...
首页> 外文期刊>Medical engineering & physics. >Combining 3D tracking and surgical instrumentation to determine the stiffness of spinal motion segments: a validation study.
【24h】

Combining 3D tracking and surgical instrumentation to determine the stiffness of spinal motion segments: a validation study.

机译:结合3D跟踪和手术器械来确定脊柱运动节段的刚度:一项验证研究。

获取原文
获取原文并翻译 | 示例
           

摘要

The spine is a complex structure that provides motion in three directions: flexion and extension, lateral bending and axial rotation. So far, the investigation of the mechanical and kinematic behavior of the basic unit of the spine, a motion segment, is predominantly a domain of in vitro experiments on spinal loading simulators. Most existing approaches to measure spinal stiffness intraoperatively in an in vivo environment use a distractor. However, these concepts usually assume a planar loading and motion. The objective of our study was to develop and validate an apparatus, that allows to perform intraoperative in vivo measurements to determine both the applied force and the resulting motion in three dimensional space. The proposed setup combines force measurement with an instrumented distractor and motion tracking with an optoelectronic system. As the orientation of the applied force and the three dimensional motion is known, not only force-displacement, but also moment-angle relations could be determined. The validation was performed using three cadaveric lumbar ovine spines. The lateral bending stiffness of two motion segments per specimen was determined with the proposed concept and compared with the stiffness acquired on a spinal loading simulator which was considered to be gold standard. The mean values of the stiffness computed with the proposed concept were within a range of +/-15% compared to data obtained with the spinal loading simulator under applied loads of less than 5 Nm.
机译:脊柱是一个复杂的结构,可在三个方向上提供运动:屈曲和伸展,横向弯曲和轴向旋转。到目前为止,对脊柱基本单元(运动部分)的力学和运动学行为的研究主要是在脊柱负荷模拟器上进行的体外实验领域。在体内环境中术中测量脊柱僵硬的大多数现有方法都使用撑开器。但是,这些概念通常假定为平面载荷和运动。我们研究的目的是开发和验证一种设备,该设备可以进行术中体内测量,以确定施加的力和在三维空间中产生的运动。拟议的设置将力测量与仪器牵引器和运动跟踪与光电系统结合在一起。由于已知作用力的方向和三维运动,因此不仅可以确定力-位移,而且可以确定弯矩角关系。使用三个尸体腰椎棘进行验证。通过提出的概念确定每个样本两个运动段的横向弯曲刚度,并将其与在被认为是金标准的脊柱负荷模拟器上获得的刚度进行比较。与通过脊椎负荷模拟器在小于5 Nm的负荷下获得的数据相比,通过提出的概念计算的刚度平均值在+/- 15%的范围内。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号