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Published in: International Journal of Computer Assisted Radiology and Surgery 4/2019

09-02-2019 | Original Article

A novel robotic system for vascular intervention: principles, performances, and applications

Authors: Hao Shen, Cheng Wang, Le Xie, Shoujun Zhou, Lixu Gu, Hongzhi Xie

Published in: International Journal of Computer Assisted Radiology and Surgery | Issue 4/2019

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Abstract

Purpose

This paper describes the design, principles, performances, and applications of a novel image-guided master–slave robotic system for vascular intervention (VI), including the performance evaluation and in vivo trials.

Methods

Based on the peer-to-peer (P2P) remote communication system, the kinetics analysis, the sliding-mode neural network self-adaptive control model and the feedback system, this new robotic system can accomplish in real time a number of VI operations, including guidewire translation and rotation, balloon catheter translation, and contrast agent injection. The master–slave design prevents surgeons from being exposed to X-ray radiation, which means that they are not required to wear a heavy lead suit. We also conducted a performance evaluation of the new system, which assessed the speed, position tracking, and accuracy, as well as in vivo swine trials.

Results

The speed and position tracking effects are really good, which contribute to the high level of performance in terms of the translational (error ≤ 0.45%) and rotational (error ≤ 2.6°) accuracy. In addition, the accuracy of the contrast agent injection is less than 0.2 ml. The robotic system successfully performed both the stent revascularization of an arteria carotis and four in vivo trials. The haptic feedback data correspond with the robotic-assisted procedure, and peaks and troughs of data occur regularly.

Conclusions

By means of the performance evaluation and four successful in vivo trials, the feasibility and efficiency of the new robotic system are validated, which should prove helpful for further research.

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Literature
1.
go back to reference Venketasubramanian N, Yoon BW, Pandian J, Navarro JC (2017) Stroke epidemiology in south, east, and South-East Asia: a review. J Stroke 19(3):286–294CrossRefPubMedPubMedCentral Venketasubramanian N, Yoon BW, Pandian J, Navarro JC (2017) Stroke epidemiology in south, east, and South-East Asia: a review. J Stroke 19(3):286–294CrossRefPubMedPubMedCentral
2.
go back to reference World Health Organization (2017) World health statistics 2017: monitoring health for the SDGs. World Health Organization, Geneva World Health Organization (2017) World health statistics 2017: monitoring health for the SDGs. World Health Organization, Geneva
3.
go back to reference Rafii-Tari H, Payne CJ, Yang GZ (2014) Current and emerging robot-assisted endovascular catheterization technologies: a review. Ann Biomed Eng 42(4):697–715CrossRefPubMed Rafii-Tari H, Payne CJ, Yang GZ (2014) Current and emerging robot-assisted endovascular catheterization technologies: a review. Ann Biomed Eng 42(4):697–715CrossRefPubMed
4.
go back to reference Lin JC (2013) The role of robotic surgical system in the management of vascular disease. Ann Vasc Surg 27(7):976–983CrossRefPubMed Lin JC (2013) The role of robotic surgical system in the management of vascular disease. Ann Vasc Surg 27(7):976–983CrossRefPubMed
5.
go back to reference Da L, Zhang D, Wang T (2008) Overview of the vascular interventional robot. Int J Med Robot Comp 4(4):289CrossRef Da L, Zhang D, Wang T (2008) Overview of the vascular interventional robot. Int J Med Robot Comp 4(4):289CrossRef
6.
go back to reference Daneshmand M, Bilici O, Bolotnikova A, Anbarjafari G (2017) Medical robots with potential applications in participatory and opportunistic remote sensing: a review. Robot Auton Syst 95:160–180CrossRef Daneshmand M, Bilici O, Bolotnikova A, Anbarjafari G (2017) Medical robots with potential applications in participatory and opportunistic remote sensing: a review. Robot Auton Syst 95:160–180CrossRef
7.
go back to reference Arai F, Fujimura R, Fukuda T, Negoro M (2002) New catheter driving method using linear stepping mechanism for intravascular neurosurgery. In: IEEE ICRA, 2002. Proceedings, Vol 3, pp 2944–2949 Arai F, Fujimura R, Fukuda T, Negoro M (2002) New catheter driving method using linear stepping mechanism for intravascular neurosurgery. In: IEEE ICRA, 2002. Proceedings, Vol 3, pp 2944–2949
8.
go back to reference Xiao N, Guo J, Guo S, Tamiya T (2012) A robotic catheter system with real-time force feedback and monitor. Australas Phys Eng Sci Med 35(3):283–289CrossRefPubMed Xiao N, Guo J, Guo S, Tamiya T (2012) A robotic catheter system with real-time force feedback and monitor. Australas Phys Eng Sci Med 35(3):283–289CrossRefPubMed
9.
go back to reference Guo S, Kondo H, Wang J, Guo J, Tamiya T (2007) A new catheter operating system for medical applications. In: IEEE/ICME, pp 82–86 Guo S, Kondo H, Wang J, Guo J, Tamiya T (2007) A new catheter operating system for medical applications. In: IEEE/ICME, pp 82–86
10.
go back to reference Srimathveeravalli G, Kesavadas T, Li X (2010) Design and fabrication of a robotic mechanism for remote steering and positioning of interventional devices. Int J Med Robot Comp 6(2):160–170 Srimathveeravalli G, Kesavadas T, Li X (2010) Design and fabrication of a robotic mechanism for remote steering and positioning of interventional devices. Int J Med Robot Comp 6(2):160–170
12.
go back to reference Romo E, Hart SJ, Covington T (2016) Low friction instrument driver interface for robotic systems [P]. US 20160338783 A1 Romo E, Hart SJ, Covington T (2016) Low friction instrument driver interface for robotic systems [P]. US 20160338783 A1
13.
go back to reference Pankratov MM (2011) Robotically assisted PCI with CorPath 200 system: early evidence of potential benefits for patient and physician. Cardiovasc Revasc Med 12(3):e40–e40CrossRef Pankratov MM (2011) Robotically assisted PCI with CorPath 200 system: early evidence of potential benefits for patient and physician. Cardiovasc Revasc Med 12(3):e40–e40CrossRef
14.
go back to reference Pedersen A (2011) Trial to evaluate CorPath robotic system for PCI. Med Device Daily 15(18):1 Pedersen A (2011) Trial to evaluate CorPath robotic system for PCI. Med Device Daily 15(18):1
15.
go back to reference Granada JF, Delgado JA, Uribe MP, Fernandez A, Blanco G, Leon MB, Weisz Giora (2011) First-in-human evaluation of a novel robotic-assisted coronary angioplasty system. JACC-Cardiovasc Interv 4(4):460–465CrossRefPubMed Granada JF, Delgado JA, Uribe MP, Fernandez A, Blanco G, Leon MB, Weisz Giora (2011) First-in-human evaluation of a novel robotic-assisted coronary angioplasty system. JACC-Cardiovasc Interv 4(4):460–465CrossRefPubMed
16.
go back to reference Khan EM, Ng GA, Neelagaru S, Abi-Samra FM, Lee J, Giudici M, Gohn D, Winkle RA, Sussman J, Knight BP, Berman A, Calkins H (2013) First experience with a novel robotic remote catheter system: amigo™ mapping trial. J Interv Card Electr 37(2):121–129CrossRef Khan EM, Ng GA, Neelagaru S, Abi-Samra FM, Lee J, Giudici M, Gohn D, Winkle RA, Sussman J, Knight BP, Berman A, Calkins H (2013) First experience with a novel robotic remote catheter system: amigo™ mapping trial. J Interv Card Electr 37(2):121–129CrossRef
17.
go back to reference Won JY, Yi BJ, Cha HJ (2016) Review of new master/slave catheter driving vascular intervention robot system: intervention radiologist’s perspective. HMR 36(4):225 Won JY, Yi BJ, Cha HJ (2016) Review of new master/slave catheter driving vascular intervention robot system: intervention radiologist’s perspective. HMR 36(4):225
18.
go back to reference Shen H, Wang C, Xie L, Zhou S, Gu L, Xie H (2018) A novel remote-controlled robotic system for cerebrovascular intervention. Int J Med Robot Comput Assist Surg Mrcas, 14: e1943 Shen H, Wang C, Xie L, Zhou S, Gu L, Xie H (2018) A novel remote-controlled robotic system for cerebrovascular intervention. Int J Med Robot Comput Assist Surg Mrcas, 14: e1943
19.
go back to reference Zeng Q, Zhou SJ, Shen H, Wang C (2018). A network communication protocols for robotic-assisted vascular intervention systems. BST Zeng Q, Zhou SJ, Shen H, Wang C (2018). A network communication protocols for robotic-assisted vascular intervention systems. BST
20.
go back to reference Li Zi-Yan, Jing-Li Fu, Chen Li-Qun (2009) Euler–lagrange equation from nonlocal-in-time kinetic energy of nonconservative system. Phys Lett A 374(2):106–109CrossRef Li Zi-Yan, Jing-Li Fu, Chen Li-Qun (2009) Euler–lagrange equation from nonlocal-in-time kinetic energy of nonconservative system. Phys Lett A 374(2):106–109CrossRef
21.
go back to reference Bai Z (2004) Study of a 3-dof parallel manipulator dynamics based on lagrange’s equation. J B Univ Aeronaut Astronaut 30(1):51–54 Bai Z (2004) Study of a 3-dof parallel manipulator dynamics based on lagrange’s equation. J B Univ Aeronaut Astronaut 30(1):51–54
22.
go back to reference Xia HY, Zhan WB (2003) Application and development expression of lagrange equation. J Luoyang Teach Coll 2:27–29 Xia HY, Zhan WB (2003) Application and development expression of lagrange equation. J Luoyang Teach Coll 2:27–29
23.
go back to reference Edwards C, Spurgeon S (1998) Sliding mode control: theory and applications. CRC Press, Boca RatonCrossRef Edwards C, Spurgeon S (1998) Sliding mode control: theory and applications. CRC Press, Boca RatonCrossRef
24.
go back to reference Utkin VI, Chang HC (2007) Sliding mode control on electro-mechanical systems. Math Probl Eng 8(4–5):451–473 Utkin VI, Chang HC (2007) Sliding mode control on electro-mechanical systems. Math Probl Eng 8(4–5):451–473
25.
go back to reference Liu J, Wang X (2011) Advanced sliding mode control for mechanical systems. Tsinghua University Press, Springer, BerlinCrossRef Liu J, Wang X (2011) Advanced sliding mode control for mechanical systems. Tsinghua University Press, Springer, BerlinCrossRef
26.
go back to reference Liu J (2013) Radial basis function (rbf) neural network control for mechanical systems. Springer, Berlin, pp 19–53CrossRef Liu J (2013) Radial basis function (rbf) neural network control for mechanical systems. Springer, Berlin, pp 19–53CrossRef
27.
go back to reference Seshagiri S, Khalil HK (2000) Output feedback control of nonlinear systems using RBF neural networks. In: Proceedings of the ACC, 1999, Vol 11, pp 2808–2812 Seshagiri S, Khalil HK (2000) Output feedback control of nonlinear systems using RBF neural networks. In: Proceedings of the ACC, 1999, Vol 11, pp 2808–2812
28.
go back to reference Welch G, Bishop G (1995). An introduction to the kalman filter. Course Notes 8 of ACM SIGGRAPH 2001, 8(7): 127–132 Welch G, Bishop G (1995). An introduction to the kalman filter. Course Notes 8 of ACM SIGGRAPH 2001, 8(7): 127–132
29.
go back to reference Evensen G (2003) The ensemble kalman filter: theoretical formulation and practical implementation. Ocean Dyn 53(4):343–367CrossRef Evensen G (2003) The ensemble kalman filter: theoretical formulation and practical implementation. Ocean Dyn 53(4):343–367CrossRef
30.
go back to reference Brown RG, Hwang PYC (1997) Introduction to random signals and applied Kalman filtering: with MATLAB exercises and solutions. Wiley, New York Brown RG, Hwang PYC (1997) Introduction to random signals and applied Kalman filtering: with MATLAB exercises and solutions. Wiley, New York
31.
go back to reference Ovando-Shelley E, Santoyo E, de Oliveir M (2013) Intervention techniques. Geotechnical engineering for the preservation of monuments and historic sites, pp 75–91 Ovando-Shelley E, Santoyo E, de Oliveir M (2013) Intervention techniques. Geotechnical engineering for the preservation of monuments and historic sites, pp 75–91
Metadata
Title
A novel robotic system for vascular intervention: principles, performances, and applications
Authors
Hao Shen
Cheng Wang
Le Xie
Shoujun Zhou
Lixu Gu
Hongzhi Xie
Publication date
09-02-2019
Publisher
Springer International Publishing
Published in
International Journal of Computer Assisted Radiology and Surgery / Issue 4/2019
Print ISSN: 1861-6410
Electronic ISSN: 1861-6429
DOI
https://doi.org/10.1007/s11548-018-01906-w

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