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Liver surface deformation model for minimally invasive surgery

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

1 Citation (Scopus)

Abstract

The enormous number of advantages of minimally invasive surgery leads to the development of computer systems that are helpful tools during laparoscopic operations. In the paper a liver deformation model has been proposed including the shape deflection of the liver surface while inserting a tool into the organ and extracting it. The model is an answer to the need of better visualization during endoscopic surgery. The desired solution to this issue should be both fast and accurate. The existing solutions to the problem of internal organ deformation were briefly presented. The proposed model is an extension of previously introduced liver deflection models [5], [4], which have been enriched by calculating the shape of liver surface after breaking the organ structure. The main assumptions of the model have been specified. Essential mathematical transformations have been discussed. The correctness of the new model has been verified using US images of a liver while pushing and pulling a laparoscopic tool inside the organ. Pictures included in the paper enable the visual comparison of the real deformation with the one calculated using the new model.

Original languageEnglish
Title of host publicationProceedings of the 18th International Conference - Mixed Design of Integrated Circuits and Systems, MIXDES 2011
Pages52-55
Number of pages4
Publication statusPublished - 2011
Event18th International Conference - Mixed Design of Integrated Circuits and Systems, MIXDES 2011 - Gliwice, Poland
Duration: 16 Jun 201118 Jun 2011

Publication series

NameProceedings of the 18th International Conference - Mixed Design of Integrated Circuits and Systems, MIXDES 2011

Conference

Conference18th International Conference - Mixed Design of Integrated Circuits and Systems, MIXDES 2011
Country/TerritoryPoland
CityGliwice
Period16/06/1118/06/11

Keywords

  • liver surgery
  • minimally invasive surgery
  • soft tissue deformation

ASJC Scopus subject areas

  • Artificial Intelligence
  • Hardware and Architecture
  • Control and Systems Engineering
  • Electrical and Electronic Engineering

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