Wireless steering mechanism with magnetic actuation for an endoscopic capsule

被引:11
|
作者
Menciassi, A. [1 ]
Valdastri, P. [1 ]
Quaglia, C. [1 ]
Buselli, E. [1 ]
Dario, P. [1 ]
机构
[1] Scuola Super Sant Anna, Ctr Res Microengn CRIM Lab, Pisa, Italy
关键词
D O I
10.1109/IEMBS.2009.5332426
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
This paper illustrates the design, development and testing of a miniature mechanism to be integrated in endoscopic capsules for precise steering capabilities (Magnetic Internal Mechanism, MIM). The mechanism consists of an electromagnetic motor connected to a couple of small permanent magnets and immersed in a static magnetic field produced by an external permanent magnet or a by an electromagnetic coil. The overall steering capsule, integrating the magnetic steering mechanism and the vision system is 15.6 mm in diameter, 48 mm in length, 14.4 g in weight and can be oriented with an accuracy of 0.01 degrees. As regards system scalability, the capsule size could be reduced down to 11 mm in diameter by optimizing some mechanical components. On the other hand, the magnets size cannot be reduced because the magnetic link between internal and external magnets at typical operation distances (about 15 mm) would be weak.
引用
收藏
页码:1204 / 1207
页数:4
相关论文
共 50 条
  • [41] Wireless capsule endoscopic finding in Cronkhite-Canada syndrome
    Cao, X. C.
    Wang, B. M.
    Han, Z. C.
    [J]. GUT, 2006, 55 (06) : 899 - 900
  • [42] A Wireless Powering System for a Vibratory-Actuated Endoscopic Capsule
    Carta, R.
    Pateromichelakis, N.
    Thone, J.
    Sfakiotakis, M.
    Tsakiris, D. P.
    Puers, R.
    [J]. EUROSENSORS XXIV CONFERENCE, 2010, 5 : 572 - 575
  • [43] A Novel Method for Bleeding Detection in Wireless Capsule Endoscopic Images
    Dilna, C.
    Gopi, Varun P.
    [J]. 2015 INTERNATIONAL CONFERENCE ON COMPUTING AND NETWORK COMMUNICATIONS (COCONET), 2015, : 854 - 858
  • [44] A Review on Lossless Compression Techniques for Wireless Capsule Endoscopic Data
    Babu, Caren
    Chandy, D. Abraham
    [J]. CURRENT MEDICAL IMAGING, 2021, 17 (01) : 27 - 38
  • [45] A neurofuzzy methodology for the diagnosis of wireless-capsule endoscopic images
    Kodogiannis, V
    Chowdrey, HS
    [J]. ARTIFICIAL NEURAL NETWORKS: BIOLOGICAL INSPIRATIONS - ICANN 2005, PT 1, PROCEEDINGS, 2005, 3696 : 647 - 652
  • [46] A wireless tattooing capsule endoscope using external electromagnetic actuation and chemical reaction pressure
    Hoang, Manh Cuong
    Le, Viet Ha
    Kim, Jayoung
    Choi, Eunpyo
    Kang, Byungjeon
    Park, Jong-Oh
    Kim, Chang-Sei
    [J]. PLOS ONE, 2019, 14 (07):
  • [47] Electromagnetic Actuation Scheme for Swarm of Magnetic Nanoparticles Steering in Multi-bifurcation
    Hoshiar, Ali Kafash
    Le, Tuan-Anh
    Yoon, Jungwon
    [J]. PROCEEDINGS OF 2019 4TH INTERNATIONAL CONFERENCE ON MANIPULATION, AUTOMATION AND ROBOTICS AT SMALL SCALES (MARSS 2019), 2019,
  • [48] Design, Actuation, and Control of an MRI-Powered Untethered Robot for Wireless Capsule Endoscopy
    Erin, Onder
    Alici, Cagatay
    Sitti, Metin
    [J]. IEEE ROBOTICS AND AUTOMATION LETTERS, 2021, 6 (03): : 6000 - 6007
  • [49] Endoscopic deployment of the wireless capsule using a capsule delivery device in pediatric patients: a case series
    Uko, V.
    Atay, O.
    Mahajan, L.
    Kay, M.
    Hupertz, V.
    Wyllie, R.
    [J]. ENDOSCOPY, 2009, 41 (04) : 380 - 382
  • [50] Impact of magnetic steering on gastric transit time of a capsule endoscopy (with video)
    Jiang, Xi
    Qian, Yang-Yang
    Liu, Xiao
    Pan, Jun
    Zou, Wen-Bin
    Zhou, Wei
    Luo, Yuan-Yuan
    Chen, Yi-Zhi
    Li, Zhao-Shen
    Liao, Zhuan
    [J]. GASTROINTESTINAL ENDOSCOPY, 2018, 88 (04) : 746 - 754