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Mandibular helical axis pathways during mastication.

机译:咀嚼期间的下颌螺旋轴路径。

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Condylar and incisor trajectories are often used for the study of mandibular movements. Condylar trajectories, however, depend on the location of the reference point and can be interpreted erroneously. In contrast, the helical axis analysis yields an unequivocal description of rigid body kinematics. The aim of this study was to analyze the mandibular helical axis during mastication. Seven subjects without signs and symptoms of craniomandibular disorders and with class I occlusion were recorded by means of the opto-electronic system Jaws-3D during unilateral mastication of bread cubes (2-cm side). The helical axis was computed every 14 ms with a rotation threshold of 1 . Parameters describing its spatial orientation and position relative to the condyles were calculated. The helical axis changed orientation and position more pronouncedly during the closing than during the opening phases of mastication. The orientation varied significantly from beginning to end of closing but not of opening, indicating less fluctuation of the helical axis on opening than on closing. Also, the distance dCP between helical axis and reference condylar point varied more significantly (p < 0.05) on the working than on the balancing side: On the working side, dCP decreased during both opening and closing, whereas on the balancing side, dCP increased only for closing. Furthermore, the helical axis pathway often showed a bowing ventrally to the balancing condyle, indicating that, during closing, the balancing condyle still translated backward while essentially only rotation occurred around the working condyle. Thus, the helical axis changed its position and orientation continuously during mastication.
机译:the突和切牙轨迹经常用于研究下颌运动。但是,轨迹取决于参考点的位置,并且可能会被错误地解释。相反,螺旋轴分析对刚体运动学进行了明确的描述。这项研究的目的是分析咀嚼过程中的下颌螺旋轴。在单侧咀嚼面包块(2厘米长)期间,通过光电系统Jaws-3D记录了7名没有颅下颌骨疾病的症状和体征且I类闭塞的受试者。螺旋轴每14毫秒计算一次,旋转阈值为1。计算描述其相对于con的空间方向和位置的参数。螺旋轴在关闭期间比咀嚼的打开阶段更明显地改变了方向和位置。从关闭的开始到结束,但从打开的开始到结束,方向变化很大,这表明打开时的螺旋轴波动要比关闭时小。同样,螺旋轴与基准con突点之间的距离dCP在工作时比平衡侧变化更大(p <0.05):在工作侧,打开和关闭时dCP减小,而在平衡侧dCP增大仅用于关闭。此外,螺旋轴路径通常在平衡突突的腹侧呈弓形弯曲,这表明在闭合过程中,平衡突突仍向后平移,而基本上仅围绕工作突突发生旋转。因此,螺旋轴在咀嚼过程中不断改变其位置和方向。

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