Traboulsi Henri, Teixido Michael
Texas Children's Hospital, Houston, TX, USA.
Christiana Care Health Systems, Newark, DE, USA.
World J Otorhinolaryngol Head Neck Surg. 2020 Jun 8;7(1):34-39. doi: 10.1016/j.wjorl.2018.10.001. eCollection 2021 Jan.
To develop a downloadable three-dimensional (3D) study tool of the membranous labyrinth in order to facilitate the study of benign paroxysmal positional vertigo (BPPV).
The diagnosis and treatment of BPPV depend on an understanding of the anatomy of the vestibular labyrinth and its position relative to the head. To date, many illustrations have been made to explain principles of diagnosis and treatment of BPPV, but few have been based on anatomical studies of the membranous labyrinth.
A previously reported 3D model of a human labyrinth was transposed to a 3D development software to allow the creation of markers along the semicircular ducts and utricle. These markers represent otoliths at different positions during movement of the model within the 3D environment. User-friendly tools were created to navigate the model, to allow clear documentation and communication of studied problems, and to study the model across relevant planes. The final model can be downloaded and is available for general useat https://bppvviewer.com/download/.
The model allows visualization of true membranous labyrinth anatomy in both ears simultaneously. The dependent portion of each semicircular duct, the planes of the cristae, and the position of the utricle can easily be visualized in any head position. Moveable markers can mark the expected progress of otolith debris with changes in head position and images can be captured to document simulations in various draw styles.
This simple model could offer insights that lead to more accurate diagnosis and treatment of BPPV. It may also be useful as a tool to teach BPPV.
开发一种可下载的膜迷路三维(3D)研究工具,以促进良性阵发性位置性眩晕(BPPV)的研究。
BPPV的诊断和治疗取决于对前庭迷路解剖结构及其相对于头部位置的理解。迄今为止,已经有许多图示用于解释BPPV的诊断和治疗原则,但很少基于膜迷路的解剖学研究。
将先前报道的人体迷路3D模型转换到3D开发软件中,以便在半规管和椭圆囊沿线创建标记。这些标记代表模型在3D环境中移动时不同位置的耳石。创建了用户友好的工具来浏览模型,以便清晰记录和交流所研究的问题,并在相关平面上研究模型。最终模型可下载,可在https://bppvviewer.com/download/上通用。
该模型可以同时可视化双耳真实的膜迷路解剖结构。在任何头部位置,每个半规管的依赖部分、嵴的平面和椭圆囊的位置都可以很容易地可视化。可移动标记可以随着头部位置的变化标记耳石碎片的预期进展,并且可以捕获图像以记录各种绘图样式的模拟。
这个简单的模型可以提供有助于更准确诊断和治疗BPPV的见解。它也可能作为一种教授BPPV的工具很有用。