Seemann Rudolf, Czerny Christian, Schicho Kurt, Undt Gerhard, Piehslinger Eva, Ewers Rolf, Wagner Arne
University Hospital of Cranio-Maxillofacial and Oral Surgery, Medical University of Vienna, Vienna, Austria.
Oral Surg Oral Med Oral Pathol Oral Radiol Endod. 2008 Mar;105(3):371-8. doi: 10.1016/j.tripleo.2007.02.003. Epub 2007 Jun 29.
One step toward motion analysis of the temporomandibular joint is pseudodynamic magnetic resonance imaging (i.e., with stepwise mouth opening controlled by a Burnett device). This study intends to clarify whether and how pseudodynamic motion differs from natural motion. Furthermore, the fixing efficiency (i.e., the reliability of the mechanical connection to the jaw) of the Burnett device was tested.
In 10 patients we recorded pseudodynamic opening motions by means of MRI and optical tracking technology (as known from image-guided surgery) synchronously; natural opening motions by spatiotemporal tracking only. The MRI was used to allow for interpretation of the pseudodynamic motion as recorded by means of optoelectronic tracking.
In 3 subjects the pseudodynamic differed from the natural opening in occurrence of a loop (i.e., a short backward motion of the condyle during the opening process that results from the application of the Burnett device and does not correspond to a natural jaw movement). Fifty percent of the opening steps showed unintended motion and thus did not keep the mandible still during the MRI scan.
A method was provided to detect motion during MRI scan using optoelectronic tracking. Pseudodynamic motion may differ from natural motion.
颞下颌关节运动分析的其中一步是伪动态磁共振成像(即通过伯内特装置控制逐步张口)。本研究旨在阐明伪动态运动是否以及如何不同于自然运动。此外,还测试了伯内特装置的固定效率(即与颌骨机械连接的可靠性)。
在10名患者中,我们通过MRI和光学跟踪技术(如影像引导手术中所知)同步记录伪动态张口运动;仅通过时空跟踪记录自然张口运动。使用MRI来解释通过光电跟踪记录的伪动态运动。
在3名受试者中,伪动态运动与自然张口运动的不同之处在于出现了一个环(即髁突在张口过程中的短暂向后运动,这是由伯内特装置的应用导致的,与自然颌骨运动不符)。50%的张口步骤显示出意外运动,因此在MRI扫描期间没有使下颌保持静止。
提供了一种使用光电跟踪在MRI扫描期间检测运动的方法。伪动态运动可能不同于自然运动。