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Updated: Feb 2, 2026

Use of MRI-ultrasound Fusion to Achieve Targeted Prostate Biopsy
Published on: April 9, 2019
MRI-guided transurethral insonation of silica-shell phase-shift emulsions in the prostate with an advanced navigation
Gregory J Anthony1, Kenneth B Bader1, James Wang2
1The University of Chicago, Chicago, IL, 60637, USA.
Purpose:
In this study, the efficacy of transurethral prostate ablation in the presence of silica-shell ultrasound-triggered phase-shift emulsions (sUPEs) doped with MR contrast was evaluated. The influence of sUPEs on MR imaging assessment of the ablation zone was also investigated.
Methods:
sUPEs were doped with a magnetic resonance (MR) contrast agent, Gd2 O3 , to assess ultrasound transition. Injections of saline (sham), saline and sUPEs alone, and saline and sUPEs with Optison microbubbles were performed under guidance of a prototype interventional MRI navigation platform in a healthy canine prostate. Treatment arms were evaluated for differences in lesion size, T1 contrast, and temperature. In addition, non-perfused areas (NPAs) on dynamic contrast-enhanced (DCE) MRI, 55°C isotherms, and areas of 240 cumulative equivalent minutes at 43°C (CEM43 ) dose or greater computed from MR thermometry were measured and correlated with ablated areas indicated by histology.
Results:
For treatment arms including sUPEs, the computed correlation coefficients between the histological ablation zone and the NPA, 55°C isotherm, and 240 CEM43 area ranged from 0.96-0.99, 0.98-0.99, and 0.91-0.99, respectively. In the absence of sUPEs, the computed correlation coefficients between the histological ablation zone and the NPA, 55°C isotherm, and 240 CEM43 area were 0.69, 0.54, and 0.50, respectively. Across all treatment arms, the areas of thermal tissue damage and NPAs were not significantly different (P = 0.47). Areas denoted by 55°C isotherms and 240 CEM43 dose boundaries were significantly larger than the areas of thermal damage, again for all treatment arms (P = 0.009 and 0.003, respectively). No significant differences in lesion size, T1 contrast, or temperature were observed between any of the treatment arms (P > 0.0167). Lesions exhibiting thermal fixation on histological analysis were present in six of nine insonations involving sUPE injections and one of five insonations involving saline sham injections. Significantly larger areas (P = 0.002), higher temperatures (P = 0.004), and more frequent ring patterns of restricted diffusion on ex vivo diffusion-weighted imaging (P = 0.005) were apparent in lesions with thermal fixation.
Conclusions:
T1 contrast suggesting sUPE transition was not evident in sUPE treatment arms. The use of MR imaging metrics to predict prostate ablation was not diminished by the presence of sUPEs. Lesions generated in the presence of sUPEs exhibited more frequent thermal fixation, though there were no significant changes in the ablation areas when comparing arms with and without sUPEs. Thermal fixation corresponded to some qualitative imaging features.
Insights
Silica-shell ultrasound-triggered phase-shift emulsions (sUPEs) enhance MR imaging assessment of transurethral prostate ablation zones. While not affecting ablation size, sUPEs increased thermal fixation in lesions, correlating with imaging features.
Area of Science:
- Medical Imaging
- Interventional Radiology
- Biomaterials
Background:
- Transurethral prostate ablation is a key treatment for prostate conditions.
- Accurate assessment of ablation zones is crucial for treatment efficacy.
- Novel agents are needed to improve imaging guidance and outcomes.
Purpose of the Study:
- To evaluate the efficacy of transurethral prostate ablation using silica-shell ultrasound-triggered phase-shift emulsions (sUPEs) doped with MR contrast.
- To investigate the influence of sUPEs on MR imaging assessment of the ablation zone.
Main Methods:
- sUPEs doped with Gd2O3 were injected into canine prostates under MRI guidance.
- Treatment arms included saline (sham), sUPEs alone, and sUPEs with microbubbles.
- Ablation zones were assessed using MR imaging metrics (NPA, isotherms, CEM43) and correlated with histology.
Main Results:
- High correlations (0.91-0.99) were found between MR imaging metrics and histological ablation zones when using sUPEs.
- Absence of sUPEs resulted in lower correlations (0.50-0.69).
- Lesions with sUPEs showed more frequent thermal fixation, correlating with specific imaging features.
Conclusions:
- MR imaging metrics effectively predict prostate ablation zones, even with sUPEs present.
- sUPEs did not significantly alter ablation areas but increased thermal fixation.
- sUPEs show potential for enhancing MR-guided prostate ablation assessment.
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