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PUBMED FOR HANDHELDS

Journal Abstract Search


190 related items for PubMed ID: 25569986

  • 1.
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  • 2. PEDOT electrochemical polymerization improves electrode fidelity and sensitivity.
    Frost CM, Wei B, Baghmanli Z, Cederna PS, Urbanchek MG.
    Plast Reconstr Surg; 2012 Apr; 129(4):933-942. PubMed ID: 22456363
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  • 4. Electropolymerized Poly(3,4-ethylenedioxythiophene) (PEDOT) Coatings for Implantable Deep-Brain-Stimulating Microelectrodes.
    Bodart C, Rossetti N, Hagler J, Chevreau P, Chhin D, Soavi F, Schougaard SB, Amzica F, Cicoira F.
    ACS Appl Mater Interfaces; 2019 May 15; 11(19):17226-17233. PubMed ID: 30978001
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  • 5. Adjacent regenerative peripheral nerve interfaces produce phase-antagonist signals during voluntary walking in rats.
    Ursu D, Nedic A, Urbanchek M, Cederna P, Gillespie RB.
    J Neuroeng Rehabil; 2017 Apr 24; 14(1):33. PubMed ID: 28438166
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  • 6. Regenerative peripheral nerve interface viability and signal transduction with an implanted electrode.
    Kung TA, Langhals NB, Martin DC, Johnson PJ, Cederna PS, Urbanchek MG.
    Plast Reconstr Surg; 2014 Jun 24; 133(6):1380-1394. PubMed ID: 24867721
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  • 7. Chronic intracortical neural recordings using microelectrode arrays coated with PEDOT-TFB.
    Charkhkar H, Knaack GL, McHail DG, Mandal HS, Peixoto N, Rubinson JF, Dumas TC, Pancrazio JJ.
    Acta Biomater; 2016 Mar 01; 32():57-67. PubMed ID: 26689462
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  • 9. Electrochemical deposition and evaluation of electrically conductive polymer coating on biodegradable magnesium implants for neural applications.
    Sebaa MA, Dhillon S, Liu H.
    J Mater Sci Mater Med; 2013 Feb 01; 24(2):307-16. PubMed ID: 23104085
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  • 10. Physiologic signaling and viability of the muscle cuff regenerative peripheral nerve interface (MC-RPNI) for intact peripheral nerves.
    Kubiak CA, Svientek SR, Dehdashtian A, Lawera NG, Nadarajan V, Bratley JV, Kung TA, Cederna PS, Kemp SWP.
    J Neural Eng; 2021 Aug 20; 18(4):. PubMed ID: 34359056
    [Abstract] [Full Text] [Related]

  • 11. Polymerization of the conducting polymer poly(3,4-ethylenedioxythiophene) (PEDOT) around living neural cells.
    Richardson-Burns SM, Hendricks JL, Foster B, Povlich LK, Kim DH, Martin DC.
    Biomaterials; 2007 Mar 20; 28(8):1539-52. PubMed ID: 17169420
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  • 12. Biological Function and Mechanism of Bone Marrow Mesenchymal Stem Cells-packed Poly (3,4-ethylenedioxythiophene) (PEDOT) Scaffolds for Peripheral Nerve Injury: The Involvement of miR-21-Notch Signaling Pathway.
    Wu W, Zhang S, Chen Y, Liu H.
    Curr Neurovasc Res; 2017 Mar 20; 14(1):19-25. PubMed ID: 27890010
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  • 14. Regenerative peripheral nerve interfaces for real-time, proportional control of a Neuroprosthetic hand.
    Frost CM, Ursu DC, Flattery SM, Nedic A, Hassett CA, Moon JD, Buchanan PJ, Brent Gillespie R, Kung TA, Kemp SWP, Cederna PS, Urbanchek MG.
    J Neuroeng Rehabil; 2018 Nov 20; 15(1):108. PubMed ID: 30458876
    [Abstract] [Full Text] [Related]

  • 15. In vivo characterization of regenerative peripheral nerve interface function.
    Ursu DC, Urbanchek MG, Nedic A, Cederna PS, Gillespie RB.
    J Neural Eng; 2016 Apr 20; 13(2):026012. PubMed ID: 26859115
    [Abstract] [Full Text] [Related]

  • 16. Development of a Regenerative Peripheral Nerve Interface for Control of a Neuroprosthetic Limb.
    Urbanchek MG, Kung TA, Frost CM, Martin DC, Larkin LM, Wollstein A, Cederna PS.
    Biomed Res Int; 2016 Apr 20; 2016():5726730. PubMed ID: 27294122
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  • 18. Covalent bonding of YIGSR and RGD to PEDOT/PSS/MWCNT-COOH composite material to improve the neural interface.
    Wang K, Tang RY, Zhao XB, Li JJ, Lang YR, Jiang XX, Sun HJ, Lin QX, Wang CY.
    Nanoscale; 2015 Nov 28; 7(44):18677-85. PubMed ID: 26499788
    [Abstract] [Full Text] [Related]

  • 19. PEDOT-CNT coated electrodes stimulate retinal neurons at low voltage amplitudes and low charge densities.
    Samba R, Herrmann T, Zeck G.
    J Neural Eng; 2015 Feb 28; 12(1):016014. PubMed ID: 25588201
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  • 20. Hyaluronic acid doped-poly(3,4-ethylenedioxythiophene)/chitosan/gelatin (PEDOT-HA/Cs/Gel) porous conductive scaffold for nerve regeneration.
    Wang S, Guan S, Zhu Z, Li W, Liu T, Ma X.
    Mater Sci Eng C Mater Biol Appl; 2017 Feb 01; 71():308-316. PubMed ID: 27987712
    [Abstract] [Full Text] [Related]


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