Micro-Computed Tomography-Based Three-Dimensional Anatomical Structure of the Region Around the Pterygoid Hamulus.

Jiuli Zhao, Hengyuan Ma, Yongqian Wang, Tao Song, Chanyuan Jiang, Di Wu, Ningbei Yin
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引用次数: 2

Abstract

Objective: Palatoplasty would involve the structures around the pterygoid hamulus. However, clinicians hold different opinions on the optimal approach for the muscles and palatine aponeurosis around the pterygoid hamulus. The absence of a consensus regarding this point can be attributed to the lack of investigations on the exact anatomy of this region. Therefore, we used micro-computed tomography to examine the anatomical structure of the region surrounding the pterygoid hamulus.

Design: Cadaveric specimens were stained with iodine-potassium iodide and scanned by micro-computed tomography to study the structures of the tissues, particularly the muscle fibers. We imported Digital Imaging and Communications in Medicine images to Mimics to reconstruct a 3-dimensional model and simplified the model.

Results: Three muscles were present around the pterygoid hamulus, namely the palatopharyngeus (PP), superior constrictor (SC), and tensor veli palatini (TVP). The hamulus connects these muscles as a key pivot. The TVP extended to the palatine aponeurosis, which bypassed the pterygoid hamulus, and linked the PP and SC. Some muscle fibers of the SC originated from the hamulus, the aponeurosis of which was wrapped around the hamulus. There was a distinct gap between the pterygoid hamulus and the palatine aponeurosis. This formed a pulley-like structure around the pterygoid hamulus.

Conclusions: Transection or fracture of the palatine aponeurosis or pterygoid hamulus, respectively, may have detrimental effects on the muscles around the pterygoid hamulus, which play essential roles in the velopharyngeal function and middle ear ventilation. Currently, cleft palate repair has limited treatment options with proven successful outcomes.

基于微计算机层析成像的翼状骨钩周围区域三维解剖结构。
目的:腭成形术涉及翼状鹰嘴环周围结构。然而,临床医生对翼状系带周围肌肉和腭腱膜的最佳入路有不同的看法。在这一点上缺乏共识可归因于对该区域的确切解剖结构缺乏调查。因此,我们使用微型计算机断层扫描检查翼状胬肉系周围区域的解剖结构。设计:对尸体标本进行碘化钾染色,并用微型计算机断层扫描来研究组织结构,特别是肌肉纤维。我们将医学图像中的数字成像和通信引入Mimics,重建三维模型并简化模型。结果:翼状系带周围有腭咽肌(PP)、上缩肌(SC)和腭veli张肌(TVP)。系带是连接这些肌肉的关键支点。TVP延伸至腭腱膜,腭腱膜绕过翼状系带,连接PP和SC。SC的部分肌纤维起源于系带,系带的腱膜包裹在系带周围。翼状系带和腭腱膜之间有明显的间隙。这在翼状系环周围形成了滑车状结构。结论:腭腱膜断裂或翼状系带断裂均可能对翼状系带周围的肌肉产生不良影响,而翼状系带周围的肌肉在腭咽功能和中耳通气中起着重要作用。目前,腭裂修复的治疗选择有限,但已证明效果良好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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