Three-Dimensional Pathology Specimen Modeling Using "Structure-From-Motion" Photogrammetry: A Powerful New Tool for Surgical Pathology.

* Context.--Three-dimensional (3D) photogrammetry is a method of image-based modeling in which data points in digital images, taken from offset viewpoints, are analyzed to generate a 3D model. This modeling technique has been widely used in the context of geomorphology and artificial imagery, but ha...

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Publicado en:Archives of Pathology & Laboratory Medicine Vol. 142; no. 11; pp. 1415 - 1421
Autores principales: Turchini, John, Buckland, Michael E., Gill, Anthony J., Battye, Shane
Formato: pictorial research Journal Article
Publicado: College of American Pathologists Nov2018
Acceso en línea:Ver este registro en EBSCOhost
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      dt: Nov2018
      vid: 142
      iid: 11
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      pub: College of American Pathologists
      place: Northfield, Illinois
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        atl: Three-Dimensional Pathology Specimen Modeling Using "Structure-From-Motion" Photogrammetry: A Powerful New Tool for Surgical Pathology.
      aug:
        au:
          Turchini, John
          Buckland, Michael E.
          Gill, Anthony J.
          Battye, Shane
        affil: Cancer Diagnosis and Pathology Group, Kolling Institute of Medical Research, Royal North Shore Hospital, Sydney, Australia
      sug:
        subj:
          Imaging, Three-Dimensional Utilization
          Photogrammetry Methods
          Specimen Handling
          Medical Practice
          Education, Medical
          Surgery, Operative
          Human
          Clinical Laboratories
          Automation
          Software
          Markup Languages
          Color
          Surgeons
          Museums
          Virtual Reality
          Printing, Three-Dimensional
      ab: * Context.--Three-dimensional (3D) photogrammetry is a method of image-based modeling in which data points in digital images, taken from offset viewpoints, are analyzed to generate a 3D model. This modeling technique has been widely used in the context of geomorphology and artificial imagery, but has yet to be used within the realm of anatomic pathology. Objective.--To describe the application of a 3D photogrammetry system capable of producing high-quality 3D digital models and its uses in routine surgical pathology practice as well as medical education. Design.--We modeled specimens received in the 2 participating laboratories. The capture and photogrammetry process was automated using user control software, a digital single-lens reflex camera, and digital turntable, to generate a 3D model with the output in a PDF file. Results.--The entity demonstrated in each specimen was well demarcated and easily identified. Adjacent normal tissue could also be easily distinguished. Colors were preserved. The concave shapes of any cystic structures or normal convex rounded structures were discernable. Surgically important regions were identifiable. Conclusions.--Macroscopic 3D modeling of specimens can be achieved through Structure-From-Motion photogrammetry technology and can be applied quickly and easily in routine laboratory practice. There are numerous advantages to the use of 3D photogrammetry in pathology, including improved clinicopathologic correlation for the surgeon and enhanced medical education, revolutionizing the digital pathology museum with virtual reality environments and 3D-printing specimen models.
      pubtype: Academic Journal
      doctype:
        pictorial
        research
        Journal Article
      ougenre: Article
    language: English
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