A long arm for ultrasound: A combined robotic focused ultrasound setup for magnetic resonance-guided focused ultrasound surgery

被引:17
|
作者
Krafft, Axel J. [1 ]
Jenne, Juergen W. [2 ,4 ]
Maier, Florian [1 ]
Stafford, R. Jason [3 ]
Huber, Peter E. [2 ]
Semmler, Wolfhard [1 ]
Bock, Michael [1 ]
机构
[1] German Canc Res Ctr, Dept Med Phys Radiol, D-69120 Heidelberg, Germany
[2] German Canc Res Ctr, Clin Cooperat Unit Radiat Oncol, D-69120 Heidelberg, Germany
[3] Univ Texas MD Anderson Canc Ctr, Dept Imaging Phys, Houston, TX 77030 USA
[4] Mediri GmbH, D-69115 Heidelberg, Germany
关键词
actuators; biomedical MRI; biomedical transducers; biomedical ultrasonics; patient monitoring; surgery; tumours; IN-VIVO; UTERINE LEIOMYOMAS; CANCER-THERAPY; MR SYSTEMS; INTERVENTIONS; THERMOMETRY; ABLATION; BREAST; TISSUE; SHIFT;
D O I
10.1118/1.3377777
中图分类号
R8 [特种医学]; R445 [影像诊断学];
学科分类号
1002 ; 100207 ; 1009 ;
摘要
Purpose: Focused ultrasound surgery (FUS) is a highly precise noninvasive procedure to ablate pathogenic tissue. FUS therapy is often combined with magnetic resonance (MR) imaging as MR imaging offers excellent target identification and allows for continuous monitoring of FUS induced temperature changes. As the dimensions of the ultrasound (US) focus are typically much smaller than the targeted volume, multiple sonications and focus repositioning are interleaved to scan the focus over the target volume. Focal scanning can be achieved electronically by using phased-array US transducers or mechanically by using dedicated mechanical actuators. In this study, the authors propose and evaluate the precision of a combined robotic FUS setup to overcome some of the limitations of the existing MRgFUS systems. Such systems are typically integrated into the patient table of the MR scanner and thus only provide an application of the US wave within a limited spatial range from below the patient. Methods: The fully MR-compatible robotic assistance system InnoMotion (TM) (InnoMedic GmbH, Herxheim, Germany) was originally designed for MR-guided interventions with needles. It offers five pneumatically driven degrees of freedom and can be moved over a wide range within the bore of the magnet. In this work, the robotic system was combined with a fixed-focus US transducer (frequency: 1.7 MHz; focal length: 68 mm, and numerical aperture: 0.44) that was integrated into a dedicated, in-house developed treatment unit for FUS application. A series of MR-guided focal scanning procedures was performed in a polyacrylamide-egg white gel phantom to assess the positioning accuracy of the combined FUS setup. In animal experiments with a 3-month-old domestic pig, the system's potential and suitability for MRgFUS was tested. Results: In phantom experiments, a total targeting precision of about 3 mm was found, which is comparable to that of the existing MRgFUS systems. Focus positioning could be performed within a few seconds. During in vivo experiments, a defined pattern of single thermal lesions and a therapeutically relevant confluent thermal lesion could be created. The creation of local tissue necrosis by coagulation was confirmed by post-FUS MR imaging and histological examinations on the treated tissue sample. During all sonications in phantom and in vivo, reliable MR imaging and online MR thermometry could be performed without compromises due to operation of the combined robotic FUS setup. Conclusions: Compared to the existing MRgFUS systems, the combined robotic FUS approach offers a wide range of spatial flexibility so that highly flexible application of the US wave would be possible, for example, to avoid risk structures within the US field. The setup might help to realize new ways of patient access in MRgFUS therapy. The setup is compatible with any closed-bore MR system and does not require an especially designed patient table.
引用
收藏
页码:2380 / 2393
页数:14
相关论文
共 50 条
  • [41] Volumetric analysis of magnetic resonance-guided focused ultrasound thalamotomy lesions
    Harary, Maya
    Essayed, Walid I.
    Valdes, Pablo A.
    McDannold, Nathan
    Cosgrove, G. Rees
    NEUROSURGICAL FOCUS, 2018, 44 (02)
  • [42] Magnetic resonance-guided focused ultrasound for palliation of painful bone metastases
    Turkevich, V. G.
    Savelyeva, V. V.
    Dunaevsky, I. V.
    Krzhivitsky, P. I.
    Dogadkin, O.
    Bernstein, M.
    Kanaev, S. V.
    EJC SUPPLEMENTS, 2009, 7 (02): : 172 - 172
  • [43] Magnetic Resonance-Guided focused Ultrasound A new Option for Tremor Treatment
    Purrer, V.
    Keil, V. C.
    Groetz, S.
    Hamed, M.
    Upadhyay, N.
    Faber, J.
    Boecker, H.
    Borger, V.
    Pieper, C.
    Wuellner, U.
    NERVENARZT, 2019, 90 (04): : 408 - 411
  • [44] Magnetic Resonance-Guided Focused Ultrasound A New Technology for Clinical Neurosciences
    Jolesz, Ferenc A.
    McDannold, Nathan J.
    NEUROLOGIC CLINICS, 2014, 32 (01) : 253 - +
  • [45] What factors currently limit magnetic resonance-guided focused ultrasound of leiomyomas? A survey conducted at the first international symposium devoted to clinical magnetic resonance-guided focused ultrasound
    Taran, F. Andrei
    Hesley, Gina K.
    Gorny, Krzysztof R.
    Stewart, Elizabeth A.
    FERTILITY AND STERILITY, 2010, 94 (01) : 331 - 334
  • [46] Magnetic resonance image-guided focused ultrasound surgery
    Jolesz, FA
    Hynynen, K
    CANCER JOURNAL, 2002, 8 : S100 - S112
  • [47] Investigation of active tracking for robotic arm assisted magnetic resonance guided focused ultrasound ablation
    Xiao, Xu
    Huang, Zhihong
    Rube, Martin A.
    Melzer, Andreas
    INTERNATIONAL JOURNAL OF MEDICAL ROBOTICS AND COMPUTER ASSISTED SURGERY, 2017, 13 (03):
  • [48] Cost-effectiveness of magnetic resonance-guided focused ultrasound surgery for treatment of uterine fibroids
    Zowall, H.
    Cairns, J. A.
    Brewer, C.
    Lamping, D. L.
    Gedroyc, W. M. W.
    Regan, L.
    BJOG-AN INTERNATIONAL JOURNAL OF OBSTETRICS AND GYNAECOLOGY, 2008, 115 (05) : 653 - 662
  • [49] Transcranial magnetic resonance-guided focused ultrasound surgery at 1.5T: a technical note
    Gagliardo, Cesare
    Midiri, Massimo
    Cannella, Roberto
    Napoli, Alessandro
    Wragg, Paul
    Collura, Giorgio
    Marrale, Maurizio
    Bartolotta, Tommaso Vincenzo
    Catalano, Carlo
    Lagalla, Roberto
    NEURORADIOLOGY JOURNAL, 2019, 32 (02): : 132 - 138
  • [50] Early results of magnetic resonance-guided focused ultrasound surgery of adenomyosis: Analysis of 20 cases
    Fukunishi, Hidenobu
    Funaki, Kaoru
    Sawada, Katsuhiro
    Yamaguchi, Kayo
    Maeda, Tetsuo
    Kaji, Yasushi
    JOURNAL OF MINIMALLY INVASIVE GYNECOLOGY, 2008, 15 (05) : 571 - 579