Development of Advanced FEM Simulation Technology for Pre-Operative Surgical Planning
Zhanyue Zhao, Yiwei Jiang, Charles Bales, Yang Wang, Gregory Fischer

TL;DR
This paper develops a comprehensive simulation database and a novel probe selection method to optimize pre-operative planning for intracorporeal needle-based therapeutic ultrasound, aiming to improve treatment precision and patient outcomes.
Contribution
It introduces an extended simulation model and a database for optimizing surgical planning and proposes a new probe selection strategy for better therapeutic efficiency.
Findings
Created a detailed simulation database with key thermal parameters.
Developed a probe selection method to optimize ablation procedures.
Enhanced pre-surgical planning for more precise and efficient treatments.
Abstract
Intracorporeal needle-based therapeutic ultrasound (NBTU) offers a minimally invasive approach for the thermal ablation of malignant brain tumors, including both primary and metastatic cancers. NBTU utilizes a high-frequency alternating electric field to excite a piezoelectric transducer, generating acoustic waves that cause localized heating and tumor cell ablation, and it provides a more precise ablation by delivering lower acoustic power doses directly to targeted tumors while sparing surrounding healthy tissue. Building on our previous work, this study introduces a database for optimizing pre-operative surgical planning by simulating ablation effects in varied tissue environments and develops an extended simulation model incorporating various tumor types and sizes to evaluate thermal damage under trans-tissue conditions. A comprehensive database is created from these simulations,…
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Taxonomy
TopicsUltrasound and Hyperthermia Applications · Advanced Radiotherapy Techniques · Advanced MRI Techniques and Applications
