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Sodium fluorescein in pediatric oncological neurosurgery: a pilot study on 50 children
Camilla de Laurentis1,2,3, Fred Bteich1,2, Pierre Aurélien Beuriat1,2
1Pediatric Neurosurgery, Hôpital Femme Mère Enfant, Lyon, France.
Insights
Sodium fluorescein (SF) is a safe and effective tool for pediatric neurosurgery, aiding in the resection of brain and spine lesions. Its utility is particularly promising for low-grade glial tumors, with subjective surgeon evaluations correlating well with software analysis.
Area of Science:
- Pediatric Neurosurgery
- Intraoperative Imaging
- Fluorescence-guided Surgery
Background:
- Sodium fluorescein (SF) is an established intraoperative tool for high-grade adult brain lesions.
- Limited data exists on SF use in pediatric neurosurgery, particularly for low-grade tumors.
- Subjective fluorescence assessment remains a challenge in current practice.
Purpose of the Study:
- To evaluate the safety and efficacy of sodium fluorescein (SF) in pediatric neurosurgery.
- To assess the utility of SF in resecting pediatric brain and spine lesions, including low-grade gliomas.
- To compare subjective surgeon assessment of SF fluorescence with objective software analysis.
Main Methods:
- Retrospective review of 50 pediatric patients undergoing surgery with SF (10%, 5 mg/kg).
- Surgery utilized a YELLOW560 filter; surgeon questionnaires assessed SF utility.
- Post-hoc image analysis using ImageJ software to objectively measure fluorescence.
Main Results:
- SF uptake observed in 80% of lesions (40/50 patients).
- Objective software analysis confirmed significantly higher green intensity in lesions (p<0.001).
- SF provided good differentiation in 67% of resections, with 75% utility noted for gliomas.
Conclusions:
- Sodium fluorescein is a feasible, safe, and useful adjunct in pediatric neurosurgery.
- SF shows promise for resecting low-grade infiltrating glial tumors.
- Subjective surgeon fluorescence evaluation aligns with objective image analysis findings.
Background:
Sodium fluorescein (SF) is currently considered a valid intraoperative adjunct in the resection of high-grade brain lesions in adults. Experiences in pediatric groups and in low-grade gliomas and other low-grade lesions are still limited in literature, and subjective evaluation of fluorescence is still a limitation.
Material And Methods:
This study retrospectively reviewed all patients with brain or spine lesions operated on from September 2021 to July 2022 in the Pediatric Neurosurgery Unit of Hôpital Femme Mère Enfant, Lyon, who had received 5 mg/kg of 10%. Surgery was performed using a YELLOW560 filter at crucial times. At the end of surgery, the first operator completed a questionnaire, including his opinion on whether SF had been useful in tumor resection, recorded as a binary variable. Post hoc, surgical images were reviewed using ImageJ, an open-source Java image processing platform. In order to compare independent discrete variables, we applied the Student's t test, and we applied the Chi-square or Fisher exact test for binary variables. A threshold of p < 0.05 was set for statistical significance.
Results:
We included 50 pediatric patients (0.2-17.6 years old). Forty/50 lesions showed SF uptake (80%). The differentiation between healthy and affected tissue, thanks to SF, subjectively evaluated by the surgeon, had as objective counterpart the statistically significant higher brightness of green in lesions, registered by the software (p < 0.001). SF overall allowed a good differentiation in 33/50 lesions, and overall utility of SF has been noted in 67% of them. When specifically considering gliomas, overall utility reached 75%.
Conclusion:
SF is a feasible, safe, and useful intraoperative adjunct in pediatric neurosurgery. In particular, it seems to have a promising role in some low-grade infiltrating glial tumors. The subjective evaluation of fluorescence seems to be reliable with respect to image analyses software.
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