What happens to brain outside the thermal ablation zones? An assessment of needle-based therapeutic ultrasound in survival swine.
Authors: Szewczyk B, Tarasek M, Campwala Z, Trowbridge R, Zhao Z, Johansen PM, Olmsted Z, Bhushan C, Fiveland E, Ghoshal G, Heffter T, Tavakkolmoghaddam F, Bales C, Wang Y, Rajamani DK, Gandomi K, Nycz C, Jeannotte E, Mane S, Nalwalk J, Burdette EC, Fischer G, Yeo D, Qian J, Pilitsis J
In stereotactic radiosurgery, isodose lines must be considered to determine how surrounding tissue is affected. In thermal ablative therapy, such as laser interstitial thermal therapy (LITT), transcranial MR-guided focused ultrasound (tcMRgFUS), and needle-based therapeutic ultrasound (NBTU), how the surrounding area is affected has not been well studied. We aimed to quantify the transition zone surrounding the ablation core created by magnetic resonance-guided robotically-assisted (MRgRA) delivery of NBTU using multi-slice volumetric 2-D magnetic resonance thermal imaging (MRTI) and subsequent characterization of the resultant tissue damage using histopathologic analysis. Four swine underwent MRgRA NBTU using varying duration and wattage for treatment delivery. Serial MRI images were obtained, and the most representative were overlaid with isodose lines and compared to brain tissue acquired postmortem which underwent histopathologic analysis. These results were also compared to predicted volumes using a finite element analysis model. Contralateral brain tissue was used for control data. Intraoperative MRTI thermal isodose contours were characterized and comprehensively mapped to post-operative MRI images and qualitatively compared with histological tissue sections postmortem. NBTU 360° ablations induced smaller lesion volumes (33.19 mm<sup>3</sup>; 120 s, 3 W; 30.05 mm<sup>3</sup>, 180 s, 4 W) versus 180° ablations (77.20 mm<sup>3</sup>, 120 s, 3 W; 109.29 mm<sup>3</sup>; 180 s; 4 W). MRTI/MRI overlay demonstrated the lesion within the proximal isodose lines. The ablation-zone was characterized by dense macrophage infiltration and glial/neuronal loss as demonstrated by glial fibrillary acidic protein (GFAP) and neurofilament (NF) absence and avid CD163 staining. The transition-zone between lesion and normal brain demonstrated decreased macrophage infiltration and measured ∼345 microns (<i>n</i> - 3). We did not detect overt hemorrhages or signs of edema in the adjacent spared tissue. We successfully performed MRgRA NBTU ablation in swine and demonstrated minimal histologic changes extended past the ablation-zone. The lesion was characterized by macrophage infiltration and glial/neuronal loss which decreased through the transition-zone.
Introduction
Purpose
Thermal ablation
Study Objective
To quantify the transition zone surrounding the ablation core produced by MR-guided robotically-assisted needle-based therapeutic ultrasound (MRgRA NBTU) using intraoperative MR thermal imaging and histopathologic analysis.
Animal model / Human subject
Swine (pig); strain None; age None; sex None
MRI or image guidance method
Magnetic resonance-guided robotically-assisted (MRgRA) delivery with intraoperative MR thermal imaging (MRTI)
Outcomes and Safety
Summary of Outcomes
MR‑guided robotically‑assisted needle‑based therapeutic ultrasound (NBTU) produced localized thermal lesions with dense macrophage infiltration and loss of glial/neuronal markers confined by a narrow ~345 µm transition zone, without overt hemorrhage/edema or lasting behavioral deficits, and both probe configurations tested—360° and 180°—with settings 120 s at 3 W and 180 s at 4 W produced reproducible ablations (180° yielded larger lesion volumes than 360°).
Duration of biological effect
4 weeks
Safety-related matter
No major adverse effects were observed: there were no overt hemorrhages or signs of edema in adjacent tissue and no long-term neurologic or behavioral complications, with histologic changes largely confined to the ablation zone and a ~345 μm transition zone. One swine had transient delayed emergence from anesthesia with hind‑leg weakness and a postoperative fever (treated with acetaminophen) that resolved within a week.
Brain Region
Ultrasound Parameters
Pulse duration
120 s, 180 s
Focal Characteristics
Focal depth: None; Focal length: None; Aperture size: None
Treatment frequency
single session
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