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内镜进入颞下窝和颅底:一项尸体研究。

Endoscopic access to the infratemporal fossa and skull base: a cadaveric study.

作者信息

Hartnick C J, Myseros J S, Myer C M

机构信息

Department of Pediatric Otolaryngology, Children's Hospital Medical Center, Cincinnati, Ohio, USA.

出版信息

Arch Otolaryngol Head Neck Surg. 2001 Nov;127(11):1325-7. doi: 10.1001/archotol.127.11.1325.

Abstract

OBJECTIVES

To demonstrate that the regions of the infratemporal fossa and skull base at the level of the foramen ovale can be visualized endoscopically and that structures can be manipulated within these regions using endoscopic instruments.

METHODS

Cadaveric dissection of 3 human cadavers using an endoscopic optical dissector. In all, 6 endoscopic infratemporal fossa and skull base approaches were performed.

SETTING

Human temporal bone laboratory.

RESULTS

A Gillies incision was coupled with a lateral brow incision, and then subperiosteal planes were developed. Endoscopic visualization and instrumentation was then performed. The infratemporal fossa was readily identified. The skull base at the level of the foramen ovale and the branches of the third division of the trigeminal nerve were seen distinctly. A probe was placed with ease within the foramen ovale itself.

CONCLUSIONS

Endoscopic access to the infratemporal fossa is readily accomplished, with excellent visualization and instrumentation ability. This novel technique provides access to this remote region for evaluation, possible biopsy, and potential treatment of infratemporal fossa lesions.

摘要

目的

证明卵圆孔水平的颞下窝和颅底区域可通过内镜可视化,并且可使用内镜器械在这些区域内操作结构。

方法

使用内镜光学解剖器对3具人类尸体进行尸体解剖。总共进行了6次内镜下颞下窝和颅底入路操作。

地点

人类颞骨实验室。

结果

采用吉利斯切口联合外侧眉弓切口,然后分离骨膜下平面。随后进行内镜可视化和器械操作。颞下窝易于识别。卵圆孔水平的颅底和三叉神经第三分支清晰可见。探针可轻松置于卵圆孔内。

结论

内镜进入颞下窝很容易实现,具有出色的可视化和器械操作能力。这项新技术为评估、可能的活检以及颞下窝病变的潜在治疗提供了进入这个偏远区域的途径。

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