Skull Base Surgery of the Posterior Fossa

(avery) #1

218



  1. Robinson JR, Awad IA, Little JR. Natural his-
    tory of the cavernous angioma. J Neurosurg.
    1991;75(5):709–14. Epub 1991/11/01.

  2. Petr O, Lanzino G. Brainstem cavernous malforma-
    tions. J Neurosurg Sci. 2015;59(3):271–82. Epub
    2015/05/07.

  3. Hasegawa T, McInerney J, Kondziolka D, Lee JY,
    Flickinger JC, Lunsford LD. Long-term results after
    stereotactic radiosurgery for patients with cavernous
    malformations. Neurosurgery. 2002;50(6):1190–7.
    Discussion 7–8. Epub 2002/05/23.

  4. Porter PJ, Willinsky RA, Harper W, Wallace
    MC. Cerebral cavernous malformations: natu-
    ral history and prognosis after clinical deteriora-
    tion with or without hemorrhage. J Neurosurg.
    1997;87(2):190–7. Epub 1997/08/01.

  5. Fritschi JA, Reulen HJ, Spetzler RF, Zabramski
    JM. Cavernous malformations of the brain stem.
    A review of 139 cases. Acta Neurochir. 1994;130
    (1–4):35–46. Epub 1994/01/01.

  6. Zabramski JM, Kalani MYS. Natural history of
    cavernous malformations. In: Winn HR, editor.
    Youmans and Winn neurological surgery. 7th ed.
    New York: Elsevier; 2016.

  7. Kondziolka D, Lunsford LD, Kestle JR. The natu-
    ral history of cerebral cavernous malformations.
    J Neurosurg. 1995;83(5):820–4. Epub 1995/11/01.

  8. Flemming KD, Link MJ, Christianson TJ, Brown RD
    Jr. Prospective hemorrhage risk of intracerebral cav-
    ernous malformations. Neurology. 2012;78(9):632–
    6. Epub 2012/02/04.

  9. Abla AA, Lekovic GP, Turner JD, de Oliveira JG,
    Porter R, Spetzler RF. Advances in the treatment
    and outcome of brainstem cavernous malformation
    surgery: a single-center case series of 300 surgically
    treated patients. Neurosurgery. 2011;68(2):403–14.
    discussion 14–5. Epub 2011/06/10.

  10. Gross BA, Du R. Hemorrhage from cerebral cav-
    ernous malformations: a systematic pooled analy-
    sis. J Neurosurg. 2017;126(4):1079–1087. Epub
    2016/05/21.

  11. Samii M, Eghbal R, Carvalho GA, Matthies
    C. Surgical management of brainstem cavernomas.
    J Neurosurg. 2001;95(5):825–32. Epub 2001/11/13.

  12. Kupersmith MJ, Kalish H, Epstein F, et al. Natural
    history of brainstem cavernous malformations.
    Neurosurgery. 2001;48(1):47–53. Discussion 53–4
    Epub 2001/01/11.

  13. Li D, Hao SY, Jia GJ, Wu Z, Zhang LW, Zhang
    JT. Hemorrhage risks and functional outcomes
    of untreated brainstem cavernous malformations.
    J Neurosurg. 2014;121(1):32–41. Epub 2014/05/03.

  14. Kalani MYS, Yagmurlu K, Martirosyan NL,
    Cavalcanti DD, Spetzler RF. Approach selection
    for intrinsic brainstem pathologies. J Neurosurg.
    2016;125(6):1596–1607.

  15. Cavalcanti DD, Preul MC, Kalani MY, Spetzler
    RF. Microsurgical anatomy of safe entry zones to
    the brainstem. J Neurosurg. 2016;124(5):1359–76.
    Epub 2015/10/10.
    87. Kalani MYS, Perez-Orribo L, Bhardwaj G, Francis
    IC, Zabramski JM. Neurovascular history and
    examination. In: Spetzler RF, Kalani MYS, Nakaji
    P, editors. Neurovascular surgery. 2nd ed. New York:
    Thieme; 2015. p. 119–30.
    88. Horstman P, Linn FH, Voorbij HA, Rinkel
    GJ. Chance of aneurysm in patients suspected of
    SAH who have a ‘negative’ CT scan but a ‘positive’
    lumbar puncture. J Neurol. 2012;259(4):649–52.
    Epub 2011/09/09.
    89. Miley JT, Taylor RA, Janardhan V, Tummala R,
    Lanzino G, Qureshi AI. The value of computed
    tomography angiography in determining treatment
    allocation for aneurysmal subarachnoid hemorrhage.
    Neurocrit Care. 2008;9(3):300–6. Epub 2008/05/29.
    90. Xing W, Chen W, Sheng J, et al. Sixty-four-row
    multislice computed tomographic angiography in
    the diagnosis and characterization of intracranial
    aneurysms: comparison with 3D rotational angiogra-
    phy. World Neurosurg. 2011;76(1–2):105–13. Epub
    2011/08/16.
    91. Edjlali M, Rodriguez-Regent C, Hodel J, et al.
    Subarachnoid hemorrhage in ten questions. Diagn
    Interv Imaging. 2015;96(7–8):657–66. Epub
    2015/07/05.
    92. Gultekin S, Celik H, Akpek S, Oner Y, Gumus T,
    Tokgoz N. Vascular loops at the cerebellopontine
    angle: is there a correlation with tinnitus? AJNR Am
    J Neuroradiol. 2008;29(9):1746–9. Epub 2008/07/26.
    93. Zhou Q, Liu ZL, Qu CC, Ni SL, Xue F, Zeng
    QS. Preoperative demonstration of neurovascu-
    lar relationship in trigeminal neuralgia by using
    3D FIESTA sequence. Magn Reson Imaging.
    2012;30(5):666–71. Epub 2012/03/13.
    94. Sanzenbacher KE. Intraoperative monitoring dur-
    ing aneurysm surgery as a neuroprotective activity
    with reference to evoked potential and microvas-
    cular Doppler techniques. Ann N Y Acad Sci.
    2005;1053:28–9. Epub 2005/09/24.
    95. Slotty PJ, Abdulazim A, Kodama K, et al. Intraoperative
    neurophysiological monitoring during resection of
    infratentorial lesions: the surgeon’s view. J Neurosurg.
    2017;126(1):281–288. Epub 2016/02/27.
    96. Thind H, Hardesty DA, Zabramski JM, Spetzler RF,
    Nakaji P. The role of microscope-integrated near-
    infrared indocyanine green videoangiography in the
    surgical treatment of intracranial dural arteriovenous
    fistulas. J Neurosurg. 2015;122(4):876–82. Epub
    2015/01/03.
    97. Hardesty DA, Thind H, Zabramski JM, Spetzler RF,
    Nakaji P. Safety, efficacy, and cost of intraoperative
    indocyanine green angiography compared to intra-
    operative catheter angiography in cerebral aneurysm
    surgery. J Clin Neurosci. 2014;21(8):1377–82. Epub
    2014/04/17.
    98. Raabe A, Nakaji P, Beck J, et al. Prospective
    evaluation of surgical microscope-integrated
    intraoperative near-infrared indocyanine green video-
    angiography during aneurysm surgery. J Neurosurg.
    2005;103(6):982–9. Epub 2005/12/31.


M.Y.S. Kalani and R.F. Spetzler
Free download pdf