paper-with-me

홈 › Papers

Volumetric Quantitative Ablation Margins for Assessment of Ablation Completeness in Thermal Ablation of Liver Tumors

2021-03-10 · Frontiers in Oncology, Cancer Imaging and Image-directed interventions 2021 3 · Raluca-Maria Sandu, Iwan Polucci, Simeon J. S. Ruiter, Raphael Sznitman, Koert P. de Jong, Jacob Freedman, Stefan Weber and Pascale Tinguely

In thermal ablation of liver tumors, complete coverage of the tumor volume by the ablation volume with a sufficient ablation margin is the most important factor for treatment success. Evaluation of ablation completeness is commonly performed by visual inspection in 2D and is prone to inter-reader variability. This work aimed to introduce a standardized approach for evaluation of ablation completeness after CT-guided thermal ablation of liver tumors, using volumetric quantitative ablation margins (QAM). Methods: A QAM computation metric based on volumetric segmentations of tumor and ablation areas and signed Euclidean surface distance maps was developed, including a novel algorithm to address QAM computation in subcapsular tumors. The code for QAM computation was verified in artificial examples of tumor and ablation spheres simulating varying scenarios of ablation margins. The applicability of the QAM metric was investigated in representative cases extracted from a prospective database of colorectal liver metastases (CRLM) treated with stereotactic microwave ablation (SMWA). Results: Applicability of the proposed QAM metric was confirmed in artificial and clinical example cases. Numerical and visual options of data presentation displaying substrata of QAM distributions were proposed. For subcapsular tumors, the underestimation of tumor coverage by the ablation volume when applying an unadjusted QAM method was confirmed, supporting the benefits of using the proposed algorithm for QAM computation in these cases. The computational code for developed QAM was made publicly available, encouraging the use of a standard and objective metric in reporting ablation completeness and margins. Conclusion: The proposed volumetric approach for QAM computation including a novel algorithm to address subcapsular liver tumors enables precision and reproducibility in the assessment of ablation margins. The quantitative feedback on ablation completeness opens possibilities for intra-operative decision making and for refined analyses on predictability and consistency of local tumor control after thermal ablation of liver tumors

📄 PDF Abstract BibTeX

Code (1)

artorg-unibe-ch/qam

Tasks

Decision Making

Methods 이 논문이 사용한 방법론

Euclidean Norm Regularization Euclidean Norm Regularization is a regularization step used in generative adversarial networks,…

Similar Papers 제목 키워드 기반

Deep learning based 2.5D flow field estimation for maximum intensity projections of 4D optical coherence tomography

2018-10-26 · Max-Heinrich Laves, Lüder A. Kahrs, Tobias Ortmaier

In microsurgery, lasers have emerged as precise tools for bone ablation. A challenge is automatic control of laser bone ablation with 4D optical coherence tomography (OCT). OCT as high resolution imaging modality provide…

Object TrackingOptical Flow EstimationScene Flow Estimation

Respiratory Subtraction for Pulmonary Microwave Ablation Evaluation

2024-08-08 · Wan Li, Xinyun Zhong, Wei Li, Song Zhang 외

Currently, lung cancer is a leading cause of global cancer mortality, often necessitating minimally invasive interventions. Microwave ablation (MWA) is extensively utilized for both primary and secondary lung tumors. Alt…

Prediction of Frozen Region Growth in Kidney Cryoablation Intervention Using a 3D Flow-Matching Model

2025-03-06 · Siyeop Yoon, Yujin Oh, Matthew Tivnan, Sifan Song 외

This study presents a 3D flow-matching model designed to predict the progression of the frozen region (iceball) during kidney cryoablation. Precise intraoperative guidance is critical in cryoablation to ensure complete t…

FACT: Foundation Model for Assessing Cancer Tissue Margins with Mass Spectrometry

2025-04-15 · Mohammad Farahmand, Amoon Jamzad, Fahimeh Fooladgar, Laura Connolly 외

Purpose: Accurately classifying tissue margins during cancer surgeries is crucial for ensuring complete tumor removal. Rapid Evaporative Ionization Mass Spectrometry (REIMS), a tool for real-time intraoperative margin as…

Triplet

Toward Vision Language Model-based Assessment of Clinical Quality and Usability of LGE-MR Images for Cardiac Ablation Planning

2026-08-21 · Bipasha Kundu, Abhishek Chaturvedi, Axel W. E. Wismueller, Richard Simon 외 arxiv

LGE cardiac MRI is widely used for left atrial fibrosis assessment and ablation planning in atrial fibrillation patients as knowledge of fibrotic tissue regions identified from LGE-MRI is critical for catheter ablation. …

Image Quality Assessment