Kuchiiwa S
Department of Anatomy, Hirosaki University School of Medicine, Japan.
J Comp Neurol. 1990 Oct 15;300(3):301-8. doi: 10.1002/cne.903000303.
The intraocular projection of the cat pterygopalatine (sphenopalatine) ganglion was examined by using retrograde axoplasmic transport techniques in order to investigate the possibility of the involvement of the facial nerve in ocular parasympathetic innervation. Following an injection of horseradish peroxidase (HRP) or wheat germ agglutinin-HRP into the eye, retrogradely labeled cells were observed in the ipsilateral pterygopalatine ganglion, principally in the caudal part. By dissection of silver-impregnated, acetylcholinesterase- and cholinesterase-stained orbital preparations, it was determined that two different nerve pathways link the pterygopalatine ganglion and the eye. One took a retrograde course to join the retro-orbital plexus and then traveled forward accompanying the ciliary artery, the long ciliary nerve, the short ciliary nerve, and/or the optic nerve sheath. The other entered the orbit directly, fused with the ethmoidal nerve or the infratrochlear nerve in a retrograde fashion, and then turned forward along the long ciliary nerve to enter the eye. All these nerves arose from the caudal part of the ganglion. These results are discussed in relation to recent biochemical and histochemical data demonstrating the involvement of the facial nerve in the control of ocular blood flow and intraocular pressure.
为了研究面神经是否参与眼副交感神经支配,运用逆行轴浆运输技术对猫翼腭(蝶腭)神经节的眼内投射进行了研究。将辣根过氧化物酶(HRP)或麦胚凝集素-HRP注入眼内后,在同侧翼腭神经节中观察到逆行标记的细胞,主要位于尾部。通过对银浸染、乙酰胆碱酯酶和胆碱酯酶染色的眼眶标本进行解剖,确定有两条不同的神经通路连接翼腭神经节和眼睛。一条呈逆行路径,加入眶后丛,然后伴随睫状动脉、长睫状神经、短睫状神经和/或视神经鞘向前走行。另一条直接进入眼眶,逆行与筛神经或滑车下神经融合,然后沿长睫状神经向前转向进入眼睛。所有这些神经均起源于神经节的尾部。结合最近证明面神经参与眼血流和眼压控制的生化和组织化学数据对这些结果进行了讨论。