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Investigating intraoperative joint capsule using a pressure sensor tensor in posterior stabilized TKA

机译:在后路稳定的TKA中使用压力传感器张量调查术中关节囊

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Knowledge of the biomechanical behavior of the knee prosthesis can have an important influence on balance, stabilization and lifetime of total knee prosthesis. A ligament tensioning device with pressure sensor was used to measure the torque versus rotation between the tibia and femur during total knee arthroplasties. The measurements were performed with the knee flexed, after balance in extension. We followed the testing of a mathematical model description, evaluation of the force / torque accumulated in the capsular ligament structures during balancing and at 5 ° of knee deviation. Statistical tests have validated the model. The force balance was influenced by the inclination of the tibial surface, the extension deficit, the size of the tibial plateau, the deviation of HKA axis and slice thickness of tibial osteotomy. These data help to establish the force necessary for joint replacement. They demonstrate that the force required during prosthesis balancing is determined by many factors and thus it''s incalculable preoperatively. This requires the use of devices that indicate equilibration intraoperatively.
机译:膝关节假体的生物力学行为的知识可能对全膝关节假体的平衡,稳定性和寿命产生重要影响。使用带压力传感器的韧带张紧装置来测量在全膝关节置换术期间胫骨和股骨之间的扭矩与旋转之间的关系。伸展平衡后,屈膝进行测量。我们进行了数学模型描述的测试,评估了在平衡过程中以及在膝部偏离5°时,在韧带结构中积累的力/扭矩。统计测试已经验证了该模型。力平衡受胫骨表面倾斜度,伸展缺损,胫骨平台的大小,HKA轴的偏差和胫骨截骨的切片厚度的影响。这些数据有助于建立关节置换所需的力。他们证明,假体平衡所需的力是由许多因素决定的,因此术前无法估计。这需要使用在术中指示平衡的装置。

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