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Updated: Jun 18, 2026

11:35
Dual-mode Imaging of Cutaneous Tissue Oxygenation and Vascular Function
Published on: December 8, 2010
Mucosal and serosal changes after gastric stapling determined by a new "real-time" surface tissue oxygenation probe:
Christopher J Myers1, Gevorg Mutafyan, Aurora D Pryor
1Department of Surgery, Duke University Medical Center, Durham, North Carolina 27710, USA. chrismyers2@hotmail.com
Summary
A new tissue oximeter probe accurately measured gastric tissue oxygen saturation (StO(2)) during stapling. Significant StO(2) drops occurred near staple lines, even without visible changes, indicating potential risks for surgical complications.
Area of Science:
- Surgical Innovation
- Biomedical Engineering
- Gastrointestinal Surgery
Background:
- Surgeons currently use subjective methods to assess tissue ischemia at surgical anastomoses.
- These methods may fail to detect transient or minor ischemia, potentially leading to complications like leakage and stricture.
- A novel microvascular tissue oximeter probe offers noninvasive, real-time measurement of tissue hemoglobin oxygen saturation (StO(2)).
Purpose of the Study:
- To evaluate the reproducibility of the T-Stat oximeter probe for measuring gastric StO(2).
- To compare the sensitivity of gastric mucosa versus serosa to ischemia.
- To determine the impact of proximity to the staple line on StO(2) measurements.
Main Methods:
- Anesthetized swine (n=8) underwent gastric transection using 4.8-mm staple height cartridges.
- Local gastric StO(2) was measured in vivo at two locations: adjacent to the staple line and 2 cm away.
- Measurements were taken to assess reproducibility, mucosal vs. serosal sensitivity, and proximity effects.
Main Results:
- Both mucosal and serosal StO(2) significantly decreased adjacent to the staple line compared to baseline (P <.05).
- No significant StO(2) changes were observed 2 cm away from the staple line.
- Visible changes in tissue color or pulsation were not detected despite significant StO(2) drops.
Conclusions:
- Significant, reproducible decreases in mucosal and serosal StO(2) were detected near gastric staple lines.
- The dramatic drop in mucosal StO(2) occurred without any visible signs of ischemia.
- Real-time oximetry could help identify patients at risk for anastomotic complications.