Real-time MRI-guided needle intervention for cryoablation: A phantom study

被引:0
|
作者
Gao, Wenpeng [1 ]
Jiang, Baichuan [2 ]
Kacher, Dan F. [3 ]
Fetics, Barry [4 ]
Nevo, Erez [4 ]
Lee, Thomas C. [5 ]
Jayender, Jagadeesan [4 ]
机构
[1] Harbin Inst Technol, Sch Life Sci & Technol, Harbin, Peoples R China
[2] Tianjin Univ, Dept Mech Engn, Tianjin, Peoples R China
[3] Brigham & Womens Hosp, Dept Radiol, 75 Francis St, Boston, MA 02115 USA
[4] Robin Med Inc, Baltimore, MD USA
[5] Brigham & Womens Hosp, Dept Neuroradiol, 75 Francis St, Boston, MA 02115 USA
基金
美国国家卫生研究院;
关键词
MRI; Electromagnetic Tracking; Optical Tracking; Needle Intervention; navigation; data fusion;
D O I
10.1117/12.2253958
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
MRI-guided needle intervention for cryoablation is a promising way to relieve the pain and treat the cancer. However, the limited size of MRI bore makes it impossible for clinicians to perform the operation in the bore. The patients had to be moved into the bore for scanning to verify the position of the needle's tip and out for adjusting the needle's trajectory. Real-time needle tracking and shown in MR images is of importance for clinicians to perform the operation more efficiently. In this paper, we have instrumented the cryotherapy needle with a MRI-safe electromagnetic (EM) sensor and optical sensor to measure the needle's position and orientation. To overcome the limitation of line-of-sight for optical sensor and the poor dynamic performance of the EM sensor, Kalman filter based data fusion is developed. Further, we developed a navigation system in open-source software, 3D Slicer, to provide accurate visualization of the needle and the surrounding anatomy. Experiment of simulation the needle intervention at the entrance was performed with a realistic spine phantom to quantify the accuracy of the navigation using the retrospective analysis method. Eleven trials of needle insertion were performed independently. The target accuracy with the navigation using only EM sensor, only optical sensor and data fusion are 2.27 +/- 1.60 mm, 4.11 +/- 1.77 mm and 1.91 +/- 1.10 mm, respectively.
引用
收藏
页数:6
相关论文
共 50 条
  • [41] MRI-guided needle localization: Technique
    DeAngelis, GA
    Moran, RE
    Fajardo, LL
    Mugler, JP
    Christopher, JM
    SEMINARS IN ULTRASOUND CT AND MRI, 2000, 21 (05) : 337 - 350
  • [42] Towards human-controlled, real-time shape sensing based flexible needle steering for MRI-guided percutaneous therapies
    Li, Meng
    Li, Gang
    Gonenc, Berk
    Duan, Xingguang
    Iordachita, Iulian
    INTERNATIONAL JOURNAL OF MEDICAL ROBOTICS AND COMPUTER ASSISTED SURGERY, 2017, 13 (02):
  • [43] MRI-Guided Brain Tumor Cryoablation in a Rabbit Model
    Song, Jiqing
    Li, Chengli
    Wu, Lebin
    Liu, Ming
    Lv, Yubo
    Xie, Guohua
    Li, Lei
    Sequeiros, Roberto Blanco
    JOURNAL OF MAGNETIC RESONANCE IMAGING, 2009, 29 (03) : 545 - 551
  • [44] Automatic probe artifact detection in MRI-guided cryoablation
    Liu, Xinyang
    Tuncali, Kemal
    Wells, William M., III
    Zientara, Gary P.
    MEDICAL IMAGING 2013: IMAGE-GUIDED PROCEDURES, ROBOTIC INTERVENTIONS, AND MODELING, 2013, 8671
  • [45] MRI-Guided Breast Cryoablation With the Patient in Prone Position
    Huang, Monica L.
    Lane, Deanna L.
    Santiago, Lumarie
    AMERICAN JOURNAL OF ROENTGENOLOGY, 2024, 222 (04)
  • [46] Real-Time MRI-Guided Transarterial Aortic Valve Implantation: In Vivo Evaluation in Swine
    Kahlert, Philipp
    Eggebrecht, Holger
    Plicht, Bjorn
    Kaiser, Gernot
    Parohl, Nina
    Albert, Juliane
    Schaefer, Lena
    Kraff, Oliver
    McDougall, Ian
    Erbel, Raimund
    Ladd, Mark
    Quick, Harald
    JOURNAL OF THE AMERICAN COLLEGE OF CARDIOLOGY, 2010, 56 (13) : B110 - B110
  • [47] Real-time radial reconstruction with domain transform manifold learning for MRI-guided radiotherapy
    Waddington, David E. J.
    Hindley, Nicholas
    Koonjoo, Neha
    Chiu, Christopher
    Reynolds, Tess
    Liu, Paul Z. Y.
    Zhu, Bo
    Bhutto, Danyal
    Paganelli, Chiara
    Keall, Paul J. J.
    Rosen, Matthew S. S.
    MEDICAL PHYSICS, 2023, 50 (04) : 1962 - 1974
  • [48] Comparing Transformer training strategies for real-time tumor tracking in MRI-guided radiotherapy
    Lombardo, Elia
    Velezmoro, Laura
    Marschner, Sebastian
    Reiner, Michael
    Corradini, Stefanie
    Belka, Claus
    Riboldi, Marco
    Kurz, Christopher
    Landry, Guillaume
    RADIOTHERAPY AND ONCOLOGY, 2024, 194 : S4286 - S4288
  • [49] Real-time MRI-guided right heart catheterization in adults using passive catheters
    Ratnayaka, Kanishka
    Faranesh, Anthony Z.
    Hansen, Michael S.
    Stine, Annette M.
    Halabi, Majdi
    Barbash, Israel M.
    Schenke, William H.
    Wright, Victor J.
    Grant, Laurie P.
    Kellman, Peter
    Kocaturk, Ozgur
    Lederman, Robert J.
    EUROPEAN HEART JOURNAL, 2013, 34 (05) : 380 - 389
  • [50] Robotic system for MRI-guided prostate biopsy: feasibility of teleoperated needle insertion and ex vivo phantom study
    Seifabadi, Reza
    Song, Sang-Eun
    Krieger, Axel
    Cho, Nathan Bongjoon
    Tokuda, Junichi
    Fichtinger, Gabor
    Iordachita, Iulian
    INTERNATIONAL JOURNAL OF COMPUTER ASSISTED RADIOLOGY AND SURGERY, 2012, 7 (02) : 181 - 190