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Journal Abstract Search


207 related items for PubMed ID: 28614281

  • 1. Transcranial Motor Evoked Potential Alarm Criteria to Predict Foot Drop Injury During Lumbosacral Surgery.
    Tamkus A, Rice KS, Hoffman G.
    Spine (Phila Pa 1976); 2018 Feb 15; 43(4):E227-E233. PubMed ID: 28614281
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  • 2. The efficacy of motor evoked potentials in fixed sagittal imbalance deformity correction surgery.
    Lieberman JA, Lyon R, Feiner J, Hu SS, Berven SH.
    Spine (Phila Pa 1976); 2008 Jun 01; 33(13):E414-24. PubMed ID: 18520928
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  • 3. Transabdominal motor evoked potential neuromonitoring of lumbosacral spine surgery.
    Allison DW, Verma A, Holman PJ, Huang M, Trask TW, Barber SM, Cockrell AR, Weber MR, Brooks DW, Delgado L, Steele WJ, Sellin JN, Gressot LV, Lambert B, Ma BB, Faraji AH, Saifi C.
    Spine J; 2024 Sep 01; 24(9):1660-1670. PubMed ID: 38685276
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  • 6. The reliability of motor evoked potentials to predict dorsiflexion injuries during lumbosacral deformity surgery: importance of multiple myotomal monitoring.
    Lieberman JA, Lyon R, Jasiukaitis P, Berven SH, Burch S, Feiner J.
    Spine J; 2019 Mar 01; 19(3):377-385. PubMed ID: 30025994
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  • 8. Utility of motor evoked potentials to diagnose and reduce lower extremity motor nerve root injuries during 4,386 extradural posterior lumbosacral spine procedures.
    Wilent WB, Tesdahl EA, Harrop JS, Welch WC, Cannestra AF, Poelstra KA, Epplin-Zapf T, Stivali T, Cohen J, Sestokas AK.
    Spine J; 2020 Feb 01; 20(2):191-198. PubMed ID: 31479780
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  • 12. The cutoff amplitude of transcranial motor-evoked potentials for predicting postoperative motor deficits in thoracic spine surgery.
    Muramoto A, Imagama S, Ito Z, Wakao N, Ando K, Tauchi R, Hirano K, Matsui H, Matsumoto T, Matsuyama Y, Ishigro N.
    Spine (Phila Pa 1976); 2013 Jan 01; 38(1):E21-7. PubMed ID: 23104192
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  • 14. Evaluation of a Combination of Waveform Amplitude and Peak Latency in Intraoperative Spinal Cord Monitoring.
    Kobayashi K, Ando K, Shinjo R, Ito K, Tsushima M, Morozumi M, Tanaka S, Machino M, Ota K, Ishiguro N, Imagama S.
    Spine (Phila Pa 1976); 2018 Sep 01; 43(17):1231-1237. PubMed ID: 30106389
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  • 15. Risk factors for false positive transcranial motor evoked potential monitoring alerts during surgical treatment of cervical myelopathy.
    Kim DH, Zaremski J, Kwon B, Jenis L, Woodard E, Bode R, Banco RJ.
    Spine (Phila Pa 1976); 2007 Dec 15; 32(26):3041-6. PubMed ID: 18091499
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  • 16. Diagnostic Accuracy of Neuromonitoring for Identification of New Neurologic Deficits in Pediatric Spinal Fusion Surgery.
    Neira VM, Ghaffari K, Bulusu S, Moroz PJ, Jarvis JG, Barrowman N, Splinter W.
    Anesth Analg; 2016 Dec 15; 123(6):1556-1566. PubMed ID: 27861447
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  • 18. Alarm criteria for motor evoked potentials.
    Thirumala PD, Huang J, Brahme IS, Thiagarajan K, Cheng H, Crammond DJ, Balzer J.
    Neurol India; 2017 Dec 15; 65(4):708-715. PubMed ID: 28681737
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  • 19. Impact of Motor-Evoked Potential Monitoring on Facial Nerve Outcomes after Vestibular Schwannoma Resection.
    Tawfik KO, Walters ZA, Kohlberg GD, Lipschitz N, Breen JT, O'Neal K, Zuccarello M, Samy RN.
    Ann Otol Rhinol Laryngol; 2019 Jan 15; 128(1):56-61. PubMed ID: 30343584
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  • 20. Neurophysiological detection of impending spinal cord injury during scoliosis surgery.
    Schwartz DM, Auerbach JD, Dormans JP, Flynn J, Drummond DS, Bowe JA, Laufer S, Shah SA, Bowen JR, Pizzutillo PD, Jones KJ, Drummond DS.
    J Bone Joint Surg Am; 2007 Nov 15; 89(11):2440-9. PubMed ID: 17974887
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