forms a dense network on the medial side where they apparently enter glomeruli which are mainly innervated by axons of olfactory sensory neurons from the main olfactory epithelium. Another significant portion of the axons targets a few glomeruli which appear to receive input exclusively from the septal organ neurons.
鼻中隔器官是大多数脊椎动物物种中发现的三种化学感觉子系统之一。利用OMP-GFP转基因小鼠品系分析鼻中隔器官神经元的投射模式,结果显示轴突在穿过主嗅上皮的高度可变的纤维束中向主嗅球导航。所有鼻中隔器官的轴突在空间限定的部位穿过筛板,并仅终止于嗅球的后内侧部分。在这里,一部分轴突在内侧形成一个密集的网络,它们显然进入了主要由来自主嗅上皮的嗅觉感觉神经元的轴突支配的肾小球。另一大部分轴突靶向少数几个肾小球,这些肾小球似乎仅接收来自鼻中隔器官神经元的输入。