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Adaptation of a clinical fixation device for biomechanical testing of the lumbar spine

机译:适应腰椎生物力学检测的临床固定装置

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In-vitro biomechanical testing is widely performed for characterizing the load-displacement characteristics of intact, injured, degenerated, and surgically repaired osteoligamentous spine specimens. Traditional specimen fixture devices offer an unspecified rigidity of fixation, while varying in the associated amounts and reversibility of damage to and "coverage" of a specimen - factors that can limit surgical access to structures of interest during testing as well as preclude the possibility of testing certain segments of a specimen. Therefore, the objective of this study was to develop a specimen fixture system for spine biomechanical testing that uses components of clinically available spinal fixation hardware and determine whether the new system provides sufficient rigidity for spine biomechanical testing. Custom testing blocks were mounted into a robotic testing system and the angular deflection of the upper fixture was measured indirectly using linear variable differential transformers. The fixture system had an overall stiffness 37.0, 16.7 and 13.3 times greater than a typical human functional spine unit for the flexion/extension, axial rotation and lateral bending directions respectively - sufficient rigidity for biomechanical testing. Fixture motion when mounted to a lumbar spine specimen revealed average motion of 0.6, 0.6, and 1.5 degrees in each direction. This specimen fixture method causes only minimal damage to a specimen, permits testing of all levels of a specimen, and provides for surgical access during testing. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在体外生物力学测试中广泛进行,用于表征完整,受伤,退化和手术修复的骨粒性脊柱标本的负载 - 位移特征。传统的标本夹具装置提供了一个未指明的固定刚度,同时改变了损坏的损坏和“覆盖”的相关量和可逆性,并“覆盖”因子可能限制测试期间对感兴趣的结构的因素以及妨碍测试的可能性某些标本的细分。因此,本研究的目的是开发一种用于脊柱生物力学测试的标本夹具系统,其使用临床可用脊柱固定硬件的组件,并确定新系统是否为脊柱生物力学测试提供足够的刚性。将自定义测试块安装到机器人测试系统中,并且使用线性可变差压变压器间接测量上固定装置的角度偏转。夹具系统的总刚度37.0,16.7和13.3倍,用于屈曲/延伸,轴向旋转和横向弯曲方向的典型人类功能脊柱单元 - 用于生物力学测试的足够刚度。安装到腰椎标本时夹具运动显示在每个方向上的平均运动为0.6,0.6和1.5度。该样本夹具方法仅对样品造成最小的损坏,允许测试所有级别的样本,并在测试期间提供手术通道。 (c)2018年elestvier有限公司保留所有权利。

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