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中华医学超声杂志(电子版) ›› 2025, Vol. 22 ›› Issue (02) : 162 -166. doi: 10.3877/cma.j.issn.1672-6448.2025.02.010

综述

远程及全自动超声机器人临床应用新进展
胡馨元1, 官昕1, 孙逸康1,(), 徐辉雄1   
  1. 1. 200032 上海,复旦大学附属中山医院超声科
  • 收稿日期:2025-01-14 出版日期:2025-02-01
  • 通信作者: 孙逸康
  • 基金资助:
    国家自然科学基金(82430064)国家重点研发计划(2023YFC2414204)上海市科学技术委员会项目(19DZ2251100)复旦大学附属中山医院科研发展基金(2022ZSQD07)

New progress in clinical application of remote and fully automatic ultrasound robotic system

Xinyuan Hu, Yikang Sun(), Huixiong Xu   

  • Received:2025-01-14 Published:2025-02-01
  • Corresponding author: Yikang Sun
引用本文:

胡馨元, 官昕, 孙逸康, 徐辉雄. 远程及全自动超声机器人临床应用新进展[J/OL]. 中华医学超声杂志(电子版), 2025, 22(02): 162-166.

Xinyuan Hu, Yikang Sun, Huixiong Xu. New progress in clinical application of remote and fully automatic ultrasound robotic system[J/OL]. Chinese Journal of Medical Ultrasound (Electronic Edition), 2025, 22(02): 162-166.

1
Jiang Z, Salcudean SE, Navab N.Robotic ultrasound imaging:Stateof-the-art and future perspectives[J].Med Image Anal, 2023, 89:102878.
2
Haidegger T.Autonomy for surgical robots:concepts and paradigms[J].IEEE T Medl Robot Bio, 2019, (2):65-76.
3
Yang GZ, Nelson BJ, Murphy RR, et al.Combating COVID-19-The role of robotics in managing public health and infectious diseases[J].Sci Robot, 2020, 5(40):eabb5589.
4
Li K, Xu Y, Meng MQ-H.An overview of systems and techniques for autonomous robotic ultrasound acquisitions[J].IEEE T Medl Robot Bio, 2021, 3(2):510-524.
5
von Haxthausen F, Böttger S, Wulff D, et al.Medical robotics for ultrasound imaging:current systems and future trends[J].Curr Robot Rep, 2021, 2(1):55-71.
6
Roshan MC, Pranata A, Isaksson M.Robotic ultrasonography for autonomous non-invasive diagnosis:a systematic literature review[J].IEEE T Medl Robot Bio, 2022, 4(4):863-874.
7
Adams SJ, Burbridge BE, Badea A, et al.A crossover comparison of standard and telerobotic approaches to prenatal sonography[J].J Ultrasound Med, 2018, 37(11):2603-2612.
8
Adams SJ, Burbridge BE, Badea A, et al.Initial experience using a telerobotic ultrasound system for adult abdominal sonography[J].Can Assoc Radiol J, 2017, 68(3):308-314.
9
Hidalgo EM, Wright L, Isaksson M, et al.Current applications of robot-assisted ultrasound examination[J].JACC Cardiovasc Imaging,2023, 16(2):239-247.
10
Seo J, Cho JH, Cha J, et al.Design and experimental evaluations of robot-assisted tele-echography system for remote ultrasound imaging[C].2017 14th International Conference on Ubiquitous Robots and Ambient Intelligence (URAI)(2017):592-594.
11
Giuliani M, Szczniak-Stańczyk D, Mirnig N, et al.User-centred design and evaluation of a tele-operated echocardiography robot[J].Health and Technology, 2020, 10(3):649-665.
12
Masuda K, Miyazaki W, Sugano Y, et al.Effectiveness of teleechography system with and without robotics according to patient circumstances[C].2011 E-Health and Bioengineering Conference(EHB),2011:1-5.
13
Martinelli T, Bosson J-L, Bressollette L, et al.Robot-based teleechography:clinical evaluation of the ter system in abdominal aortic Exploration[J].J Ultrasound Med, 2007, 26(11):1611-1616.
14
Aggravi M, Estima D, Krupa A, et al.Haptic teleoperation of flexible needles combining 3d ultrasound guidance and needle tip force feedback[J].IEEE Robotics and Automationletters, 2021:6(3):4859-4866.
15
Zhu W-H, Salcudean SE, Bachmann S, et al.Motion/force/image control of a diagnostic ultrasound robot[C].IEEE International Conference on Robotics and Automation(ICRA), 2000:1580-1585.
16
Ma G, Oca SR, Zhu Y, et al.A novel robotic system for ultrasoundguided peripheral vascular localization[C].IEEE International Conference on Robotics and Automation (ICRA), 2021:12321-12327.
17
Ning G, Zhang X, Liao H.Autonomic robotic ultrasound imaging system based on reinforcement learning[J].IEEE Trans Biomed Eng,2021, 68(9):2787-2797.
18
Jiang Z, Li Z, Grimm M, et al.Autonomous robotic screening of tubular structures based only on real-time ultrasound imaging feedback[J].IEEE Transactions on Industrial Electronics, 2021, 69(7):7064-7075.
19
Nadeau C, Krupa A, Petr J, et al.Moments-based ultrasound visual servoing:from a mono-to multiplane approach[J].IEEE T Robot,2016, 32(6):1558-1564.
20
Ma X, Kuo W-Y, Yang K, et al.A-see:active-sensing end-effector enabled probe self-normal-positioning for robotic ultrasound imaging applications[J].IEEE Robot Autom Lett, 2022, 7(4):12475-12482.
21
Welleweerd MK, de Groot AG, Groenhuis V, et al.Out-of-plane corrections for autonomous robotic breast ultrasound acquisitions[C].2021 IEEE International Conference on Robotics and Automation(ICRA), 2021:12515-12521.
22
Kim DY, Toan BN, Tan CK, et al.Utility of combining PIVKA-II and AFP in the surveillance and monitoring of hepatocellular carcinoma in the Asia-Paciflc region[J].Clin Mol Hepatol, 2023, 29(2):277-292.
23
Najafl F, Sepehri N.A robotic wrist for remote ultrasound imaging[J].Mech Mach Theory, 2011, 46(8):1153-1170.
24
Masuda K, Takachi Y, Urayama Y, et al.Development of support system to handle ultrasound probe by coordinated motion with medical robot[C].2011 Annual International Conference of the IEEE Engineering in Medicine and Biology Society, 2011:4519-4522.
25
Arbeille P, Ruiz J, Herve P, et al.Fetal tele-echography using a robotic arm and a satellite link[J].Ultrasound Obstet Gynecol, 2005, 26(3):221-226.
26
Arbeille P, Poisson G, Vieyres P, et al.Echographic examination in isolated sites controlled from an expert center using a 2-d echograph guided by a teleoperated robotic arm[J].Ultrasound Med Biol, 2003,29(7):993-1000.
27
Arbeille P, Provost R, Zuj K, et al.Teles-operated echocardiography using a robotic arm and an internet connection[J].Ultrasound Med Biol, 2014, 40(10):2521-2529.
28
Banihachemi J, Boidard E, Bosson J, et al.The tele-echography robot:a robot for remote ultrasonic examination[J].Telesurgery, 2008:91-99.
29
Adams SJ, Burbridge B, Obaid H, et al.Telerobotic sonography for remote diagnostic imaging:narrative review of current developments and clinical applications[J].J Ultrasound Med, 2021, 40(7):1287-1306.
30
钟兆明, 张冰琦, 李柯研, 等.5G 远程超声机器人在肌骨关节损伤诊断中的初步应用[J].中华超声影像学杂志, 2022, 31(2):6.
31
Zhang Y-Q, Yin H-H, He T, et al.Clinical application of a 5G-based telerobotic ultrasound system for thyroid examination on a rural island:a prospective study[J].Endocrine, 2022, 76(3):620-634.
32
Duan S, Liu L, Chen Y, et al.A 5G-powered robot-assisted teleultrasound diagnostic system in an intensive care unit[J].Crit Care,2021, 25(1):134.
33
Wu S, Wu D, Ye R, et al.Pilot study of robot-assisted teleultrasound based on 5g network:a new feasible strategy for early imaging assessment during COVID-19 Pandemic[J].IEEE Trans Ultrason Ferroelectr Freq Control, 2020, 67(11):2241-2248.
34
Zhang YQ, Sun LP, He T, et al.A 5G-based telerobotic ultrasound system provides qualifled abdominal ultrasound services for patients on a rural island:a prospective and comparative study of 401 patients[J].Abdom Radiol (NY), 2024, 49(3):942-957.
35
Jiang W, Zhao X, Gan T, et al.Application of a tele-ultrasound robot during COVID-19 pandemic:a feasibility study[J].J Ultrasound Med,2023, 42(3):595-601.
36
王丹, 李程, 孙静改, 等.超声人工智能诊断系统联合远程医疗的临床价值探讨[J].中国超声医学杂志, 2021, 37(7):2.
37
Tsumura R, Hardin J, Bimbraw K, et al.Tele-operative low-cost robotic lung ultrasound scanning platform for triage of COVID-19 patients[J].IEEE Robot Autom Lett, 2021, 6(3):4664-4671.
38
Othman AE, Afat S, Brockmann MA, et al.Radiation dose reduction in perfusion CT imaging of the brain:a review of the literature[J].J Neuroradiol, 2016, 43(1):1-5.
39
梁莹, 戴九龙, 李翔宇, 等.远程超声机器人在放射性患者的应用研究[J].中国超声医学杂志, 2024, 40(6):713-715.
40
Seitz PK, Baumann B, Johnen W, et al.Development of a robotassisted ultrasound-guided radiation therapy (USgRT)[J].Int J Comput Assist Radiol Surg, 2020, 15(3):491-501.
41
Tsumura R, Iwata H:Robotic fetal ultrasonography platform with a passive scan mechanism[J].Int J Comput Assist Radiol Surg, 2020,15(8):1323-1333.
42
Wang S, Housden RJ, Noh Y, et al.Analysis of a customized clutch joint designed for the safety management of an ultrasound robot[J].ApplSci(Basel), 2019, 9(9):1900.
43
Housden J, Wang S, Bao X, et al.Towards standardized acquisition with a dual-probe ultrasound robot for fetal imaging[J].IEEE Robot Autom Lett, 2021, 6(2):1059-1065.
44
Wang Q, Du X, Jin D, et al.Real-time ultrasound Doppler tracking and autonomous navigation of a miniature helical robot for accelerating thrombolysis in dynamic blood flow[J].ACS Nano, 2022, 16(1):604-616.
45
Zhan J, Cartucho J, Giannarou S.Autonomous tissue scanning under free-form motion for intraoperative tissue characterisation[DB/OL].2020, arXiv:2005.05050.
46
Droste R, Drukker L, Papageorghiou AT, et al.Automatic probe movement guidance for freehand obstetric ultrasound[J].Med Image Comput Comput Assist Interv, 2020, 12263:583-592.
47
Bass V, Mateos J, Rosado-Mendez IM, et al.Ultrasound image segmentation methods:A review[C].AIP Conference Proceedings,2021.
48
Milletari F, Birodkar V, Sofka M.Straight to the point:reinforcement learning for user guidance in ultrasound[DB/OL].2019, arXiv:1903.00586.
49
Bi Y, Jiang Z, Gao Y, et al.VesNet-RL:Simulation-based reinforcement learning for real-world US probe navigation[J].IEEE Robot Autom Let, 2022, 7(3):6638-6645.
50
Chen Z, Chen Y, Huang Q.Development of a wireless and near realtime 3D ultrasound strain imaging system[J].IEEE Trans Biomed Circuits Syst, 2016, 10(2):394-403.
51
Su K, Liu J, Ren X, et al.A fully autonomous robotic ultrasound system for thyroid scanning[J].Nat Commun, 2024, 15(1):4004.
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