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Published on: September 19, 2014
Assessment of Breast Tumors Using Multispectral Optoacoustic Tomography in a Surgical Setting
Lacey R McNally1, Juan Carlos Claros-Sorto2, Ryan C Bynum2
1Department of Surgery, University of Oklahoma Health Science Center, Oklahoma City, Oklahoma; lacey_mcnally@hotmail.com ajay-jain@ouhsc.edu.
Abstract:
In breast-conserving surgery, wire or seed localization and ultrasound are limited by lack of margin detection and contrast imaging, respectively. Handheld multispectral optoacoustic tomography (MSOT) allows for contrast imaging using endogenous or exogenous agents. This trial evaluated the safety and performance of MSOT for imaging breast masses intraoperatively. Methods: Imaging with MSOT was performed on 45 women preoperatively and postoperatively. The temperature and appearance of the skin were recorded before and after imaging. Levels of deoxyhemoglobin, oxyhemoglobin, total hemoglobin, and microvascular oxygen saturation were recorded for malignant and benign breast tissue using MSOT. In patients undergoing sentinel lymph node biopsy, the ipsilateral axilla was imaged with MSOT. For analysis, patients were categorized by Fitzpatrick skin type. Results: All breast masses were successfully imaged as cancers using MSOT. In preoperative and postoperative imaging, patients' skin temperatures did not exceed 37 °C, and no adverse effects were observed after imaging across all Fitzpatrick skin types. The findings in breast tumor images using deoxyhemoglobin (mean, 0.0782), oxyhemoglobin (mean, 0.0833), and total hemoglobin (mean, 0.161) were each significantly different from those of contralateral breast presurgery (P < 0.0001). Microvascular oxygen saturation did not significantly differ between breast tumors and contralateral breast tissue (P = 0.704). The average imaging time before and after surgery was 3 min. No adverse events were recorded. All 3 positive sentinel lymph nodes identified intraoperatively using isosulfan blue injection were successfully imaged by MSOT preoperatively, and no false-positives were obtained with MSOT. Conclusion: MSOT is safe for use in image-guided breast cancer detection and has not been shown to increase patient skin temperature. MSOT can successfully distinguish between cancer and benign tissue using endogenous contrast agents and identify sentinel lymph nodes using isosulfan blue.
Insights
Handheld multispectral optoacoustic tomography (MSOT) safely images breast masses, distinguishing cancerous from benign tissue. This advanced imaging technique also successfully identifies sentinel lymph nodes, improving breast cancer detection during surgery.
Area of Science:
- Medical Imaging
- Oncology
- Biophotonics
Background:
- Traditional breast-conserving surgery localization methods like wire or seed localization and ultrasound have limitations in margin detection and contrast imaging.
- Handheld multispectral optoacoustic tomography (MSOT) offers advanced contrast imaging capabilities using endogenous or exogenous agents.
Purpose of the Study:
- To evaluate the safety and performance of handheld multispectral optoacoustic tomography (MSOT) for intraoperative imaging of breast masses.
- To assess MSOT's ability to differentiate malignant from benign breast tissue and identify sentinel lymph nodes.
Main Methods:
- MSOT imaging was performed on 45 women preoperatively and postoperatively, recording skin temperature and appearance.
- Deoxyhemoglobin, oxyhemoglobin, total hemoglobin, and microvascular oxygen saturation levels were analyzed for malignant and benign breast tissue.
- The ipsilateral axilla was imaged for sentinel lymph node detection in relevant patients, with analysis stratified by Fitzpatrick skin type.
Main Results:
- MSOT successfully imaged all breast masses as cancerous, with significant differences in hemoglobin levels between tumors and contralateral tissue (P < 0.0001).
- No adverse effects or significant increases in skin temperature (max 37°C) were observed across all skin types.
- MSOT accurately identified all positive sentinel lymph nodes preoperatively using isosulfan blue, with no false positives.
Conclusions:
- MSOT is a safe and effective tool for image-guided breast cancer detection, without increasing patient skin temperature.
- The technology can differentiate cancerous from benign breast tissue using endogenous contrast agents.
- MSOT demonstrates high accuracy in identifying sentinel lymph nodes, enhancing surgical guidance.
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