Meznaric-Petrusa Marija, Cvetko Erika
University of Ljubljana, Institute of Anatomy, Medical faculty, Korytkova 2, Slovenia.
Bosn J Basic Med Sci. 2004 May;4(2):10-6. doi: 10.17305/bjbms.2004.3406.
The auditory tube connects the tympanic cavity with nasopharynx. Due to its structure and position it is difficult to demonstrate the auditory tube in its whole length, and to study its topography on anatomical specimens. The purpose of our study was to present sectional anatomy of auditory tube in order to facilitate understanding of its structure and topography.
We utilised serial sections of cadaveric head in four planes: transverse, oblique, frontal and sagittal.
The osseous part of the auditory tube was demonstrated on transverse sections, and most of the cartilaginous part on oblique sections of head and neck. The tensor veli palati muscle was found to consist of bilaminar muscle sheet: the outer part originating from the skull base and the inner part originating from lateral cartilaginous lamina and membranous part of the tube. Topographic relations seen on four section planes were described in detail.
The structure, course and topography of auditory tube are well demonstrated on sectional images. Detailed knowledge of sectional anatomy of the auditory tube is important for interpretation of corresponding computerised tomographic and magnetic resonance images, and in understanding the disorders and diseases affecting middle ear and mastoid.
咽鼓管连接鼓室与鼻咽部。因其结构和位置,难以在完整长度上显示咽鼓管,也难以在解剖标本上研究其局部解剖结构。本研究的目的是展示咽鼓管的断层解剖,以助于理解其结构和局部解剖关系。
我们利用尸体头部在四个平面的连续切片:横断面、斜断面、冠状面和矢状面。
在横断面可显示咽鼓管的骨性部分,在头颈部斜断面可显示大部分软骨部分。发现腭帆张肌由双层肌片组成:外层起自颅底,内层起自软骨外侧板和咽鼓管膜部。详细描述了在四个断面平面上观察到的局部解剖关系。
在断层图像上能很好地显示咽鼓管的结构、走行和局部解剖关系。详细了解咽鼓管的断层解剖对于解读相应的计算机断层扫描和磁共振图像,以及理解影响中耳和乳突的疾病很重要。