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Stiffness properties of the human lumbar spine: a lumped parameter model.

机译:人体腰椎的刚度特性:集总参数模型。

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OBJECTIVE: To characterise with a mechanical model, the force-displacement response of the human lumbar spine to postero-anterior loading. DESIGN: Single case with repetition. BACKGROUND: Previous attempts to characterise the spine's force-displacement response have been simplistic and only considered the loading curve. These approaches ignored valuable information such as viscosity, non-linear elasticity and inertia of the lumbar spine. METHODS: The Spinal Assessment Machine applied a postero-anterior load to the spines of 23 asymptomatic subjects and measured the force-displacement response. The data was analysed by two methods; by a traditional linear regression of part of the loading curve and by a new method where an equation including non-linear stiffness and damping was used to characterise the whole force-displacement relationship. RESULTS: The equation developed was found to account for virtually all of the variance in the raw data (R2 > 0.993). Four elements derived by the equation determine the contributions of linear elasticity, non-linear elasticity, linear viscosity and non-linear viscosity to the overall stiffness. CONCLUSIONS: Considering the excellent fit of the new equation to the raw data and its poor correlation with existing measures, it is proposed that the traditional measures provide an incomplete description of the force-displacement response. Relevance. Therapists use their perception of the force-displacement response of the spine to select the type of manipulative treatment to apply. To study this aspect of patient care, devices capable of measuring spinal stiffness have been developed, however to date the obtained data has been analysed only simply. A lumped parameter mechanical model incorporating non-linear damping and stiffness provides a more complete description of the force-displacement response and thus may offer added insight into the manipulative treatment of spinal pain.
机译:目的:通过力学模型表征人腰椎对后前路力的位移反应。设计:单盒重复。背景:先前描述脊柱的力-位移响应的尝试非常简单,仅考虑了载荷曲线。这些方法忽略了有价值的信息,例如粘度,非线性弹性和腰椎惯性。方法:脊柱评估机对23例无症状受试者的脊柱施加后前部载荷,并测量力-位移反应。通过两种方法分析数据;通过部分载荷曲线的传统线性回归和一种新方法,其中使用包括非线性刚度和阻尼的方程式来描述整个力-位移关系。结果:发现开发的方程式几乎可以解释原始数据中的所有方差(R2> 0.993)。由方程式导出的四个元素确定线性弹性,非线性弹性,线性粘度和非线性粘度对整体刚度的贡献。结论:考虑到新方程与原始数据的极佳拟合以及与现有度量的较弱相关性,建议传统度量不能提供对力-位移响应的完整描述。关联。治疗师使用他们对脊柱的力位移反应的感知来选择要应用的手法治疗类型。为了研究患者护理的这一方面,已经开发了能够测量脊柱刚度的装置,但是迄今为止,仅对获得的数据进行了简单的分析。结合了非线性阻尼和刚度的集总参数力学模型提供了对力-位移响应的更完整描述,因此可以为脊柱疼痛的操纵性治疗提供更多的见识。

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