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足底压力图像序列的时空配准。

Spatio-temporal alignment of pedobarographic image sequences.

机构信息

Faculdade de Engenharia da Universidade do Porto (FEUP)/Instituto de Engenharia Mecânica e Gestão Industrial (INEGI), Rua Dr. Roberto Frias, 4200-465, Porto, Portugal.

出版信息

Med Biol Eng Comput. 2011 Jul;49(7):843-50. doi: 10.1007/s11517-011-0771-x. Epub 2011 Apr 8.

Abstract

This article presents a methodology to align plantar pressure image sequences simultaneously in time and space. The spatial position and orientation of a foot in a sequence are changed to match the foot represented in a second sequence. Simultaneously with the spatial alignment, the temporal scale of the first sequence is transformed with the aim of synchronizing the two input footsteps. Consequently, the spatial correspondence of the foot regions along the sequences as well as the temporal synchronizing is automatically attained, making the study easier and more straightforward. In terms of spatial alignment, the methodology can use one of four possible geometric transformation models: rigid, similarity, affine, or projective. In the temporal alignment, a polynomial transformation up to the 4th degree can be adopted in order to model linear and curved time behaviors. Suitable geometric and temporal transformations are found by minimizing the mean squared error (MSE) between the input sequences. The methodology was tested on a set of real image sequences acquired from a common pedobarographic device. When used in experimental cases generated by applying geometric and temporal control transformations, the methodology revealed high accuracy. In addition, the intra-subject alignment tests from real plantar pressure image sequences showed that the curved temporal models produced better MSE results (P < 0.001) than the linear temporal model. This article represents an important step forward in the alignment of pedobarographic image data, since previous methods can only be applied on static images.

摘要

本文提出了一种同时对足底压力图像序列进行时空配准的方法。通过改变序列中脚的空间位置和方向,将其与第二序列中代表的脚匹配。在进行空间配准的同时,还会转换第一序列的时间尺度,以实现两个输入脚步的同步。这样,就可以自动获得序列中脚区域的空间对应关系以及时间同步,从而使研究更加简单和直接。在空间配准方面,该方法可以使用四种可能的几何变换模型之一:刚体、相似、仿射或透视。在时间配准中,可以采用最高 4 次多项式变换来模拟线性和曲线时间行为。通过最小化输入序列之间的均方误差(MSE)来找到合适的几何和时间变换。该方法在一组从常见足底压力设备获取的真实图像序列上进行了测试。当应用于通过应用几何和时间控制变换生成的实验案例时,该方法显示出了很高的准确性。此外,来自真实足底压力图像序列的受试者内配准测试表明,曲线时间模型比线性时间模型产生更好的 MSE 结果(P<0.001)。这篇文章代表了足底压力图像数据配准方面的重要进展,因为以前的方法只能应用于静态图像。

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