Shepherd Robert K, Colreavy Michael P
Department of Otolaryngology, The University of Melbourne, Australia.
Arch Otolaryngol Head Neck Surg. 2004 May;130(5):518-23. doi: 10.1001/archotol.130.5.518.
To study the surface microstructure of the scala tympani and scala vestibuli in humans and cats using scanning electron microscopy.
Cochleas from 8 humans and 4 cats were harvested and the otic capsule and soft tissue removed before the cochleas were prepared for scanning electron microscopy. Micrographs were taken of the bony surface of both the scala tympani and scala vestibuli in each cochlear turn. The diameter and density of the micropores (canaliculi perforantes) and the thickness of the osseous spiral lamina (OSL) adjacent to Rosenthal's canal was measured.
The human cochlea exhibits numerous canaliculi on the surface of the scala tympani, particularly associated with the OSL. There was a large range of diameters in the modiolar region of the OSL (0.2-23.0 micro m). The OSL was also very thin, with a mean thickness of 26.8 micro m in the base, tapering to 8.4 micro m in the apical turn. Far fewer canaliculi were evident in the scala vestibuli. Examination of the cat cochleas showed a similar distribution of canaliculi to that seen in the human; however, they were smaller in diameter and the OSL was thicker than in the human cochleas.
The OSL is a thin and highly porous bony lamina that would appear to provide an open and extensive fluid communication channel between the scala tympani and Rosenthal's canal. These findings have important implications for the design and application of perimodiolar cochlear implant electrode arrays and may provide a potential route for drug- and cell-based cochlear therapies delivered via the scala tympani.
使用扫描电子显微镜研究人类和猫的鼓阶与前庭阶的表面微观结构。
采集8例人类和4只猫的耳蜗,去除听骨囊和软组织后,对耳蜗进行扫描电子显微镜制备。拍摄每个耳蜗螺旋各圈鼓阶和前庭阶骨表面的显微照片。测量与螺旋神经节管相邻的微孔(穿通小管)的直径和密度以及骨螺旋板(OSL)的厚度。
人类耳蜗的鼓阶表面有大量小管,特别是与骨螺旋板相关。骨螺旋板近蜗轴区域的直径范围很大(0.2 - 23.0微米)。骨螺旋板也非常薄,基部平均厚度为26.8微米,在顶圈逐渐变细至8.4微米。在前庭阶中明显可见的小管要少得多。对猫耳蜗的检查显示,小管的分布与人类相似;然而,它们的直径较小,且骨螺旋板比人类耳蜗的厚。
骨螺旋板是一层薄且高度多孔的骨板,似乎在鼓阶和螺旋神经节管之间提供了一个开放且广泛的液体连通通道。这些发现对蜗轴周围耳蜗植入电极阵列的设计和应用具有重要意义,并可能为通过鼓阶进行基于药物和细胞的耳蜗治疗提供一条潜在途径。