The aim of the study is to evaluate the intra- and inter-rater variability of wound measurements using the 3D camera and to compare with standard measurement methods (2D image method and gel injection). Forty-eight patients with wounds of various sizes are measured by four clinicians. Each wound is measured twice with the 3D camera, once by 2D image method and once by gel injection into wound cavity by two clinicians.
Diabetic foot ulcers constitute an increasing health problem in Denmark concurrent with an ageing population and an increase in diabetes prevalence. Diabetic foot ulcers belong to the most serious and costly complications. Several studies have found that the size and depth of the wound is one of the major etiologic factors for delayed healing. Wound measurement is important in monitoring the healing process of wound and in evaluating the effect of treatment. Three-dimensional methods for measuring wound size have made it possible to evaluate the process of wound healing with respect to all dimensions. The investigators have developed a 3D camera, which is able to measure wound size (2D area, 3D area, perimeter and volume) and to assess wound characteristics. The aim of the study is to evaluate the intra- and inter-rater variability of wound measurements using the 3D camera and to compare with standard measurement methods (2D image method and gel injection). Forty-eight patients with wounds of various sizes are measured by four clinicians. Each wound is measured twice with the 3D camera, once by 2D image method and once by gel injection into wound cavity by two clinicians.
Study Type
OBSERVATIONAL
Enrollment
48
University Centre of Wound Healing, Odense University Hospital (OUH)
Odense, Denmark
Wound 2D area
Measured by 3D camera and 2D image method
Time frame: 1 day
Wound 3D area
Measured by 3D camera
Time frame: 1 day
Wound perimeter
Measured by 3D camera
Time frame: 1 day
Wound volume
Measured by 3D camera
Time frame: 1 day
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