Department of Otolaryngology-Head & Neck Surgery, Vali-E-Asr Hospital, Tehran University of Medical Sciences, Tehran, Iran.
Head Neck. 2012 Mar;34(3):313-20. doi: 10.1002/hed.21725. Epub 2011 May 16.
The infratemporal fossa anatomy, from an endoscopic standpoint, is poorly understood. Our purpose was to design an anatomic model that illustrates the anatomy of the infratemporal fossa from the endoscopic standpoint and serves as a training model for surgeons interested in pursuing this endeavor.
Red and blue silicone dyes were respectively injected into the great vessels of the neck. Digital data acquired from a high resolution CT scan was imported to a navigational system. An endoscopic endonasal dissection of the infratemporal fossa was completed under conditions that mimicked our operating suite.
A detailed anatomic dissection of the infratemporal fossa was correlated to the image guidance (navigation) system. This provided a surgical map highlighting critical neurovascular structures and illustrating the potential surgical corridors.
A thorough understanding of the anatomy of infratemporal fossa from the endoscopic perspective allows the surgeon to plan an adequate corridor.
从内窥镜角度来看,翼腭窝解剖结构尚未完全被了解。我们的目的是设计一个解剖模型,从内窥镜角度说明翼腭窝的解剖结构,并作为对这一领域感兴趣的外科医生的培训模型。
红色和蓝色的硅胶染料分别被注入颈部的大血管中。从高分辨率 CT 扫描中获得的数字数据被导入导航系统。在模拟我们手术室条件下完成了经鼻内镜翼腭窝解剖。
翼腭窝的详细解剖结构与图像引导(导航)系统相关联。这提供了一个外科手术图,突出了关键的神经血管结构,并说明了潜在的手术通道。
从内窥镜角度对翼腭窝解剖结构有透彻的了解,可使外科医生规划出足够的通道。