Related Experiment Video
Updated: Dec 13, 2025

11:35
Dual-mode Imaging of Cutaneous Tissue Oxygenation and Vascular Function
Published on: December 8, 2010
16.8K
Physiological wound assessment from coregistered and segmented tissue hemoglobin maps
Summary
A new scanner accurately maps hemoglobin changes in diabetic foot ulcers (DFUs). This technology shows potential for predicting wound healing progress by analyzing hemoglobin concentration over time.
Area of Science:
- Biomedical optics
- Medical imaging
- Wound care technology
Background:
- Diabetic foot ulcers (DFUs) pose a significant clinical challenge.
- Monitoring tissue oxygenation is crucial for assessing DFU healing.
- Existing methods for monitoring DFU hemoglobin levels can be invasive or lack precision.
Purpose of the Study:
- To evaluate a novel handheld near-infrared optical scanner (NIROS) for mapping oxy- and deoxyhemoglobin concentration changes in DFUs.
- To develop and validate a coregistration and image segmentation method for overlaying hemoglobin data onto standard wound images.
- To explore the potential of this technique in predicting DFU healing trajectories.
Main Methods:
- Development of a handheld near-infrared optical scanner (NIROS).
- Implementation of a coregistration and image segmentation approach to integrate hemoglobin maps with white light ulcer images.
- Validation of the coregistration accuracy (achieving >97%).
- Application of the method to track hemoglobin changes in a healing DFU over several weeks.
Main Results:
- The coregistration and image segmentation approach demonstrated high accuracy (>97%).
- Hemoglobin concentration maps were successfully overlaid onto white light images of DFUs.
- Observed correlations between changes in hemoglobin concentration area maps and visual wound area suggest predictive potential for healing.
- The NIROS system enabled longitudinal monitoring of hemoglobin dynamics during DFU treatment.
Conclusions:
- The developed coregistration and image segmentation technique accurately integrates hemoglobin data into wound assessment.
- Handheld NIROS shows promise as a non-invasive tool for monitoring DFU hemoglobin levels.
- This imaging approach has the potential to predict wound healing outcomes in diabetic patients, aiding clinical decision-making.

