ライブラリ登録: Guest
Critical Reviews™ in Biomedical Engineering

年間 6 号発行

ISSN 印刷: 0278-940X

ISSN オンライン: 1943-619X

SJR: 0.262 SNIP: 0.372 CiteScore™:: 2.2 H-Index: 56

Indexed in

State of the Art in Computer-Assisted Planning, Intervention, and Assessment of Liver-Tumor Ablation

巻 38, 発行 1, 2010, pp. 31-52
DOI: 10.1615/CritRevBiomedEng.v38.i1.40
Get accessGet access

要約

Percutaneous, image-guided thermal tumor ablation procedures are used increasingly for minimally invasive, local treatment of tumors in the liver. The planning of these procedures; the support of targeting, monitoring, and controlling during the intervention itself; and the assessment of the treatment response can all benefit significantly from computer assistance. The outcome can be optimized by supporting the physician in the process of determining an intervention strategy that enables complete destruction of the targeted tumor while reducing the danger of complications. During the intervention, computer-assisted methods can be used to guide the physician in the implementation of the intended strategy by providing planning information. Assessment of the intervention result is carried out by comparison of the achieved coagulation with the target tumor volume. Supporting this comparison facilitates the early detection of potential recurrences. This report provides an overview of state-of-the-art computer-assisted methods for the support of thermal tumor ablations in the liver. Proper approaches for image segmentation, access-path determination, simulation, visualization, interventional guidance, and post-interventional assessment, as well as integrated work flow-oriented solutions, are reviewed with respect to technical aspects and applicability in the clinical setting.

によって引用された
  1. Chen Yizhe, Youn Pilju, Pysher Theodore J., Scaife Courtney L., Furgeson Darin Y., Tumour eradication using synchronous thermal ablation and Hsp90 chemotherapy with protein engineered triblock biopolymer-geldanamycin conjugates, International Journal of Hyperthermia, 30, 8, 2014. Crossref

  2. Rieder Christian, Kroeger Tim, Schumann Christian, Hahn Horst K., GPU-based Real-Time Approximation of the Ablation Zone for Radiofrequency Ablation, IEEE Transactions on Visualization and Computer Graphics, 17, 12, 2011. Crossref

  3. Schumann Christian, Bieberstein Jennifer, Braunewell Stefan, Niethammer Matthias, Peitgen Heinz-Otto, Visualization support for the planning of hepatic needle placement, International Journal of Computer Assisted Radiology and Surgery, 7, 2, 2012. Crossref

  4. Egger Jan, Busse Harald, Brandmaier Philipp, Seider Daniel, Gawlitza Matthias, Strocka Steffen, Voglreiter Philip, Dokter Mark, Hofmann Michael, Kainz Bernhard, Hann Alexander, Chen Xiaojun, Alhonnoro Tuomas, Pollari Mika, Schmalstieg Dieter, Moche Michael, Interactive Volumetry Of Liver Ablation Zones, Scientific Reports, 5, 1, 2015. Crossref

  5. Prakash Punit, Diederich Chris J., Considerations for theoretical modelling of thermal ablation with catheter-based ultrasonic sources: Implications for treatment planning, monitoring and control, International Journal of Hyperthermia, 28, 1, 2012. Crossref

  6. Bale R., Widmann G., Jaschke W., Stereotaxie und Robotik zur Ablation – Spielzeug oder Werkzeug?, Der Radiologe, 52, 1, 2012. Crossref

  7. Haase Sabrina, Patz Torben, Tiesler Hanne, Altrogge Inga, Preusser Tobias, Radiofrequency ablation planning beyond simulation, 2012 Annual International Conference of the IEEE Engineering in Medicine and Biology Society, 2012. Crossref

  8. Egger Jan, Busse Harald, Brandmaier Philipp, Seider Daniel, Gawlitza Matthias, Strocka Steffen, Voglreiter Philip, Dokter Mark, Hofmann Michael, Kainz Bernhard, Xiaojun Chen , Hann Alexander, Boechat Pedro, Wei Yu , Freisleben Bernd, Alhonnoro Tuomas, Pollari Mika, Moche Michael, Schmalstieg Dieter, RFA-cut: Semi-automatic segmentation of radiofrequency ablation zones with and without needles via optimal s-t-cuts, 2015 37th Annual International Conference of the IEEE Engineering in Medicine and Biology Society (EMBC), 2015. Crossref

  9. CONSIGLIERI LUISA, ANALYTICAL SOLUTIONS IN THE MODELING OF THE LOCAL RF ABLATION, Journal of Mechanics in Medicine and Biology, 16, 05, 2016. Crossref

  10. Liu Fangyi, Cheng Zhigang, Han Zhiyu, Yu Xiaoling, Yu Mingan, Liang Ping, A three-dimensional visualization preoperative treatment planning system for microwave ablation in liver cancer: a simulated experimental study, Abdominal Radiology, 42, 6, 2017. Crossref

  11. Chen Yunxia, Zhang Jie, Ge Yun, Zhang Bingqing, Chai Lei, Cai Jing, Yan Jing, Liu Baorui, Accuracy and efficiency of an infrared based positioning and tracking system for image-guided intervention, 2016 IEEE 10th International Conference on Nano/Molecular Medicine and Engineering (NANOMED), 2016. Crossref

  12. Voglreiter Philip, Mariappan Panchatcharam, Pollari Mika, Flanagan Ronan, Blanco Sequeiros Roberto, Portugaller Rupert Horst, Fütterer Jurgen, Schmalstieg Dieter, Kolesnik Marina, Moche Michael, RFA Guardian: Comprehensive Simulation of Radiofrequency Ablation Treatment of Liver Tumors, Scientific Reports, 8, 1, 2018. Crossref

  13. Kerbl Bernhard, Voglreiter Philip, Khlebnikov Rostislav, Schmalstieg Dieter, Seider Daniel, Moche Michael, Stiegler Philipp, Portugaller Rupert H., Kainz Bernhard, Intervention Planning of Hepatocellular Carcinoma Radio-Frequency Ablations, in Clinical Image-Based Procedures. From Planning to Intervention, 7761, 2013. Crossref

  14. Liang Libin, Cool Derek, Kakani Nirmal, Wang Guangzhi, Ding Hui, Fenster Aaron, Automatic Radiofrequency Ablation Planning for Liver Tumors With Multiple Constraints Based on Set Covering, IEEE Transactions on Medical Imaging, 39, 5, 2020. Crossref

  15. Singh Sundeep, Melnik Roderick, Thermal ablation of biological tissues in disease treatment: A review of computational models and future directions, Electromagnetic Biology and Medicine, 39, 2, 2020. Crossref

  16. Poch Franz G., Geyer Beatrice, Gemeinhardt Ole, Klopfleisch Robert, Niehues Stefan M., Vahldiek Janis L., Bressem Keno, Kreis Martin E., Lehmann Kai S., Immediate post-interventional contrast-enhanced computed tomography overestimates hepatic microwave ablation – an in vivo animal study, International Journal of Hyperthermia, 37, 1, 2020. Crossref

  17. Qin Fangyu, Zhang Kangwei, Zou Jincheng, Sun Jianqi, Zhang Aili, Xu Lisa X., A New Model for RF Ablation Planning in Clinic, 2018 40th Annual International Conference of the IEEE Engineering in Medicine and Biology Society (EMBC), 2018. Crossref

  18. Georgii Joachim, Pätz Torben, Rieder Christian, Ballhausen Hanne, Schwenke Michael, Schwen Lars Ole, Haase Sabrina, Preusser Tobias, Efficient GPU-Based Numerical Simulation of Cryoablation of the Kidney, in Computational Biomechanics for Medicine, 2020. Crossref

  19. Huang C.W., Sun M.K., Chen B.T., Shieh J., Chen C.S., Chen W.S., Simulation of thermal ablation by high-intensity focused ultrasound with temperature-dependent properties, Ultrasonics Sonochemistry, 27, 2015. Crossref

  20. Liang Libin, Cool Derek, Kakani Nirmal, Wang Guangzhi, Ding Hui, Fenster Aaron, Multiple objective planning for thermal ablation of liver tumors, International Journal of Computer Assisted Radiology and Surgery, 15, 11, 2020. Crossref

  21. Mariappan Panchatcharam, B  Gangadhara, Flanagan  Ronan, A point source model to represent heat distribution without calculating the Joule heat during radiofrequency ablation, Frontiers in Thermal Engineering, 2, 2022. Crossref

Begell Digital Portal Begellデジタルライブラリー 電子書籍 ジャーナル 参考文献と会報 リサーチ集 価格及び購読のポリシー Begell House 連絡先 Language English 中文 Русский Português German French Spain