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首页> 外文期刊>Journal of Dental Sciences >Feasibility of differential quantification of 3D temporomandibular kinematics during various oral activities using a cone-beam computed tomography-based 3D fluoroscopic method
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Feasibility of differential quantification of 3D temporomandibular kinematics during various oral activities using a cone-beam computed tomography-based 3D fluoroscopic method

机译:使用基于锥束计算机断层扫描的3D荧光检查法在各种口腔活动中对3D颞下颌运动学进行差异量化的可行性

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摘要

Background/purpose The measurement of mandibular kinematics is critical for studying the function of the temporomandibular joint (TMJ) and for relevant clinical applications. However, none of the existing methods allows the measurement of three-dimensional (3D) in?vivo motion of the joint during dynamic functional movements without artifactual interference. The purpose of this study was to demonstrate the feasibility of a newly developed cone-beam computed tomography (CBCT)-based 3D fluoroscopic method in differentiating rigid-body kinematics of the TMJ during various functional activities. Materials and methods One healthy individual was asked to undergo a CBCT scan and fluoroscopic imaging of her mandible and maxilla during various functional activities. CBCT-based 3D fluoroscopy was used to measure the 3D kinematics of the TMJ. Results The 3D rigid-body kinematics of the mandible, movement trajectories of the centers of the TMJ and the midpoint of the interincisal edge were measured during functional activities. Conclusion A new CBCT-based 3D fluoroscopic method was proposed and shown to be capable of quantitatively differentiating TMJ movement patterns among complicated functional activities. It also enabled a complete description of the rigid-body mandibular motion and descriptions of as many reference points as needed for future clinical applications. It will be helpful for dental practice and for a better understanding of the functions of the TMJ.
机译:背景/目的下颌运动学的测量对于研究颞下颌关节(TMJ)的功能以及相关的临床应用至关重要。但是,现有方法均无法在没有人为干扰的情况下在动态功能运动期间测量关节的三维(3D)体内运动。这项研究的目的是证明一种新开发的基于锥形束计算机断层扫描(CBCT)的3D荧光透视方法在区分各种功能活动期间TMJ的刚体运动学方面的可行性。材料和方法一个健康的个体被要求在各种功能活动期间对其下颌骨和上颌骨进行CBCT扫描和透视成像。基于CBCT的3D透视用于测量TMJ的3D运动学。结果在功能性活动期间测量了下颌的3D刚体运动学,TMJ中心的运动轨迹和门齿边缘的中点。结论提出了一种新的基于CBCT的3D荧光检查方法,该方法能够定量区分复杂功能活动中TMJ的运动方式。它还可以完整描述刚体下颌运动,并描述未来临床应用所需的许多参考点。这将有助于牙科实践以及更好地理解TMJ的功能。

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