High resolution 4-dimension imaging of metanephric embryonic kidney morphogenesis.

High-resolution three-dimensional imaging of fixed embryonic kidney tissues has advanced considerably in the past decade. Here we developed a new process for imaging whole metanephric organ culture at cell resolution in three dimensions over time. This technique combines the use of the newly availab...

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Published in:Kidney International Vol. 83; no. 4; pp. 757 - 762
Main Authors: Clendenon, Sherry G, Ward, Heather H, Dunn, Kenneth W, Bacallao, Robert
Format: Journal Article
Published: Elsevier B.V. Apr2013
Online Access:View this record in EBSCOhost
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      dt: Apr2013
      vid: 83
      iid: 4
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      pub: Elsevier B.V.
      place: Philadelphia, Pennsylvania
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        atl: High resolution 4-dimension imaging of metanephric embryonic kidney morphogenesis.
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        au:
          Clendenon, Sherry G
          Ward, Heather H
          Dunn, Kenneth W
          Bacallao, Robert
        affil: 1] Department of Physics, Biocomplexity Institute, Indiana University, Bloomington, Indiana, USA [2] Division of Nephrology, Department of Medicine, Indiana University School of Medicine, Indianapolis, Indiana, USA.
      sug:
        subj:
          Diagnostic Imaging
          Kidney Embryology
          Microscopy Equipment and Supplies
          Animals
          Boron Compounds Metabolism
          Lipids Metabolism
          Equipment Design
          Fluorescent Dyes Metabolism
          Gestational Age
          Image Processing, Computer Assisted
          Kidney Metabolism
          Mice
          Morphogenesis
          Tissue Culture Techniques
          Time Factors
      ab: High-resolution three-dimensional imaging of fixed embryonic kidney tissues has advanced considerably in the past decade. Here we developed a new process for imaging whole metanephric organ culture at cell resolution in three dimensions over time. This technique combines the use of the newly available generation of infrared-optimized long working distance, high numerical aperture objectives and multiphoton fluorescence microscopy with a new system for vital staining of metanephric organ cultures with bodipy ceramide. This allows all cells in the organ culture to be visualized over time, enabling detailed observation of tissue morphogenesis. Thus, our method offers a powerful new approach for visualizing and understanding early events in renal development and for extending observations made in genetically manipulated models.
      pubtype: Academic Journal
      doctype: Journal Article
      ougenre: Article
    language: English
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