Cascone Piero, Rinaldi Fabrizio, Pagnoni Mario, Marianetti Tito Matteo, Tedaldi Massimiliano
Cattedra di Chirurgia Maxillo-Facciale, Università Degli Studi di Roma "La Sapienza," Rome, Italy.
J Craniofac Surg. 2008 Nov;19(6):1526-31. doi: 10.1097/SCS.0b013e31818ac1f0.
The three-dimensional (3D) temporomandibular joint (TMJ) model derives from a study of the cranium by 3D virtual reality and mandibular function animation. The starting point of the project is high-fidelity digital acquisition of a human dry skull. The cooperation between the maxillofacial surgeon and the cartoonist enables the reconstruction of the fibroconnective components of the TMJ that are the keystone for comprehension of the anatomic and functional features of the mandible. The skeletal model is customized with the apposition of the temporomandibular ligament, the articular disk, the retrodiskal tissue, and the medial and the lateral ligament of the disk. The simulation of TMJ movement is the result of the integration of up-to-date data on the biomechanical restrictions. The 3D TMJ model is an easy-to-use application that may be run on a personal computer for the study of the TMJ and its biomechanics.
三维(3D)颞下颌关节(TMJ)模型源自一项通过3D虚拟现实和下颌功能动画对颅骨的研究。该项目的起点是对人类干燥头骨进行高保真数字采集。颌面外科医生与漫画家的合作使得能够重建颞下颌关节的纤维结缔组织成分,而这些成分是理解下颌骨解剖和功能特征的关键。通过附着颞下颌韧带、关节盘、盘后组织以及关节盘的内侧和外侧韧带对骨骼模型进行定制。颞下颌关节运动的模拟是整合最新生物力学限制数据的结果。3D颞下颌关节模型是一个易于使用的应用程序,可在个人计算机上运行以研究颞下颌关节及其生物力学。