首页> 外文会议>ASME summer bioengineering conference;SBC2012 >COMBINATIONS OF BIOMECHANICAL METRICS INVOLVING SINGLE AND MULTI LEVEL LUMBAR POSTERIOR DYNAMIC SPINAL TREATMENTS
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COMBINATIONS OF BIOMECHANICAL METRICS INVOLVING SINGLE AND MULTI LEVEL LUMBAR POSTERIOR DYNAMIC SPINAL TREATMENTS

机译:涉及单级和多级腰椎后路动力性脊柱治疗的生物力学指标的组合

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The subtle effects of motion preservation devices are comparatively more difficult to detect based wholly on the range of motion (RoM) parameter, despite the historical success in characterizing fixation devices. Additional approaches such as descriptive facet techniques, i.e., facet translations analysis, and newly defined metrics, i.e., interpedicular displacement (ID) must first be established, verified and standardized. Ideally, more complete biomechanical parameters would facilitate clinical understanding of specific new devices. The recent focus in our lab has been to measure the RoM in conjunction with other parameters, including ID, to more completely characterize a lumbar spine treated with a posterior dynamic systems (PDS). Furthermore, understanding the construct and which components dominate overall tissue response is important for PDS systems.
机译:尽管在表征固定设备方面取得了历史性的成功,但相对于仅基于运动范围(RoM)参数,很难检测出运动保存设备的微妙效果。必须首先建立,验证和标准化其他方法,例如描述性方面技术(即方面翻译分析)和新定义的指标(即椎弓根位移(ID))。理想地,更完整的生物力学参数将有助于对特定新设备的临床理解。我们实验室最近的重点是结合其他参数(包括ID)测量RoM,以更完整地表征采用后动态系统(PDS)治疗的腰椎。此外,对于PDS系统而言,了解构造及其主导整个组织反应的成分很重要。

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