绑带选择对脊柱侧凸支撑力学的影响:脊柱侧凸模拟模型的应用

C. Chung, D. Kelly, Jack R Steele, D. DiAngelo
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引用次数: 1

摘要

只提供摘要形式。胸腰椎支架通常用于治疗青少年特发性脊柱侧凸(AIS)。支架通过施加矫正力来减少和防止脊柱弯曲的进展,矫正力在支架安装过程中受到改变的影响。脊柱侧凸模拟模型(SAM)是AIS条件的机械等效,能够模拟高达40度的脊柱矫正,可以分析支架对脊柱施加的矫正力和支架的结构特性。该模型用于研究带相关支撑改变的影响。使用SAM和生物机器人测试平台对波士顿支架进行测试。测试了用于紧固支撑的各种配置的尼龙搭扣和扣带,并将其与无约束和刚性约束配置进行了比较。通过测量施加在模型上的力分量和SAM角位移来计算支撑结构的刚度特性。与无约束支撑配置相比,添加任何一种带型都显著增加了刚度值。采用三根维可牢绑带可获得最佳的支撑径向刚度,即增加第四根绑带不会获得显著的刚度。对于扣带的情况下,没有显著的刚度增益发生时,更多的扣带添加。结构特性提供了一种比较支撑技术和更好地理解设计变更的方法。每种构型之间的支撑力响应和结构性能存在可测量的差异。对测得的力分量的解释揭示了支撑向内和向上施加到脊柱上的力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of Strap Options on Scoliosis Bracing Mechanics: An Application of the Scoliosis Analog Model
Summary form only given. Thoracolumbar braces are commonly used to treat Adolescent Idiopathic Scoliosis (AIS). Braces serve to reduce and prevent progression of the spinal curve by applying corrective forces, which are affected by alterations made during the brace fitting process. The Scoliosis Analog Model (SAM), a mechanical equivalent of the AIS condition capable of simulating up to 40 degrees of spinal correction, enables analysis of corrective forces applied by the brace to the spine and structural properties of the brace. This model was used to investigate the effects of strap-related brace alterations. A Boston brace was tested using the SAM and biorobotic testing platform. Various configurations of Velcro and buckle straps used to fasten the brace were tested and compared to unconstrained and rigidly-constrained configurations. Measurements of the force components applied to the model and SAM angular displacement were used to calculate brace structural stiffness properties. Addition of either strap type significantly increased the stiffness values relative to the unconstrained brace configuration. An optimal brace radial stiffness was achieved with three Velcro straps, i.e., there was no significant stiffness gained by adding a fourth strap. For the case of the buckle straps, no significant stiffness gain occurred when more buckle straps were added. Structural properties provide a means to compare bracing technology and better understand design alterations. A measurable difference exists in brace force response and structural properties between each configuration. Interpretation of the measured force components revealed that the brace applied inward and upward forces to the spine.
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