MITK diffusion imaging.

Background: Diffusion-MRI provides a unique window on brain anatomy and insights into aspects of tissue structure in living humans that could not be studied previously. There is a major effort in this rapidly evolving field of research to develop the algorithmic tools necessary to cope with the comp...

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Publicado en:Methods of Information in Medicine Vol. 51; no. 5; pp. 441 - 449
Autores principales: Fritzsche KH, Neher PF, Reicht I, van Bruggen T, Goch C, Reisert M, Nolden M, Zelzer S, Meinzer HP, Stieltjes B, Fritzsche, K H, Neher, P F, Reicht, I, van Bruggen, T, Goch, C, Reisert, M, Nolden, M, Zelzer, S, Meinzer, H-P, Stieltjes, B
Formato: Journal Article
Publicado: Thieme Medical Publishing Inc. 2012
Acceso en línea:Ver este registro en EBSCOhost
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      dt: 2012
      vid: 51
      iid: 5
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      pub: Thieme Medical Publishing Inc.
      place: New York, New York
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        108072170
        NLM23038239
        2011711532
        10.3414/ME11-02-0031
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        atl: MITK diffusion imaging.
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        au:
          Fritzsche KH
          Neher PF
          Reicht I
          van Bruggen T
          Goch C
          Reisert M
          Nolden M
          Zelzer S
          Meinzer HP
          Stieltjes B
          Fritzsche, K H
          Neher, P F
          Reicht, I
          van Bruggen, T
          Goch, C
          Reisert, M
          Nolden, M
          Zelzer, S
          Meinzer, H-P
          Stieltjes, B
        affil: German Cancer Research Centre, E 130 - Division of Medical and Biological Informatics, Im Neuenheimer Feld 280, 69120 Heidelberg, Germany
      sug:
        subj:
          Brain Anatomy and Histology
          Magnetic Resonance Imaging Methods
          Image Interpretation, Computer Assisted Methods
          Algorithms
          Image Interpretation, Computer Assisted Standards
          Software
      ab: Background: Diffusion-MRI provides a unique window on brain anatomy and insights into aspects of tissue structure in living humans that could not be studied previously. There is a major effort in this rapidly evolving field of research to develop the algorithmic tools necessary to cope with the complexity of the datasets.Objectives: This work illustrates our strategy that encompasses the development of a modularized and open software tool for data processing, visualization and interactive exploration in diffusion imaging research and aims at reinforcing sustainable evaluation and progress in the field.Methods: In this paper, the usability and capabilities of a new application and toolkit component of the Medical Imaging and Interaction Toolkit (MITK, www.mitk.org), MITK-DI, are demonstrated using in-vivo datasets.Results: MITK-DI provides a comprehensive software framework for high-performance data processing, analysis and interactive data exploration, which is designed in a modular, extensible fashion (using CTK) and in adherence to widely accepted coding standards (e.g. ITK, VTK). MITK-DI is available both as an open source software development toolkit and as a ready-to-use installable application.Conclusions: The open source release of the modular MITK-DI tools will increase verifiability and comparability within the research community and will also be an important step towards bringing many of the current techniques towards clinical application.
      pubtype: Academic Journal
      doctype: Journal Article
      ougenre: Article
    language: English
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