• Title of article

    Semisupervised learning of hierarchical latent trait models for data visualization

  • Author/Authors

    Y.، Sun, نويسنده , , I.T.، Nabney, نويسنده , , P.، Tino, نويسنده , , A.، Kaban, نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2005
  • Pages
    -383
  • From page
    384
  • To page
    0
  • Abstract
    Recently, we have developed the hierarchical generative topographic mapping (HGTM), an interactive method for visualization of large high-dimensional real-valued data sets. We propose a more general visualization system by extending HGTM in three ways, which allows the user to visualize a wider range of data sets and better support the model development process. 1) We integrate HGTM with noise models from the exponential family of distributions. The basic building block is the latent trait model (LTM). This enables us to visualize data of inherently discrete nature, e.g., collections of documents, in a hierarchical manner. 2) We give the user a choice of initializing the child plots of the current plot in either interactive, or automatic mode. In the interactive mode, the user selects "regions of interest", whereas in the automatic mode, an unsupervised minimum message length (MML)-inspired construction of a mixture of LTMs is employed. The unsupervised construction is particularly useful when high-level plots are covered with dense clusters of highly overlapping data projections, making it difficult to use the interactive mode. Such a situation often arises when visualizing large data sets. 3) We derive general formulas for magnification factors in latent trait models. Magnification factors are a useful tool to improve our understanding of the visualization plots, since they can highlight the boundaries between data clusters. We illustrate our approach on a toy example and evaluate it on three more complex real data sets.
  • Keywords
    Abdominal obesity , Prospective study , Food patterns , waist circumference
  • Journal title
    IEEE Transactions on Knowledge and Data Engineering
  • Serial Year
    2005
  • Journal title
    IEEE Transactions on Knowledge and Data Engineering
  • Record number

    100656