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Page 10 of 11                                         Azab et al. Mini-invasive Surg 2020;4:88  I  http://dx.doi.org/10.20517/2574-1225.2020.75

               9.   Simpson D. The recurrence of intracranial meningiomas after surgical treatment. J Neurol Neurosurg Psychiatry 1957;20:22-39.
               10.  Bander ED, Singh H, Ogilvie CB, et al. Endoscopic endonasal versus transcranial approach to tuberculum sellae and planum sphenoidale
                   meningiomas in a similar cohort of patients. J Neurosurg 2018;128:40-8.
               11.  Hayhurst C, Sughrue ME, Gore PA, Bonney PA, Burks JD, Teo C. Results with expanded endonasal resection of skull base meningiomas
                   technical nuances and approach selection based on an early experience. Turk Neurosurg 2016;26:662-70.
               12.  Koutourousiou M, Fernandez-Miranda JC, Wang EW, Snyderman CH, Gardner PA. Endoscopic endonasal surgery for olfactory groove
                   meningiomas: outcomes and limitations in 50 patients. Neurosurg Focus 2014;37:E8.
               13.  Cavallo LM, de Divitiis O, Aydin S, et al. Extended endoscopic endonasal transsphenoidal approach to the suprasellar area: anatomic
                   considerations--part 1. Neurosurgery 2007;61:24-34.
               14.  de Divitiis E, Cavallo LM, Cappabianca P, Esposito F. Extended endoscopic endonasal transsphenoidal approach for the removal of
                   suprasellar tumors: Part 2. Neurosurgery 2007;60:46-59.
               15.  Gandhoke GS, Pease M, Smith KJ, Sekula RF Jr. Supraorbital versus endoscopic endonasal approaches for olfactory groove
                   meningiomas: a cost-minimization study. World Neurosurg 2017;105:126-36.
               16.  Telera S, Carapella CM, Caroli F, et al. Supraorbital keyhole approach for removal of midline anterior cranial fossa meningiomas: a series
                   of 20 consecutive cases. Neurosurg Rev 2012;35:67-83.
               17.  Iacoangeli M, Nocchi N, Nasi D, et al. Minimally invasive supraorbital key-hole approach for the treatment of anterior cranial fossa
                   meningiomas. Neurol Med Chir (Tokyo) 2016;56:180-5.
               18.  Reisch R, Perneczky A. Ten-year experience with the supraorbital subfrontal approach through an eyebrow skin incision. Neurosurgery
                   2005;57:242-55.
               19.  van Lindert E, Perneczky A, Fries G, Pierangeli E. The supraorbital keyhole approach to supratentorial aneurysms: concept and technique.
                   Surg Neurol 1998;49:481-90.
               20.  Bitter AD, Stavrinou LC, Ntoulias G, et al. The role of the pterional approach in the surgical treatment of olfactory groove meningiomas:
                   a 20-year experience. J Neurol Surg B Skull Base 2013;74:97-102.
               21.  Ciurea AV, Iencean SM, Rizea RE, Brehar FM. Olfactory groove meningiomas: a retrospective study on 59 surgical cases. Neurosurg Rev
                   2012;35:195-202.
               22.  Nakamura M, Struck M, Roser F, Vorkapic P, Samii M. Olfactory groove meningiomas: clinical outcome and recurrence rates after tumor
                   removal through the frontolateral and bifrontal approach. Neurosurgery 2007;60:844-52.
               23.  Nanda A, Maiti TK, Bir SC, Konar SK, Guthikonda B. Olfactory groove meningiomas: comparison of extent of frontal lobe changes after
                   lateral and bifrontal approaches. World Neurosurg 2016;94:211-21.
               24.  Safaee MM, McDermott MW, Benet A, Theodosopoulos PV. Tailored extended bifrontal craniotomy for anterior skull base tumors:
                   anatomic description of a modified surgical technique and case series. Oper Neurosurg (Hagerstown) 2018;14:386-94.
               25.  Ganna A, Dehdashti AR, Karabatsou K, Gentili F. Fronto-basal interhemispheric approach for tuberculum sellae meningiomas; long-term
                   visual outcome. Br J Neurosurg 2009;23:422-30.
               26.  Goel A, Muzumdar D, Desai KI. Tuberculum sellae meningioma: a report on management on the basis of a surgical experience with 70
                   patients. Neurosurgery 2002;51:1358-64.
               27.  Ottenhausen M, Rumalla K, Alalade AF, et al. Decision-making algorithm for minimally invasive approaches to anterior skull base
                   meningiomas. Neurosurg Focus 2018;44:E7.
               28.  Borghei-Razavi H, Truong HQ, Fernandes-Cabral DT, et al. Minimally invasive approaches for anterior skull base meningiomas:
                   supraorbital eyebrow, endoscopic endonasal, or a combination of both? anatomic study, limitations, and surgical application. World
                   Neurosurg 2018;112:e666-74.
               29.  Perneczky A, Müller-Forell W, van Lindert E, Fries G. Keyhole concept in neurosurgery: with endoscope-assisted microsurgery and case
                   studies. 1st ed. Stuttgart: Thieme Medical Publishers; 1999.
               30.  Krause F, Haubold H. Surgery of the brain and spinal cord: based on personal experiences. Thorek M [Trans]. New York: Rebman
                   Company; 1909-12.
               31.  Frazier CH. I. An approach to the hypophysis through the anterior cranial fossa. Ann Surg 1913;57:145-50.
               32.  Wilson DH. Limited exposure in cerebral surgery. Technical note. J Neurosurg 1971;34:102-6.
               33.  Fries G, Perneczky A. Endoscope-assisted brain surgery: part 2--analysis of 380 procedures. Neurosurgery 1998;42:226-32.
               34.  Linsler S, Fischer G, Skliarenko V, Stadie A, Oertel J. Endoscopic assisted supraorbital keyhole approach or endoscopic endonasal
                   approach in cases of tuberculum sellae meningioma: which surgical route should be favored?. World Neurosurg 2017;104:601-11.
               35.  Wilson DA, Duong H, Teo C, Kelly DF. The supraorbital endoscopic approach for tumors. World Neurosurg 2014;82:S72-80.
               36.  Arnaout MM, Luzzi S, Galzio R, Aziz K. Supraorbital keyhole approach: pure endoscopic and endoscope-assisted perspective. Clin
                   Neurol Neurosurg 2020;189:105623.
               37.  Berhouma M, Jacquesson T, Jouanneau E. The fully endoscopic supraorbital trans-eyebrow keyhole approach to the anterior and middle
                   skull base. Acta Neurochir (Wien) 2011;153:1949-54.
               38.  Prott W. Cisternoscopy? Endoscopy of the cerebellopontine angle. Acta neurochir 1974;31:105-13.
               39.  Oppel F, Mulch G, Brock M. Endoscopic section of the sensory trigeminal root, the glossopharyngeal nerve, and the cranial part of the
                   vagus for intractable facial pain caused by upper jaw carcinoma. Surg Neurol 1981;16:92-5.
               40.  Ormond DR, Hadjipanayis CG. The supraorbital keyhole craniotomy through an eyebrow incision: its origins and evolution. Minim
                   Invasive Surg 2013;2013:296469.
               41.  Czirják S, Nyáry I, Futó J, Szeifert GT. Bilateral supraorbital keyhole approach for multiple aneurysms via superciliary skin incisions.
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