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PUBMED FOR HANDHELDS

Journal Abstract Search


301 related items for PubMed ID: 17361056

  • 41. Perception-action map learning in controlled multiscroll systems applied to robot navigation.
    Arena P, De Fiore S, Fortuna L, Patané L.
    Chaos; 2008 Dec; 18(4):043119. PubMed ID: 19123629
    [Abstract] [Full Text] [Related]

  • 42. The case for MR-compatible robotics: a review of the state of the art.
    Elhawary H, Tse ZT, Hamed A, Rea M, Davies BL, Lamperth MU.
    Int J Med Robot; 2008 Jun; 4(2):105-13. PubMed ID: 18481822
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  • 43. Self-protective whole body motion for humanoid robots based on synergy of global reaction and local reflex.
    Shimizu T, Saegusa R, Ikemoto S, Ishiguro H, Metta G.
    Neural Netw; 2012 Aug; 32():109-18. PubMed ID: 22377658
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  • 44. Biological inspiration used for robots motion synthesis.
    Zielińska T.
    J Physiol Paris; 2009 Aug; 103(3-5):133-40. PubMed ID: 19665556
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  • 45. Medical technology integration: CT, angiography, imaging-capable OR-table, navigation and robotics in a multifunctional sterile suite.
    Jacob AL, Regazzoni P, Bilecen D, Rasmus M, Huegli RW, Messmer P.
    Minim Invasive Ther Allied Technol; 2007 Aug; 16(4):205-11. PubMed ID: 17763093
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  • 46. An upper-limb power-assist robot with tremor suppression control.
    Kiguchi K, Hayashi Y, Asami T.
    IEEE Int Conf Rehabil Robot; 2011 Aug; 2011():5975390. PubMed ID: 22275594
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  • 47. A collaborative wheelchair system.
    Zeng Q, Teo CL, Rebsamen B, Burdet E.
    IEEE Trans Neural Syst Rehabil Eng; 2008 Apr; 16(2):161-70. PubMed ID: 18403284
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  • 48. Human--machine load sharing in rehabilitation robotics.
    Rahman T, McClenathan K.
    Technol Health Care; 1999 Apr; 7(6):425-9. PubMed ID: 10665676
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  • 49. Evolving homogeneous neurocontrollers for a group of heterogeneous robots: coordinated motion, cooperation, and acoustic communication.
    Tuci E, Ampatzis C, Vicentini F, Dorigo M.
    Artif Life; 2008 Apr; 14(2):157-78. PubMed ID: 18331188
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  • 50. EndoCAS navigator platform: a common platform for computer and robotic assistance in minimally invasive surgery.
    Megali G, Ferrari V, Freschi C, Morabito B, Cavallo F, Turini G, Troia E, Cappelli C, Pietrabissa A, Tonet O, Cuschieri A, Dario P, Mosca F.
    Int J Med Robot; 2008 Sep; 4(3):242-51. PubMed ID: 18698670
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  • 51. Robotic pyeloplasty using internet protocol and satellite network-based telesurgery.
    Nguan CY, Morady R, Wang C, Harrison D, Browning D, Rayman R, Luke PP.
    Int J Med Robot; 2008 Mar; 4(1):10-4. PubMed ID: 18265415
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  • 52. Automatic adaptive onset detection using an electromyogram with individual difference for control of a meal assistance robot.
    Zhang X, Wang X, Wang B, Sugi T, Nakamura M.
    J Med Eng Technol; 2009 Mar; 33(4):322-7. PubMed ID: 19384708
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  • 53. Kinematics and the implementation of an elephant's trunk manipulator and other continuum style robots.
    Hannan MW, Walker ID.
    J Robot Syst; 2003 Feb; 20(2):45-63. PubMed ID: 14983840
    [Abstract] [Full Text] [Related]

  • 54. Photorealistic speech agents and facially expressive robots.
    Frenger P.
    Biomed Sci Instrum; 1997 Feb; 34():191-6. PubMed ID: 9603037
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  • 55. An Integrated Framework for Human-Robot Collaborative Manipulation.
    Sheng W, Thobbi A, Gu Y.
    IEEE Trans Cybern; 2015 Oct; 45(10):2030-41. PubMed ID: 25373136
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  • 56. Optimizing port placement for robot-assisted minimally invasive cardiac surgery.
    Trejos AL, Patel RV, Ross I, Kiaii B.
    Int J Med Robot; 2007 Dec; 3(4):355-64. PubMed ID: 18000946
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  • 57. From human-machine interaction to human-machine cooperation.
    Hoc JM.
    Ergonomics; 2000 Jul; 43(7):833-43. PubMed ID: 10929820
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  • 58. Analyzing the effects of human-aware motion planning on close-proximity human-robot collaboration.
    Lasota PA, Shah JA.
    Hum Factors; 2015 Feb; 57(1):21-33. PubMed ID: 25790568
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  • 59. An intrinsically safe mechanism for physically coupling humans with robots.
    O'Neill G, Patel H, Artemiadis P.
    IEEE Int Conf Rehabil Robot; 2013 Jun; 2013():6650510. PubMed ID: 24187325
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  • 60. Analysis of operational comfort in manual tasks using human force manipulability measure.
    Tanaka Y, Nishikawa K, Yamada N, Tsuji T.
    IEEE Trans Haptics; 2015 Jun; 8(1):8-19. PubMed ID: 25415990
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