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Updated: May 30, 2025

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Digital Planimetry for Assessing Wound Closure Kinetics in a Mouse Model
Published on: January 10, 2025
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Digital Planimetry for Assessing Wound Closure Kinetics in a Mouse Model
Angel E Bárcenas-García1, Miriam V Flores-Merino2, Erika Patricia Azorín-Vega3
1Faculty of Medicine, Autonomous University of the State of Mexico.
Journal of Visualized Experiments : Jove
|January 29, 2025
Summary
This study developed a standardized digital planimetry method for accurate chronic wound assessment. The new technique ensures reliable, reproducible measurements of wound healing in pre-clinical models.
Area of Science:
- Wound healing research
- Biomedical engineering
- Pre-clinical research methodology
Background:
- Chronic wounds pose a significant global health challenge.
- Current wound assessment methods often lack standardization and precision.
- There is a need for reliable quantitative methods to track wound healing kinetics.
Purpose of the Study:
- To standardize an indirect wound measurement technique using digital planimetry.
- To incorporate digital scaling and segmentation for precise wound assessment.
- To establish a reliable and reproducible method for evaluating wound closure in pre-clinical settings.
Main Methods:
- Designed and constructed a custom photodocumentation booth for controlled imaging.
- Utilized computer-assisted digital planimetry with ImageJ software for measurements.
- Created standardized circular traumatic wounds in CD1 mice for evaluation over 14 days.
Main Results:
- The developed method minimized variability in wound area, perimeter, and edge distance measurements.
- Wound closure kinetics were accurately tracked, showing initial slight expansion followed by gradual closure by day 14.
- The photodocumentation booth ensured consistent lighting, focal distance, and positioning.
Conclusions:
- The combination of a custom photodocumentation booth and digital planimetry offers a reliable and reproducible approach.
- This standardized indirect measurement method is suitable for evaluating wound healing in pre-clinical models.
- The technique enhances the accuracy and consistency of wound assessment in research settings.

