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豚鼠的耳蜗通讯路径——螺旋神经节和骨螺旋板:使用微球示踪剂的电子显微镜研究

Cochlear communication routes in the guinea pig--spiral ganglia and osseous spiral laminae: an electron microscope study using microsphere tracers.

作者信息

Duckert L G, Duvall A J

出版信息

Otolaryngology. 1978 May-Jun;86(3 Pt 1):ORL434-446. doi: 10.1177/019459987808600312.

Abstract

The microscopic and ultrastructural anatomy of the spiral ganglia and osseous spiral laminae (OSL) of the guinea pig were studied using the transmission and scanning electron microscopes. The nerve and vascular elements within the spiral ganglia and OSL are surrounded by distinct perineural and perivascular spaces maintained by a loose meshwork of cells and connective tissue fibers. The connective tissue cells are fibers within the OSL and spiral ganglia are distinctly different from the arachnoid-like reticular cells and elastin fibers of the modiolus described in an earlier study. The present experiment demonstrates a pathway between the perineural spaces of the modiolus, spiral ganglia, and OSL. The perineural spaces of the modiolus were previously shown to communicate with the subarachnoid space; therefore, perineural communication from the cerebrospinal fluid to the perilymph via this route is likely. Using mircosphere tracers injected intrathecally, this communication route between the subarachnoid space and scala tympani was further defined. The tracer experiment suggests that the perineural spaces within the internal acoustic meatus, modiolus, spiral ganglia, and OSL are normally patent and do not represent artifacts induced during tissue processing.

摘要

运用透射电子显微镜和扫描电子显微镜对豚鼠螺旋神经节和骨螺旋板(OSL)的微观及超微结构解剖进行了研究。螺旋神经节和骨螺旋板内的神经和血管成分被由细胞和结缔组织纤维构成的疏松网络所维持的独特神经周隙和血管周隙所包围。骨螺旋板和螺旋神经节内的结缔组织细胞及纤维与早期研究中所描述的蜗轴蛛网膜样网状细胞和弹性纤维明显不同。本实验证实了蜗轴、螺旋神经节和骨螺旋板的神经周隙之间存在一条通路。先前已表明蜗轴的神经周隙与蛛网膜下隙相通;因此,脑脊液很可能经由此途径与外淋巴进行神经周隙间的沟通。通过鞘内注射微球示踪剂,进一步明确了蛛网膜下隙与鼓阶之间的这条沟通途径。示踪剂实验表明,内耳道、蜗轴、螺旋神经节和骨螺旋板内的神经周隙通常是开放的,并非组织处理过程中产生的假象。

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