Hand-held electron spin resonance scanner for subcutaneous oximetry using OxyChip.
Nir Almog1, Oleg Zgadzai1, Periannan Kuppusamy2
1Schulich Faculty of Chemistry, Technion-Israel Institute of Technology, Haifa, Israel.
Magnetic Resonance in Medicine
|February 27, 2024
Summary
A new compact Electron Spin Resonance (ESR) scanner measures subcutaneous oxygen partial pressure (pO2) non-invasively. This technology shows promise for wound healing and clinical diagnostics.
Area of Science:
- Biomedical Engineering
- Medical Physics
- Analytical Chemistry
Background:
- Electron spin resonance (ESR) is a technique for measuring oxygen partial pressure (pO2) in biological settings.
- Conventional ESR methods utilize large magnets, limiting their clinical applicability.
- A novel compact ESR scanner has been developed for transcutaneous pO2 measurements.
Purpose of the Study:
- To extend the capability of a compact ESR scanner for subsurface (subcutaneous) pO2 measurements.
- To validate the scanner's performance using an artificial tissue emulating (ATE) phantom.
- To assess the potential for local static magnetic field operation in ESR measurements.
Main Methods:
- A new compact ESR scanner was designed for subcutaneous measurements up to 2 mm deep.
- The scanner utilizes pulsed ESR signals from embedded 1-mm oxygen-sensing paramagnetic implants (OxyChip).
- Key components include a static magnetic field source and a compact microwave resonator.
Main Results:
- The scanner accurately measured pO2 levels (0, 7.6, 30, 160 mmHg) from an OxyChip embedded 1.5 mm deep in an ATE phantom.
- A linear relationship between 1/T2 and pO2 was observed.
- The relative reading accuracy was approximately 10%.
Conclusions:
- The compact ESR scanner successfully reported subcutaneous pO2 data externally.
- This technology is feasible for preclinical and clinical applications in subcutaneous pO2 monitoring.
- The scanner has potential for integration with artificial skin grafts for wound healing, combining therapy and diagnostics.
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