Predicting ablation zones with multislice volumetric 2-D magnetic resonance thermal imaging
Zahabiya Campwala, Benjamin Szewczyk, Teresa Maietta, Rachel Trowbridge, Matthew Tarasek, Chitresh Bhushan, Eric Fiveland, Goutam Ghoshal, Tamas Heffter, Katie Gandomi, Paulo Carvalho, Christopher J. Nycz, Erin Jeannotte, Michael D. Staudt, Julia W. Nalwalk, Abigail Hellman, Zhanyue Zhao, Everette C. Burdette, Gregory S. Fischer, Desmond Yeo
- 发表年份
- 2021
- 引用次数
- 9
- 访问权限
- 开放获取
摘要
BACKGROUND: High-intensity focused ultrasound (HIFU) serves as a noninvasive stereotactic system for the ablation of brain metastases; however, treatments are limited to simple geometries and energy delivery is limited by the high acoustic attenuation of the calvarium. Minimally-invasive magnetic resonance-guided robotically-assisted (MRgRA) needle-based therapeutic ultrasound (NBTU) using multislice volumetric 2-D magnetic resonance thermal imaging (MRTI) overcomes these limitations and has potential to produce less collateral tissue damage than current methods. OBJECTIVE: To correlate multislice volumetric 2-D MRTI volumes with histologically confirmed regions of tissue damage in MRgRA NBTU. METHODS: Seven swine underwent a total of 8 frontal MRgRA NBTU lesions. MRTI ablation volumes were compared to histologic tissue damage on brain sections stained with 2,3,5-triphenyltetrazolium chloride (TTC). Bland-Altman analyses and correlation trends were used to compare MRTI and TTC ablation volumes. RESULTS: = 0.868). CONCLUSION: We used a volumetric MRTI technique to accurately track thermal changes during MRgRA NBTU in preparation for human trials. Improved volumetric coverage with MRTI enhanced our delivery of therapy and has far-reaching implications for focused ultrasound in the broader clinical setting.
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