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January 16, 2009IEEE Transactions on Medical Imaging89 citations

Three-Dimensional Assessment of Skin Wounds Using a Standard Digital Camera

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STSylvie TreuilletBAB. AlbouyYLYves Lucas

Key Points

  • This study aims to develop a low-cost solution for 3-D modeling of skin wounds using standard digital cameras.
  • Utilized uncalibrated images from a handheld digital camera to construct 3-D models of skin wounds.
  • Employed an iterative matching scheme for dense surface geometry estimation from two separated views.
  • Achieved automated 3-D reconstruction with self-calibration and validated accuracy against ground truth.
  • Achieved global precision of around 3%, which is within the clinical accuracy requirement of 5%.
  • Demonstrated accurate volumetric measurements from 3-D models of skin wounds.
  • Developed a user-friendly imaging system for widespread application in healthcare settings.

Abstract

In this paper, after an overview of the literature concerning the imaging technologies applied to skin wounds assessment, we present an original approach to build 3-D models of skin wounds from color images. The method can deal with uncalibrated images acquired with a handheld digital camera with free zooming. Compared with the cumbersome imaging systems already proposed, this novel solution uses a low-cost and user-friendly image acquisition device suitable for widespread application in health care centers. However, this method entails the development of a robust image processing chain. An original iterative matching scheme is used to generate a dense estimation of the surface geometry from two widely separated views. The best configuration for taking photographs lies between 15 ( degrees ) and 30 ( degrees ) for the vergency angle. The metric reconstruction of the skin wound is fully automated through self-calibration. From the 3-D model of the skin wound, accurate volumetric measurements are achieved. The accuracy of the inferred 3-D surface is validated by registration to a ground truth and repetitive tests on volume. The global precision around 3% is in accordance with the clinical requirement of 5% for assessing the healing process.

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Cite This Study

Treuillet et al. (2009) studied this question.

synapsesocial.com/papers/6a2f6d9a74477a65ff2ce432https://doi.org/10.1109/tmi.2008.2012025
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