首页> 外文会议>Southern Biomedical Engineering Conference >Effects of Strap Options on Scoliosis Bracing Mechanics: An Application of the Scoliosis Analog Model
【24h】

Effects of Strap Options on Scoliosis Bracing Mechanics: An Application of the Scoliosis Analog Model

机译:带选项对脊柱侧凸支撑力学的影响:脊柱侧凸模拟模型的应用

获取原文

摘要

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.
机译:Thoracolumbar括号通常用于治疗青少年特发性脊柱侧凸(AIS)。通过施加矫正力来减少和预防脊柱曲线的进展,这些力受到在支架配件过程中进行的改变的影响。脊柱侧凸模拟模型(SAM),能够模拟高达40度脊柱校正的AIS条件的机械等同物,可以分析支架施加到括号的脊柱和结构性质的矫正力。该模型用于研究表带相关支架改变的影响。使用SAM和Biorobotic测试平台测试了波士顿括号。测试使用用于固定支撑括号的魔术件和扣带带的各种配置,并与无约束和刚性约束的配置进行比较。用于施加到模型和SAM角位移的力分量的测量用于计算支撑结构刚度特性。添加带类型的添加显着增加了相对于无约束支架配置的刚度值。用三个VELCRO肩带实现最佳支撑径向刚度,即通过添加第四表带而没有获得的显着刚度。对于带扣带的情况下,当加入更多的扣带带带时,不会发生显着的刚度增益。结构性质提供了一种比较支撑技术和更好地了解设计改变的手段。在每个配置之间的支架力响应和结构特性中存在可测量的差异。解释测量的力分量揭示了支架向脊柱向内和向上施加。

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