Literature DB >> 21411401

A portable image overlay projection device for computer-aided open liver surgery.

Kate A Gavaghan1, Matthias Peterhans, Thiago Oliveira-Santos, Stefan Weber.   

Abstract

Image overlay projection is a form of augmented reality that allows surgeons to view underlying anatomical structures directly on the patient surface. It improves intuitiveness of computer-aided surgery by removing the need for sight diversion between the patient and a display screen and has been reported to assist in 3-D understanding of anatomical structures and the identification of target and critical structures. Challenges in the development of image overlay technologies for surgery remain in the projection setup. Calibration, patient registration, view direction, and projection obstruction remain unsolved limitations to image overlay techniques. In this paper, we propose a novel, portable, and handheld-navigated image overlay device based on miniature laser projection technology that allows images of 3-D patient-specific models to be projected directly onto the organ surface intraoperatively without the need for intrusive hardware around the surgical site. The device can be integrated into a navigation system, thereby exploiting existing patient registration and model generation solutions. The position of the device is tracked by the navigation system's position sensor and used to project geometrically correct images from any position within the workspace of the navigation system. The projector was calibrated using modified camera calibration techniques and images for projection are rendered using a virtual camera defined by the projectors extrinsic parameters. Verification of the device's projection accuracy concluded a mean projection error of 1.3 mm. Visibility testing of the projection performed on pig liver tissue found the device suitable for the display of anatomical structures on the organ surface. The feasibility of use within the surgical workflow was assessed during open liver surgery. We show that the device could be quickly and unobtrusively deployed within the sterile environment.

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Year:  2011        PMID: 21411401     DOI: 10.1109/TBME.2011.2126572

Source DB:  PubMed          Journal:  IEEE Trans Biomed Eng        ISSN: 0018-9294            Impact factor:   4.538


  15 in total

1.  Evaluation of a portable image overlay projector for the visualisation of surgical navigation data: phantom studies.

Authors:  K Gavaghan; T Oliveira-Santos; M Peterhans; M Reyes; H Kim; S Anderegg; S Weber
Journal:  Int J Comput Assist Radiol Surg       Date:  2011-10-21       Impact factor: 2.924

2.  Image overlay solution based on threshold detection for a compact near infrared fluorescence goggle system.

Authors:  Shengkui Gao; Suman B Mondal; Nan Zhu; RongGuang Liang; Samuel Achilefu; Viktor Gruev
Journal:  J Biomed Opt       Date:  2015-01       Impact factor: 3.170

3.  Perception enhancement using importance-driven hybrid rendering for augmented reality based endoscopic surgical navigation.

Authors:  Yakui Chu; Xu Li; Xilin Yang; Danni Ai; Yong Huang; Hong Song; Yurong Jiang; Yongtian Wang; Xiaohong Chen; Jian Yang
Journal:  Biomed Opt Express       Date:  2018-10-04       Impact factor: 3.732

4.  Augmented reality in open surgery.

Authors:  Benish Fida; Fabrizio Cutolo; Gregorio di Franco; Mauro Ferrari; Vincenzo Ferrari
Journal:  Updates Surg       Date:  2018-07-13

5.  Projection-based visual guidance for robot-aided RF needle insertion.

Authors:  Rong Wen; Chee-Kong Chui; Sim-Heng Ong; Kah-Bin Lim; Stephen Kin-Yong Chang
Journal:  Int J Comput Assist Radiol Surg       Date:  2013-05-07       Impact factor: 2.924

6.  Stereotactic co-axial projection imaging for augmented reality neuronavigation: a proof-of-concept study.

Authors:  Bingxuan Wu; Peng Liu; Chi Xiong; Chenmeng Li; Fan Zhang; Shuwei Shen; Pengfei Shao; Peng Yao; Chaoshi Niu; Ronald Xu
Journal:  Quant Imaging Med Surg       Date:  2022-07

7.  Current Evidence in Image-Guided Liver Surgery.

Authors:  Amber L Simpson; T Peter Kingham
Journal:  J Gastrointest Surg       Date:  2016-03-08       Impact factor: 3.452

Review 8.  Clinical application of navigation surgery using augmented reality in the abdominal field.

Authors:  Tomoyoshi Okamoto; Shinji Onda; Katsuhiko Yanaga; Naoki Suzuki; Asaki Hattori
Journal:  Surg Today       Date:  2014-06-06       Impact factor: 2.549

Review 9.  Enhanced Visualization: From Intraoperative Tissue Differentiation to Augmented Reality.

Authors:  Dirk Wilhelm; Thomas Vogel; Daniel Ostler; Nils Marahrens; Nils Kohn; Sebastian Koller; Helmut Friess; Michael Kranzfelder
Journal:  Visc Med       Date:  2018-02-16

10.  Augmented reality in the operating room: a clinical feasibility study.

Authors:  Cyrill Dennler; David E Bauer; Anne-Gita Scheibler; José Spirig; Tobias Götschi; Philipp Fürnstahl; Mazda Farshad
Journal:  BMC Musculoskelet Disord       Date:  2021-05-18       Impact factor: 2.362

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