...
首页> 外文期刊>Gait & posture >A linear soft tissue artefact model for human movement analysis: Proof of concept using in vivo data
【24h】

A linear soft tissue artefact model for human movement analysis: Proof of concept using in vivo data

机译:用于人体运动分析的线性软组织假象模型:使用体内数据的概念验证

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

We investigated the accuracy of a linear soft tissue artefact (STA) model in human movement analysis. Simultaneously recorded bone-mounted pin and skin marker data for the thigh and shank during walking, cutting and hopping were used to measure and model the motion of the skin marker clusters within anatomical reference frames (ARFs). This linear model allows skin marker movements relative to the underlying bone contrary to a rigid-body assumption. The linear model parameters were computed through a principal component analysis, which revealed that 95% of the variance of the STA motion for the thigh was contained in the first four principal components for all three tasks and all subjects. For the shank, 95% of the variance was contained in the first four principal components during walking and cutting and first five during hopping. For the thigh, the maximum residual artefact was reduced from 27.0. mm to 5.1. mm (walking), 22.7. mm to 3.0. mm (cutting) and 16.2. mm to 3.5. mm (hopping) compared to a rigid-body assumption. Similar reductions were observed for the shank: 24.2. mm to 1.9. mm (walking), 20.3. mm to 1.9. mm (cutting) and 14.7. mm to 1.8. mm (hopping). A geometric analysis of the first four principal components revealed that, within the ARFs, marker cluster STA is governed by rigid-body translations and rotations rather than deformations. The challenge remains, however, in finding the linear model parameters without bone pin data, but this investigation shows that relatively few parameters in a linear model are required to model the vast majority of the STA movements.
机译:我们调查了人体运动分析中线性软组织伪影(STA)模型的准确性。同时记录步行,切割和跳跃过程中大腿和小腿的骨骼固定销和皮肤标记数据,以测量和建模解剖参考框架(ARF)中皮肤标记簇的运动。该线性模型允许皮肤标记相对于基础骨骼的运动,与刚体假设相反。通过主成分分析计算线性模型参数,结果表明大腿STA运动的变化的95%包含在所有三个任务和所有受试者的前四个主要成分中。对于小腿,在行走和切割过程中的前四个主要成分以及在跳跃过程中的前五个主要成分中包含95%的方差。对于大腿,最大残留假象从27.0降低。毫米至5.1。毫米(行走),22.7。毫米至3.0。毫米(切割)和16.2。毫米至3.5。 mm(跳变)与刚体假设的比较。对于小腿观察到类似的减少:24.2。毫米至1.9。毫米(行走),20.3。毫米至1.9。毫米(切割)和14.7。毫米至1.8。毫米(跳变)。对前四个主要成分的几何分析表明,在ARF中,标记簇STA由刚体平移和旋转而不是变形控制。然而,在没有骨钉数据的情况下找到线性模型参数仍然是一个挑战,但是这项研究表明,线性模型中需要相对较少的参数来建模绝大多数STA运动。

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