Literature DB >> 22423338

A Study of Needle Image Artifact Localization in Confirmation Imaging of MRI-guided Robotic Prostate Biopsy.

Sang-Eun Song1, Nathan B Cho, Iulian I Iordachita, Peter Guion, Gabor Fichtinger, Louis L Whitcomb.   

Abstract

Recently several systems for magnetic resonance image (MRI) guided needle placement in the prostate have been reported. In comparison to conventional ultrasound-guided needle placement in the prostate, these MRI-guided systems promise improved targeting accuracy for prostate intervention procedures including biopsy, fiducial marker insertion, injection and focal therapy. In MRI-guided needle interventions, after a needle is inserted, the needle position is often confirmed with a volumetric MRI scan. Commonly used titanium needles are not directly visible in an MR image, but they generate a susceptibility artifact in the immediate neighborhood of the needle. This paper reports the results of a quantitative study of the relation between the true position of titanium biopsy needle and the corresponding needle artifact position in MR images. The titanium needle artifact was found to be displaced 0.38 mm and 0.32 mm shift in scanner's frequency and phase encoding direction, respectively. The artifact at the tip of the titanium needle was observed to bend toward the scanner's B(0) magnetic field direction.

Entities:  

Year:  2011        PMID: 22423338      PMCID: PMC3299982          DOI: 10.1109/ICRA.2011.5980309

Source DB:  PubMed          Journal:  IEEE Int Conf Robot Autom        ISSN: 2154-8080


  28 in total

1.  MRI-Compatible Pneumatic Robot for Transperineal Prostate Needle Placement.

Authors:  Gregory S Fischer; Iulian Iordachita; Csaba Csoma; Junichi Tokuda; Simon P Dimaio; Clare M Tempany; Nobuhiko Hata; Gabor Fichtinger
Journal:  IEEE ASME Trans Mechatron       Date:  2008-06-01       Impact factor: 5.303

2.  The accuracy and safety aspects of a novel robotic needle guide manipulator to perform transrectal prostate biopsies.

Authors:  Martijn G Schouten; Janneke Ansems; W Klaas Jan Renema; Dennis Bosboom; Tom W J Scheenen; Jurgen J Fütterer
Journal:  Med Phys       Date:  2010-09       Impact factor: 4.071

3.  MR-compatible assistance system for punction in a high-field system: device and feasibility of transgluteal biopsies of the prostate gland.

Authors:  Stephan Zangos; Christopher Herzog; Katrin Eichler; Renate Hammerstingl; Andreas Lukoschek; Stefanie Guthmann; Bernd Gutmann; Uwe Joseph Schoepf; Phillip Costello; Thomas J Vogl
Journal:  Eur Radiol       Date:  2006-10-10       Impact factor: 5.315

4.  The feasibility of MR-image guided prostate biopsy using piezoceramic motors inside or near to the magnet isocentre.

Authors:  Haytham Elhawary; Aleksander Zivanovic; Marc Rea; Brian Davies; Collin Besant; Donald McRobbie; Nandita de Souza; Ian Young; Michael Lampérth
Journal:  Med Image Comput Comput Assist Interv       Date:  2006

5.  Transperineal prostate biopsy under magnetic resonance image guidance: a needle placement accuracy study.

Authors:  Philip Blumenfeld; Nobuhiko Hata; Simon DiMaio; Kelly Zou; Steven Haker; Gabor Fichtinger; Clare M C Tempany
Journal:  J Magn Reson Imaging       Date:  2007-09       Impact factor: 4.813

6.  MRI-guided robotic system for transperineal prostate interventions: proof of principle.

Authors:  Michiel R van den Bosch; Maaike R Moman; Marco van Vulpen; Jan J Battermann; Ed Duiveman; Leonard J van Schelven; Hendrik de Leeuw; Jan J W Lagendijk; Marinus A Moerland
Journal:  Phys Med Biol       Date:  2010-02-10       Impact factor: 3.609

7.  Sextant localization of prostate cancer: comparison of sextant biopsy, magnetic resonance imaging and magnetic resonance spectroscopic imaging with step section histology.

Authors:  A E Wefer; H Hricak; D B Vigneron; F V Coakley; Y Lu; J Wefer; U Mueller-Lisse; P R Carroll; J Kurhanewicz
Journal:  J Urol       Date:  2000-08       Impact factor: 7.450

8.  Development of a Pneumatic Robot for MRI-guided Transperineal Prostate Biopsy and Brachytherapy: New Approaches.

Authors:  Sang-Eun Song; Nathan B Cho; Gregory Fischer; Nobuhito Hata; Clare Tempany; Gabor Fichtinger; Iulian Iordachita
Journal:  IEEE Int Conf Robot Autom       Date:  2010-07-15

9.  "MRI Stealth" robot for prostate interventions.

Authors:  Dan Stoianovici; Danny Song; Doru Petrisor; Daniel Ursu; Dumitru Mazilu; Michael Muntener; Michael Mutener; Michael Schar; Alexandru Patriciu
Journal:  Minim Invasive Ther Allied Technol       Date:  2007       Impact factor: 2.442

10.  MR-guided transgluteal biopsies with an open low-field system in patients with clinically suspected prostate cancer: technique and preliminary results.

Authors:  Stephan Zangos; Katrin Eichler; Kerstin Engelmann; Mukhtiar Ahmed; Sebastian Dettmer; Christopher Herzog; Wasilios Pegios; A Wetter; Thomas Lehnert; Martin G Mack; Thomas J Vogl
Journal:  Eur Radiol       Date:  2004-09-04       Impact factor: 5.315

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  4 in total

1.  Accuracy study of a robotic system for MRI-guided prostate needle placement.

Authors:  Reza Seifabadi; Nathan B J Cho; Sang-Eun Song; Junichi Tokuda; Nobuhiko Hata; Clare M Tempany; Gabor Fichtinger; Iulian Iordachita
Journal:  Int J Med Robot       Date:  2012-06-08       Impact factor: 2.547

2.  Towards ultrasound probe positioning optimization during prostate needle biopsy using pressure feedback.

Authors:  Seyed Reza Mousavi; Kaamran Raahemifar; Stephen Pautler; Abbas Samani
Journal:  Int J Comput Assist Radiol Surg       Date:  2013-05-05       Impact factor: 2.924

3.  Biopsy needle artifact localization in MRI-guided robotic transrectal prostate intervention.

Authors:  Sang-Eun Song; Nathan Bongjoon Cho; Iulian I Iordachita; Peter Guion; Gabor Fichtinger; Aradhana Kaushal; Kevin Camphausen; Louis L Whitcomb
Journal:  IEEE Trans Biomed Eng       Date:  2012-04-03       Impact factor: 4.538

4.  Real-time probe tracking using EM-optical sensor for MRI-guided cryoablation.

Authors:  Wenpeng Gao; Baichuan Jiang; Daniel F Kacher; Barry Fetics; Erez Nevo; Thomas C Lee; Jagadeesan Jayender
Journal:  Int J Med Robot       Date:  2017-11-28       Impact factor: 2.547

  4 in total

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