Møller M, Liu W
Institute of Medical Anatomy, Panum Institute, University of Copenhagen, Denmark.
Reprod Nutr Dev. 1999 May-Jun;39(3):345-53. doi: 10.1051/rnd:19990307.
The innervation of the rat pineal gland from the sphenopalatine, otic, superior cervical and trigeminal ganglia was investigated in animals by use of in vivo retrograde tracings. A solution of 2% Fluorogold was iontophoretically injected into the superficial pineal gland in a series of Wistar rats. After a survival time of 4-10 days, the animals were fixed by perfusion and the brains, sphenopalatine, otic, superior cervical and trigeminal ganglia were investigated with a fluorescence microscope. Many retrogradely labelled perikarya were found in the superior cervical ganglia, but a smaller number of neurones were also labelled in the sphenopalatine, otic and trigeminal ganglia. Injections of the tracer into the subarachnoidal space were used as the control for unspecific uptake and transport of the tracer. The input to the pineal gland from the parasympathetic sphenopalatine and otic ganglia might be involved in the regulation of the annual rhythms of the pineal gland. The projections from the sensory trigeminal ganglion could be involved in the control of the blood flow of the gland.
利用体内逆行示踪技术,对动物体内蝶腭神经节、耳神经节、颈上神经节和三叉神经节至大鼠松果体的神经支配进行了研究。将2%荧光金溶液通过离子电渗法注入一系列Wistar大鼠的松果体浅层。在4 - 10天的存活期后,通过灌注固定动物,并使用荧光显微镜对大脑、蝶腭神经节、耳神经节、颈上神经节和三叉神经节进行研究。在颈上神经节中发现了许多逆行标记的胞体,但在蝶腭神经节、耳神经节和三叉神经节中也标记了较少数量的神经元。将示踪剂注入蛛网膜下腔用作示踪剂非特异性摄取和运输的对照。来自副交感神经蝶腭神经节和耳神经节至松果体的输入可能参与松果体年度节律的调节。来自感觉三叉神经节的投射可能参与腺体血流的控制。