Design and control of a novel magnetic resonance imaging-compatible breast intervention robot
Breast cancer is one of the most frequent cancers and a major cause of cancer death in women. In this article, the design and control of a novel magnetic resonance imaging-compatible breast intervention robot are proposed. The dimensions and tolerance of the robot system are considered, and a novel...
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2020-06-01
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Series: | International Journal of Advanced Robotic Systems |
Online Access: | https://doi.org/10.1177/1729881420927853 |
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doaj-a23705c1f9834e32956b3973bb99a8032020-11-25T03:41:20ZengSAGE PublishingInternational Journal of Advanced Robotic Systems1729-88142020-06-011710.1177/1729881420927853Design and control of a novel magnetic resonance imaging-compatible breast intervention robotMingyue Lu0Yongde Zhang1Haiyan Du2 Foshan Baikang Robot Technology Co., Ltd., Foshan, China Intelligent Machine Institute, Harbin University of Science and Technology, Harbin, China Intelligent Machine Institute, Harbin University of Science and Technology, Harbin, ChinaBreast cancer is one of the most frequent cancers and a major cause of cancer death in women. In this article, the design and control of a novel magnetic resonance imaging-compatible breast intervention robot are proposed. The dimensions and tolerance of the robot system are considered, and a novel pitching mechanism is designed to achieve a dexterous operation in the limited space. The magnetic resonance imaging compatibility of the robot materials is tested. The nonmagnetic structure and compact Cartesian mechanism of the robot allow it to operate safely in a magnetic resonance imaging scanner. According to the robot’s structure, a kinematics analysis based on a coupled motions model is established. The workspace simulation analysis of the robot proves that it is suitable for the whole breast surgery. To control the needle insertion tasks, the overall control system in the form of “personal computer (PC) + single-chip micyoco (SCM)” is designed. Finally, the motion control experiment is carried out, and the robot positioning error is 0.37 mm, which proves that the breast intervention robot and its control system designed in this article can meet the requirements of breast intervention.https://doi.org/10.1177/1729881420927853 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Mingyue Lu Yongde Zhang Haiyan Du |
spellingShingle |
Mingyue Lu Yongde Zhang Haiyan Du Design and control of a novel magnetic resonance imaging-compatible breast intervention robot International Journal of Advanced Robotic Systems |
author_facet |
Mingyue Lu Yongde Zhang Haiyan Du |
author_sort |
Mingyue Lu |
title |
Design and control of a novel magnetic resonance imaging-compatible breast intervention robot |
title_short |
Design and control of a novel magnetic resonance imaging-compatible breast intervention robot |
title_full |
Design and control of a novel magnetic resonance imaging-compatible breast intervention robot |
title_fullStr |
Design and control of a novel magnetic resonance imaging-compatible breast intervention robot |
title_full_unstemmed |
Design and control of a novel magnetic resonance imaging-compatible breast intervention robot |
title_sort |
design and control of a novel magnetic resonance imaging-compatible breast intervention robot |
publisher |
SAGE Publishing |
series |
International Journal of Advanced Robotic Systems |
issn |
1729-8814 |
publishDate |
2020-06-01 |
description |
Breast cancer is one of the most frequent cancers and a major cause of cancer death in women. In this article, the design and control of a novel magnetic resonance imaging-compatible breast intervention robot are proposed. The dimensions and tolerance of the robot system are considered, and a novel pitching mechanism is designed to achieve a dexterous operation in the limited space. The magnetic resonance imaging compatibility of the robot materials is tested. The nonmagnetic structure and compact Cartesian mechanism of the robot allow it to operate safely in a magnetic resonance imaging scanner. According to the robot’s structure, a kinematics analysis based on a coupled motions model is established. The workspace simulation analysis of the robot proves that it is suitable for the whole breast surgery. To control the needle insertion tasks, the overall control system in the form of “personal computer (PC) + single-chip micyoco (SCM)” is designed. Finally, the motion control experiment is carried out, and the robot positioning error is 0.37 mm, which proves that the breast intervention robot and its control system designed in this article can meet the requirements of breast intervention. |
url |
https://doi.org/10.1177/1729881420927853 |
work_keys_str_mv |
AT mingyuelu designandcontrolofanovelmagneticresonanceimagingcompatiblebreastinterventionrobot AT yongdezhang designandcontrolofanovelmagneticresonanceimagingcompatiblebreastinterventionrobot AT haiyandu designandcontrolofanovelmagneticresonanceimagingcompatiblebreastinterventionrobot |
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