Penha R, O'Neill M A, Goyri O'Neill J, Esperanca Pina J A
Department of Otorhinolaryngology, Hospital Egas Moniz, Lisbon, Portugal.
Otolaryngol Head Neck Surg. 1999 May;120(5):725-9. doi: 10.1053/hn.1999.v120.a89065.
We performed a study of the microvasculature of the cochlea with scanning electron microscopy on corrosion casts in the guinea pig. This study was performed in 140 cochleas from healthy adult guinea pigs. Different microvascular techniques were used, including injection-microdissection in 53 cases, injection-diaphanization in 27 cases, a histologic technique in 34 cases, injection-microdissection-diaphanization in 32 cases, and scanning electron microscopy on corrosion casts in 14 cases. The internal radiating arterioles branch off as collateral branches of the spiral modiolar artery, as first-order collateral branches. We detail the morphology, caliber, trajectory, and collateral branches. Among their collateral branches, are third-order arterioles, the arterioles to the spiral ganglia, and the arterioles of the tympanic lip. The arterioles of the tympanic lip form, through their anastomosis, a rich capillary network at the edge of the spiral lamina, called the internal spiral network. We emphasize the glomeruli of Schwalbe, which arise near the scala tympani as third-order arterioles with a medium caliber of 14 microm. The upper glomeruli, situated in the bony wall, and the lower glomeruli, situated in the width of the osseous spiral lamina, form vascular loops made of anastomosed capillaries with a caliber of less than 10 microm. These loops play an important role as efficient devices, or "relay stations," for regulation of cochlear blood flow. The comparison of results obtained with each technique gave the perspective of the cochlear microvasculature with great accuracy.
我们用扫描电子显微镜对豚鼠腐蚀铸型的耳蜗微血管系统进行了研究。本研究在140只健康成年豚鼠的耳蜗上进行。采用了不同的微血管技术,包括53例注射 - 显微解剖、27例注射 - 透照法、34例组织学技术、32例注射 - 显微解剖 - 透照法以及14例腐蚀铸型的扫描电子显微镜观察。内辐射小动脉作为螺旋蜗轴动脉的侧支分支,为一级侧支。我们详细描述了其形态、管径、走行和侧支分支。在其侧支分支中,有三级小动脉、至螺旋神经节的小动脉以及鼓唇小动脉。鼓唇小动脉通过吻合形成螺旋板边缘丰富的毛细血管网,称为内螺旋网。我们着重介绍了施瓦贝小球,它在鼓阶附近作为三级小动脉出现,平均管径为14微米。位于骨壁的上小球和位于骨螺旋板宽度处的下小球形成由口径小于10微米的吻合毛细血管构成的血管环。这些血管环作为调节耳蜗血流的有效装置或“中继站”发挥着重要作用。对每种技术所得结果的比较非常精确地展现了耳蜗微血管系统的全貌。