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Published in: International Journal of Computer Assisted Radiology and Surgery 5/2022

15-04-2022 | Original Article

Robotic system with programmable motion constraint for transurethral resection

Authors: Zhen Sun, Tianmiao Wang, Chunheng Lu, Yu Shen, Junchen Wang

Published in: International Journal of Computer Assisted Radiology and Surgery | Issue 5/2022

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Abstract

Purpose

We propose a tele-operated transurethral robotic system with programmable motion constraint for tissue resection.

Methods

The system consists of a surgeon console with an interaction device, a 7-degree-of-freedom manipulator, and a surgical end-effector. The surgical end-effector holds a resectoscope with a motor driven mechanism to perform electrocautery. Instrumental motion with remote center-of-motion (RCM) constraint is important for transurethral procedures since the damage to the healthy structures can be minimized. A screw theory-based programmable RCM generator is proposed to map the inputs of the interaction device to the RCM manifold in the manipulator space. To achieve smooth real-time manipulator following control with RCM constraint, an online trajectory planner is presented.

Results

Experiments were performed to evaluate the motion precision and accuracy. The results show that both the RCM precision and accuracy were less than 1 mm. Ex-vivo experiments of robotic resection of soft tissue were also carried out. The results show that our robotic system could achieve instrumental manipulation and delicate cutting under the real-time control of a surgeon.

Conclusions

Our robotic system could assist surgeons in performing transurethral procedures in a remote manner with potential advantages of being accurate, less laborious and clean.

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Appendix
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Literature
1.
go back to reference Davies BL, Hibberd RD (1993) Robotic surgery at imperial college london. In: Proceedings of IEEE systems man and cybernetics conference - SMC, vol 3. pp 176–1813 Davies BL, Hibberd RD (1993) Robotic surgery at imperial college london. In: Proceedings of IEEE systems man and cybernetics conference - SMC, vol 3. pp 176–1813
2.
go back to reference Mei Q, Harris SJ, Arambula-Cosio F, Nathan MS, Hibberd RD, Wickham JEA, Davies BL (1996) Probot- a computer integrated prostatectomy system. Visualization in biomedical computing. Springer, Berlin, Heidelberg, pp 581–590CrossRef Mei Q, Harris SJ, Arambula-Cosio F, Nathan MS, Hibberd RD, Wickham JEA, Davies BL (1996) Probot- a computer integrated prostatectomy system. Visualization in biomedical computing. Springer, Berlin, Heidelberg, pp 581–590CrossRef
3.
go back to reference Mei Q, Harris SJ, Hibberd RD, Wickham JEA, Davies BL (1999) Optimising operation process for computer integrated prostatectomy. In: Taylor C, Colchester A (eds) MICCAI’99. Springer, Berlin, Heidelberg, pp 1042–1051 Mei Q, Harris SJ, Hibberd RD, Wickham JEA, Davies BL (1999) Optimising operation process for computer integrated prostatectomy. In: Taylor C, Colchester A (eds) MICCAI’99. Springer, Berlin, Heidelberg, pp 1042–1051
4.
go back to reference de Badajoz S (2002) New master arm for transurethral resection with a robot. Arch Esp Urol 55(10):1247–50 de Badajoz S (2002) New master arm for transurethral resection with a robot. Arch Esp Urol 55(10):1247–50
5.
go back to reference Wang J, Zhao J, Ji X, Zhang X, Li H (2019) A surgical robotic system for transurethral resection. In: Lhotska L, Sukupova L, Lacković I, Ibbott GS (eds) World congress on medical physics and biomedical engineering 2018. Springer, Singapore, pp 711–716CrossRef Wang J, Zhao J, Ji X, Zhang X, Li H (2019) A surgical robotic system for transurethral resection. In: Lhotska L, Sukupova L, Lacković I, Ibbott GS (eds) World congress on medical physics and biomedical engineering 2018. Springer, Singapore, pp 711–716CrossRef
6.
go back to reference Su H, Yang C, Ferrigno G, De Momi E (2019) Improved human-robot collaborative control of redundant robot for teleoperated minimally invasive surgery. IEEE Robot Autom Lett 4(2):1447–1453CrossRef Su H, Yang C, Ferrigno G, De Momi E (2019) Improved human-robot collaborative control of redundant robot for teleoperated minimally invasive surgery. IEEE Robot Autom Lett 4(2):1447–1453CrossRef
7.
go back to reference Goldman RE, Bajo A, MacLachlan LS, Pickens R, Herrell SD, Simaan N (2013) Design and performance evaluation of a minimally invasive telerobotic platform for transurethral surveillance and intervention. IEEE Trans Biomed Eng 60(4):918–925CrossRef Goldman RE, Bajo A, MacLachlan LS, Pickens R, Herrell SD, Simaan N (2013) Design and performance evaluation of a minimally invasive telerobotic platform for transurethral surveillance and intervention. IEEE Trans Biomed Eng 60(4):918–925CrossRef
8.
go back to reference Pickens RB, Bajo A, Simaan N, Herrell D (2015) A pilot ex vivo evaluation of a telerobotic system for transurethral intervention and surveillance. J Endourol 29(2):231–234CrossRef Pickens RB, Bajo A, Simaan N, Herrell D (2015) A pilot ex vivo evaluation of a telerobotic system for transurethral intervention and surveillance. J Endourol 29(2):231–234CrossRef
9.
go back to reference Hendrick RJ, Herrell SD, Webster RJ (2014) A multi-arm hand-held robotic system for transurethral laser prostate surgery. In: 2014 IEEE international conference on robotics and automation (ICRA), pp 2850–2855 (2014) Hendrick RJ, Herrell SD, Webster RJ (2014) A multi-arm hand-held robotic system for transurethral laser prostate surgery. In: 2014 IEEE international conference on robotics and automation (ICRA), pp 2850–2855 (2014)
10.
go back to reference Hendrick RJ, Mitchell CR, Herrell SD, Robert J, Webster I (2015) Hand-held transendoscopic robotic manipulators: a transurethral laser prostate surgery case study. The Int J Robot Res 34(13):1559–1572 (PMID: 27570361) Hendrick RJ, Mitchell CR, Herrell SD, Robert J, Webster I (2015) Hand-held transendoscopic robotic manipulators: a transurethral laser prostate surgery case study. The Int J Robot Res 34(13):1559–1572 (PMID: 27570361)
11.
go back to reference Mitchell CR, Hendrick RJ, Webster RJ, Herrell SD (2016) Toward improving transurethral prostate surgery: development and initial experiments with a prototype concentric tube robotic platform. J Endourol 30(6):692–696CrossRef Mitchell CR, Hendrick RJ, Webster RJ, Herrell SD (2016) Toward improving transurethral prostate surgery: development and initial experiments with a prototype concentric tube robotic platform. J Endourol 30(6):692–696CrossRef
12.
go back to reference Russo S, Dario P, Menciassi A (2015) A novel robotic platform for laser-assisted transurethral surgery of the prostate. IEEE Trans Biomed Eng 62(2):489–500CrossRef Russo S, Dario P, Menciassi A (2015) A novel robotic platform for laser-assisted transurethral surgery of the prostate. IEEE Trans Biomed Eng 62(2):489–500CrossRef
13.
go back to reference Sarli N, Giudice GD, De S, Dietrich MS, Herrell SD, Simaan N (2019) Turbot: a system for robot-assisted transurethral bladder tumor resection. IEEE/ASME Trans Mechatron 24(4):1452–1463 Sarli N, Giudice GD, De S, Dietrich MS, Herrell SD, Simaan N (2019) Turbot: a system for robot-assisted transurethral bladder tumor resection. IEEE/ASME Trans Mechatron 24(4):1452–1463
14.
go back to reference Faria C, Ferreira F, Erlhagen W, Monteiro S, Bicho E (2018) Position-based kinematics for 7-dof serial manipulators with global configuration control, joint limit and singularity avoidance. Mech Mach Theory 121:317–334 Faria C, Ferreira F, Erlhagen W, Monteiro S, Bicho E (2018) Position-based kinematics for 7-dof serial manipulators with global configuration control, joint limit and singularity avoidance. Mech Mach Theory 121:317–334
15.
go back to reference Wang J, Lu C, Zhang Y, Sun Z, Shen Y (2022) A numerically stable algorithm for analytic inverse kinematics of 7-degrees-of-freedom spherical-rotational-spherical manipulators with joint limit avoidance. J Mech Robot 10(1115/1):4053375 Wang J, Lu C, Zhang Y, Sun Z, Shen Y (2022) A numerically stable algorithm for analytic inverse kinematics of 7-degrees-of-freedom spherical-rotational-spherical manipulators with joint limit avoidance. J Mech Robot 10(1115/1):4053375
Metadata
Title
Robotic system with programmable motion constraint for transurethral resection
Authors
Zhen Sun
Tianmiao Wang
Chunheng Lu
Yu Shen
Junchen Wang
Publication date
15-04-2022
Publisher
Springer International Publishing
Published in
International Journal of Computer Assisted Radiology and Surgery / Issue 5/2022
Print ISSN: 1861-6410
Electronic ISSN: 1861-6429
DOI
https://doi.org/10.1007/s11548-022-02628-w

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