Robotic Vertebral Puncture System for Percutaneous Vertebroplasty

被引:7
|
作者
Onogi, Shinya [1 ]
Nakajima, Yoshikazu [2 ]
Koyama, Tsuyoshi [3 ]
Tamura, Yuichi [4 ]
Kobayashi, Etsuko [5 ]
Sakuma, Ichiro [5 ]
Sugano, Nobuhiko [6 ]
Yonenobu, Kazuo [3 ]
机构
[1] Tokyo Univ Agr & Technol, Grad Sch Bioapplicat & Syst Engn, Koganei, Tokyo 1838538, Japan
[2] Univ Tokyo, Grad Sch Engn, Dept Bioengn, Tokyo 1138654, Japan
[3] Osaka Minami Hosp, Osaka 5400006, Japan
[4] Toyonaka City Hosp, Osaka 5608565, Japan
[5] Univ Tokyo, Grad Sch Engn, Dept Precis Engn, Tokyo 1138654, Japan
[6] Osaka Univ, Grad Sch Med, Dept Organ Regulat Med, Suita, Osaka 5650871, Japan
关键词
Surgical robotics; Minimally invasive surgery; X-ray-translucent mechanism; Passive failsafe mechanism; HIP-REPLACEMENT;
D O I
10.5405/jmbe.954
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
A robotic system with an X-ray-translucent end-effector and a passive failsafe mechanism is proposed for percutaneous vertebroplasty (PVP). The proposed system consists of a puncture robot with five degrees of freedom, a workstation for the navigation system, and an optical tracking device. The end-effector of the robot is partially X-ray translucent to allow the needle insertion process to be monitored by an X-ray fluoroscope. The robot has a passive failsafe mechanism for safety purposes. A needle assembly is attached to the robot by four asymmetric contacting parts supported by four springs. To evaluate the puncture accuracy of the system, puncture tests were conducted on 50 pedicles of five polyurethane phantoms simulating human lumbar vertebrae from L1 to L5. Pre-operative computed tomography (CT) volumes were acquired for the respective phantoms and segmented. Surgical plans were made for the respective pedicles by a surgeon. After the system was placed at the experimental table's side and the phantom was fixed on the table, robot calibration and phantom registration were performed. During the experiments, no needles were found to be protruding from the pedicles. The positioning accuracy measured by the optical tracking device was 0.64 mm root-mean-square (RMS) and 1.09 degrees RMS (error range = 0.1-0.98 mm, 0.96-1.36 degrees). After the tests, postoperative CT volumes of the respective phantoms were acquired and the puncture trajectories were analyzed. The puncture errors between the planned and actual trajectories were 1.66 mm RMs and 1.62 degrees RMS (error range = 0.13-4.21 mm, 0.36-2.73 degrees). The results demonstrate the feasibility of safe and accurate punctures with the proposed system.
引用
收藏
页码:491 / 496
页数:6
相关论文
共 50 条
  • [41] Percutaneous curved vertebroplasty for osteoporotic vertebral compression fracture
    Lu, Anqi
    Wang, Xiaoping
    Huang, Daoqiang
    Feng, Weili
    ASIAN JOURNAL OF SURGERY, 2022, 45 (10) : 2050 - 2051
  • [42] Symptomatic Cervical Vertebral Hemangioma Treated by Percutaneous Vertebroplasty
    Jian, Wang
    PAIN PHYSICIAN, 2013, 16 (04) : E419 - E425
  • [43] Predictors of outcomes of percutaneous vertebroplasty for osteoporotic vertebral fractures
    Alvarez, L
    Pérez-Higueras, A
    Granizo, JJ
    de Miguel, I
    Quiñones, D
    Rossi, RE
    SPINE, 2005, 30 (01) : 87 - 92
  • [44] Treatment of painful osteoporotic vertebral fractures with percutaneous vertebroplasty
    Capozzi, Anna
    Scambia, Giovanni
    Pedicelli, Alessandro
    Evangelista, Maurizio
    Lello, Stefano
    GYNECOLOGICAL ENDOCRINOLOGY, 2016, 32 : 178 - 178
  • [45] Percutaneous vertebroplasty for osteoporotic vertebral compression fracture (Review)
    Buchbinder, Rachelle
    Johnston, Renea V.
    Rischin, Kobi J.
    Homik, Joanne
    Jones, C. Allyson
    Golmohammadi, Kamran
    Kallmes, David F.
    COCHRANE DATABASE OF SYSTEMATIC REVIEWS, 2018, (11):
  • [46] Vertebral split fractures: Technical feasibility of percutaneous vertebroplasty
    Huwart, Laurent
    Foti, Pauline
    Andreani, Olivier
    Hauger, Olivier
    Cervantes, Elodie
    Brunner, Philippe
    Boileau, Pascal
    Amoretti, Nicolas
    EUROPEAN JOURNAL OF RADIOLOGY, 2014, 83 (01) : 173 - 178
  • [47] Percutaneous Vertebral Augmentation: The Status of Vertebroplasty and Current Controversies
    Hargunani, Rikin
    Le Corroller, Thomas
    Khashoggi, Khalid
    Murphy, Kieran J.
    Munk, Peter L.
    SEMINARS IN MUSCULOSKELETAL RADIOLOGY, 2011, 15 (02) : 117 - 124
  • [48] Our percutaneous vertebroplasty applications in vertebral compression fractures
    Karaman, Haktan
    Kaya, Sedat
    Tufek, Adnan
    Olmez Kavak, Gonul
    Baysal Yildirim, Zeynep
    Celik, Feyzi
    Akdemir, Mehmet Salim
    AGRI-THE JOURNAL OF THE TURKISH SOCIETY OF ALGOLOGY, 2012, 24 (03): : 104 - 110
  • [49] The Retrial of Percutaneous Vertebroplasty for the Treatment of Vertebral Compression Fracture
    Kim, Han Woong
    Kwon, Austin
    Lee, Min Cheol
    Song, Jae Wook
    Kim, Sang Kyu
    Kim, In Hwan
    JOURNAL OF KOREAN NEUROSURGICAL SOCIETY, 2010, 47 (04) : 278 - 281
  • [50] Imaging of the vertebral venous plexuses in the context of percutaneous vertebroplasty
    Urbanski, B.
    Majewski, M.
    Szlufik, S.
    Zebala, M.
    Popiolek, W.
    EUROPEAN JOURNAL OF MEDICAL RESEARCH, 2010, 15 : 144 - 144