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Towards hybrid bronchoscope tracking under respiratory motion - Evaluation on a dynamic motion phantom

  • Xióngbiāo Luó
  • , Marco Feuerstein
  • , Takamasa Sugiura
  • , Takayuki Kitasaka
  • , Kazuyoshi Imaizumi
  • , Yoshinori Hasegawa
  • , Kensaku Mori

研究成果: 書籍/レポート タイプへの寄稿会議への寄与

抄録

This paper presents a hybrid camera tracking method that uses electromagnetic (EM) tracking and intensitybased image registration and its evaluation on a dynamic motion phantom. As respiratory motion can significantly affect rigid registration of the EM tracking and CT coordinate systems, a standard tracking approach that initializes intensity-based image registration with absolute pose data acquired by EM tracking will fail when the initial camera pose is too far from the actual pose. We here propose two new schemes to address this problem. Both of these schemes intelligently combine absolute pose data from EM tracking with relative motion data combined from EM tracking and intensity-based image registration. These schemes significantly improve the overall camera tracking performance. We constructed a dynamic phantom simulating the respiratory motion of the airways to evaluate these schemes. Our experimental results demonstrate that these schemes can track a bronchoscope more accurately and robustly than our previously proposed method even when maximum simulated respiratory motion reaches 24 mm.

本文言語英語
ホスト出版物のタイトルMedical Imaging 2010
ホスト出版物のサブタイトルVisualization, Image-Guided Procedures, and Modeling
編集者Kenneth H. Wong, Michael I. Miga
出版社SPIE
ISBN(電子版)9780819480262
DOI
出版ステータス出版済み - 2010
外部発表はい
イベントMedical Imaging 2010: Visualization, Image-Guided Procedures, and Modeling - San Diego, 米国
継続期間: 14-02-201016-02-2010

出版物シリーズ

名前Progress in Biomedical Optics and Imaging - Proceedings of SPIE
7625
ISSN(印刷版)1605-7422

会議

会議Medical Imaging 2010: Visualization, Image-Guided Procedures, and Modeling
国/地域米国
CitySan Diego
Period14-02-1016-02-10

All Science Journal Classification (ASJC) codes

  • 電子材料、光学材料、および磁性材料
  • 原子分子物理学および光学
  • 生体材料
  • 放射線学、核医学およびイメージング

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