Literature DB >> 7554835

Ophthalmic microsurgical robot and associated virtual environment.

I W Hunter1, L A Jones, M A Sagar, S R Lafontaine, P J Hunter.   

Abstract

An ophthalmic virtual environment has been developed as part of a teleoperated microsurgical robot built to perform surgery on the eye. The virtual environment is unique in that it incorporates a detailed continuum model of the anatomical structures of the eye, its mechanics and optical properties, together with a less detailed geometric-mechanical model of the face. In addition to providing a realistic visual display of the eye being operated on, the virtual environment simulates tissue properties during manipulation and cutting and the forces involved are determined by solving a mechanical finite element model of the tissue. These forces are then fed back to the operator via a force reflecting master and so the surgeon can experience both the visual and mechanical sensations associated with performing surgery. The virtual environment can be used to enhance the images produced by the camera on the microsurgical slave robot during surgery and as a surgical simulator in which it replaces these images with computer graphics generated from the eye model.

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Year:  1995        PMID: 7554835     DOI: 10.1016/0010-4825(94)00042-o

Source DB:  PubMed          Journal:  Comput Biol Med        ISSN: 0010-4825            Impact factor:   4.589


  12 in total

1.  Association of Weight-Adjusted Caffeine and β-Blocker Use With Ophthalmology Fellow Performance During Simulated Vitreoretinal Microsurgery.

Authors:  Marina Roizenblatt; Vitor Dias Gomes Barrios Marin; Alex Treiger Grupenmacher; Felipe Muralha; Jean Faber; Kim Jiramongkolchai; Peter Louis Gehlbach; Michel Eid Farah; Rubens Belfort; Mauricio Maia
Journal:  JAMA Ophthalmol       Date:  2020-08-01       Impact factor: 7.389

Review 2.  Strategies and methods for aligning current and best medical practices. The role of information technologies.

Authors:  E C Schneider; J M Eisenberg
Journal:  West J Med       Date:  1998-05

3.  Telerobotic contact transscleral cyclophotocoagulation of the ciliary body with the diode laser.

Authors:  David A Belyea; Michael J Mines; Wen-Jeng Yao; Jacob A Dan; Kraig S Bower
Journal:  J Robot Surg       Date:  2013-07-26

4.  Towards Robot-Assisted Vitreoretinal Surgery: Force-Sensing Micro-Forceps Integrated with a Handheld Micromanipulator.

Authors:  Berk Gonenc; Ellen Feldman; Peter Gehlbach; James Handa; Russell H Taylor; Iulian Iordachita
Journal:  IEEE Int Conf Robot Autom       Date:  2014-05

5.  3D visualization and simulation in surgical planning system of orbital hypertelorism.

Authors:  Kai Xie; Sheng Yang; Y M Zhu
Journal:  J Med Syst       Date:  2009-11-27       Impact factor: 4.460

6.  Motorized Force-Sensing Micro-Forceps with Tremor Cancelling and Controlled Micro-Vibrations for Easier Membrane Peeling.

Authors:  Berk Gonenc; Peter Gehlbach; James Handa; Russell H Taylor; Iulian Iordachita
Journal:  Proc IEEE RAS EMBS Int Conf Biomed Robot Biomechatron       Date:  2014-08

7.  Evaluation of a Micro-Force Sensing Handheld Robot for Vitreoretinal Surgery.

Authors:  Berk Gonenc; Marcin A Balicki; James Handa; Peter Gehlbach; Cameron N Riviere; Russell H Taylor; Iulian Iordachita
Journal:  Rep U S       Date:  2012-12-20

8.  A Comparative Study for Robot Assisted Vitreoretinal Surgery: Micron vs. the Steady-Hand Robot.

Authors:  Berk Gonenc; James Handa; Peter Gehlbach; Russell H Taylor; Iulian Iordachita
Journal:  IEEE Int Conf Robot Autom       Date:  2013

9.  A novel educational tool for teaching ocular ultrasound.

Authors:  Ms Mustafa; J Montgomery; Hr Atta
Journal:  Clin Ophthalmol       Date:  2011-06-23

10.  Robot-Assisted Pterygium Surgery: Feasibility Study in a Nonliving Porcine Model.

Authors:  Tristan Bourcier; Mathieu Nardin; Arnaud Sauer; David Gaucher; Claude Speeg; Didier Mutter; Jacques Marescaux; Philippe Liverneaux
Journal:  Transl Vis Sci Technol       Date:  2015-02-24       Impact factor: 3.283

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