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  • Author(s):
    Yide Zhang
    Abstract:

    In cancer and all biomedical researches, we always need a microscope with better imaging precision, speed, functionality, and depth, so that the diagnostics and treatments of cancer and other diseases can be accurate, fast, and noninvasive. However, conventional fluorescence microscopes cannot satisfy these needs due to physical limits on resolution, speed, information, and depth. In this work, we aim to overcome these limits using novel super-resolution microscopy and high-speed quantitative…

    Date Created:
    2018-04-09
    Record Visibility:
    Public
    Resource Type
    Presentation
  • Author(s):
    Yide Zhang, Scott S. Howard, Cody J. Smith
    Abstract:

    Super-resolution microscopy is broadening our in-depth understanding of cellular structure. However, super-resolution approaches are limited, for numerous reasons, from utilization in longer-term intravital imaging. We devised a combinatorial imaging technique that combines deconvolution with stepwise optical saturation microscopy (DeSOS) to circumvent this issue and image cells in their native physiological environment. Other than a traditional confocal or two-photon microscope, this approac…

    Date Created:
    2019-01-09
    Record Visibility:
    Public
    Resource Type
    Software
  • 3

    Dataset

    Creator(s):
    Haiyan Meng
    Description:

    The document includes all the necessary artifacts to reproduce a CMS application.

    Date Created:
    2016-03-01
    Record Visibility:
    Public
  • Author(s):
    Peter Ivie, Anna Woodard, Matthias Wolf, Douglas Thain, Kevin Lannon, Michael Hildreth, Rob Gardner
    Abstract:

    The DASPOS project is an NSF-funded collaborative research project designed to explore the technical means of preserving the data and software components necessary to reproduce and build upon published scientific results. This technical report series consists of short reports that outline background, case studies, and technical results related to data preservation, with a focus on high energy physics.

    Record Visibility:
    Public