Modelling the deformation of biologically inspired flexible structures for needle steering
File(s)SubmittedFinalWattsSecoliRodriguezybaena.pdf (2.34 MB)
Accepted version
Author(s)
Watts, T
Secoli, R
Rodriguez y Baena, F
Type
Conference Paper
Abstract
Recent technical advances in minimally invasive surgery have been enabled by the development of new medical instruments and technologies. To date, the vast majority of mechanisms used within a clinical context are rigid, contrasting with the compliant nature of biological tissues. The field of robotics has seen an increased interest in flexible and compliant systems, and in this paper we investigate the behaviour of deformable multi-segment structures, which take their inspiration from the ovipositor design of parasitic wood wasps. These configurable structures have been shown to steer through highly compliant substrates, potentially enabling percutaneous access to the most delicate of tissues, such as the brain. The model presented here sheds light on how the deformation of the unique structure is related to its shape, and allows comparison between different potential designs. A finite element study is used to evaluate the proposed model, which is shown to provide a good fit (root-mean-square deviation 0.2636 mm for 4-segment case). The results show that both 3-segment and 4-segment designs are able to achieve deformation in all directions, however the magnitude of deformation is more consistent in the 4-segment case.
Date Issued
2018-05-25
Date Acceptance
2017-09-16
Citation
Mechanisms and Machine Science, 2018, 58, pp.67-80
ISBN
978-3-319-89910-7
ISSN
2211-0984
Publisher
Springer
Start Page
67
End Page
80
Journal / Book Title
Mechanisms and Machine Science
Volume
58
Copyright Statement
© Springer International Publishing AG, part of Springer Nature 2019. This is a pre-copyedited version of a contribution published in Mechanisms and Machine Science, editors: Rany Rizk, Mariette Awad. Published by Springer. The definitive authenticated version is available online via https://link.springer.com/book/10.1007/978-3-319-89911-4
Sponsor
Commission of the European Communities
Grant Number
688279
Source
The first International Congress for the Advancement of Mechanism, Machine, Robotics and Mechatronics Sciences 2017
Publication Status
Published
Start Date
2017-10-17
Coverage Spatial
Beirut, Lebannon
Date Publish Online
2018-05-25