School of Mechanical and Materials Engineering, Washington State University, Pullman, WA, USA.
J Biomech. 2012 Feb 2;45(3):531-6. doi: 10.1016/j.jbiomech.2011.11.040. Epub 2011 Dec 15.
The hyoid bone is a unique bone in the skeleton not articulated to any other bone. The hyoid muscles, which attach to the hyoid bone, may play a role in neck mechanics, but analysis of their function requires quantifying hyoid bone mechanics. The goal of this study was to obtain the detailed kinematics of the hyoid bone over a large range of flexion-extension motion using radiographs at 5 postures. The position of the hyoid bone in the sagittal plane was characterized with respect to head, jaw, and vertebral movements. Sex differences in hyoid kinematics were also investigated. We hypothesized that (1) the position of the hyoid bone in the sagittal plane is linearly correlated with motion of the head, jaw, and vertebrae, and (2) the hyoid position, size, and kinematics are sex-specific. We found that the hyoid bone X, Y, and angular position generally had strong linear correlations with the positions of the head, jaw, and the cervical vertebrae C1-C4. Hyoid X and angular position was also correlated to C5. Sex differences were found in some regressions of the hyoid bone with respect to C1-C5. The angular and linear measurements of the hyoid bone showed sex differences in absolute values, which were not evident after normalization by posture or neck size. Incorporating these results to neck models would enable accurate modeling of the hyoid muscles. This may have implications for analyzing the mechanics of the cervical spine, including loads on neck structures and implants.
舌骨是骨骼中独一无二的一块骨头,不与任何其他骨头相连。附着在舌骨上的舌骨肌可能在颈部力学中发挥作用,但分析其功能需要量化舌骨的力学特性。本研究的目的是使用 5 个姿势的 X 光片获取在较大屈伸运动范围内舌骨的详细运动学。用相对于头部、下颌和颈椎运动来描述矢状面上舌骨的位置。还研究了舌骨运动学的性别差异。我们假设:(1) 舌骨在矢状面上的位置与头部、下颌和颈椎的运动呈线性相关,以及 (2) 舌骨的位置、大小和运动学是具有性别特异性的。我们发现,舌骨的 X 轴、Y 轴和角度位置通常与头部、下颌和颈椎 C1-C4 的位置具有很强的线性相关性。舌骨的 X 轴和角度位置也与 C5 相关。在一些关于舌骨相对于 C1-C5 的回归中发现了性别差异。舌骨的角度和线性测量在绝对值上存在性别差异,但在通过姿势或颈部大小归一化后,这些差异并不明显。将这些结果纳入颈部模型将能够准确模拟舌骨肌。这可能对分析颈椎力学,包括颈部结构和植入物的负荷具有重要意义。