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采用双侧静步态有限元建模方法评估全骨盆环应力。

Evaluation of full pelvic ring stresses using a bilateral static gait-phase finite element modeling method.

机构信息

Bioengineering Center, Wayne State University, 818W. Hancock, Detroit, MI 48201, USA.

Bioengineering Center, Wayne State University, 818W. Hancock, Detroit, MI 48201, USA.

出版信息

J Mech Behav Biomed Mater. 2018 Feb;78:175-187. doi: 10.1016/j.jmbbm.2017.11.006. Epub 2017 Nov 4.

Abstract

Trauma to the pelvis is debilitating and often needs fixation intervention. In 58% of patients with this trauma, the injuries can lead to permanent disability, preventing the return to jobs. Of all unsuccessful fixation procedures, 42% are caused by failures of the method, sometimes due to mobilization during healing. Patients would benefit by havibridgetv@comcast.netng fixation hardware in place that enabled ambulation. During walking the bilateral hip joint plus leg and trunk muscle forces, including those from hip motion, can induce torsion into the pelvic ring and across the joint cartilages, and affect the internal stresses of the pelvis. For an accurate understanding, fixation that bridges the bilateral innominate bones needs to be evaluated considering all of these factors, and the affect on the stresses throughout the pelvic ring. Yet there is no bilateral, comprehensive method to do so in the literature. In this study a method was developed that incorporates all of the necessary factors in four bilateral, static, finite element models representing eight gait phases. The resulting stress migration through the full pelvic ring and pubic symphysis displacements were demonstrated under these conditions. In subsequent work, fixation improvements can be applied to these models to evaluate the change in internal stresses, joint displacements and deformations of the hardware, leading to a better quality of design and permitting ambulation during healing for the patient.

摘要

骨盆创伤会使人虚弱,通常需要进行固定干预。在 58%的此类创伤患者中,损伤可能导致永久性残疾,使他们无法重返工作岗位。所有不成功的固定手术中,有 42%是由于方法失败造成的,有时是由于愈合过程中的活动导致的。如果固定硬件能够使患者在行走时保持稳定,那么患者将从中受益。在行走过程中,双侧髋关节加上腿部和躯干肌肉的力量,包括髋关节运动产生的力量,可能会导致骨盆环扭曲以及关节软骨扭曲,并影响骨盆的内部应力。为了准确理解,需要考虑所有这些因素以及对整个骨盆环应力的影响,评估连接双侧髋骨的固定情况。然而,文献中没有一种双侧、全面的方法可以做到这一点。在这项研究中,开发了一种方法,该方法在四个双侧、静态、有限元模型中结合了所有必要的因素,这些模型代表了八个步态阶段。在这些条件下,演示了整个骨盆环和耻骨联合位移的应力迁移。在后续工作中,可以将固定改进应用于这些模型,以评估内部应力、关节位移和硬件变形的变化,从而提高设计质量,并允许患者在愈合过程中行走。

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