Bonner Tara F, Colbrunn Robb W, Bottros John J, Mutnal Amar B, Greeson Clay B, Klika Alison K, van den Bogert Antonie J, Barsoum Wael K
J Biomech Eng. 2015 Jun;137(6):061012. doi: 10.1115/1.4030012. Epub 2015 Apr 23.
The acetabular labrum provides mechanical stability to the hip joint in extreme positions where the femoral head is disposed to subluxation. We aimed to quantify the isolated labrum's stabilizing value. Five human cadaveric hips were mounted to a robotic manipulator, and subluxation potential tests were run with and without labrum. Three-dimensional (3D) kinematic data were quantified using the stability index (Colbrunn et al., 2013, "Impingement and Stability of Total Hip Arthroplasty Versus Femoral Head Resurfacing Using a Cadaveric Robotics Model," J. Orthop. Res., 31(7), pp. 1108-1115). Global and regional stability indices were significantly greater with labrum intact than after total labrectomy for both anterior and posterior provocative positions. In extreme positions, the labrum imparts significant overall mechanical resistance to hip subluxation. Regional stability contributions vary with joint orientation.
髋臼盂唇在股骨头易发生半脱位的极端位置为髋关节提供机械稳定性。我们旨在量化孤立盂唇的稳定价值。将五具人类尸体髋关节安装到机器人操纵器上,在有和没有盂唇的情况下进行半脱位潜能测试。使用稳定性指数对三维(3D)运动学数据进行量化(科尔布伦等人,2013年,“使用尸体机器人模型比较全髋关节置换术与股骨头表面置换术的撞击与稳定性”,《矫形外科学研究杂志》,第31卷第7期,第1108 - 1115页)。对于前后激发位置,完整盂唇时的整体和区域稳定性指数显著高于完全切除盂唇后。在极端位置,盂唇对髋关节半脱位具有显著的整体机械阻力。区域稳定性贡献随关节方向而变化。