Abel TJ, Manzel K, Bruss J, Belfi AM, Howard MA, Tranel D (2016) The cognitive and behavioral effects of meningioma lesions involving the ventromedial prefrontal cortex. J Neurosurg 124:1568–1577
Berhouma M, Jacquesson T, Jouanneau E, Cotton F (2019) Pathogenesis of peri-tumoral edema in intracranial meningiomas. Neurosurg Rev 42:59–71
Bommakanti K, Somayajula S, Suvarna A, Purohit AK, Mekala S, Chadalawadi SK et al (2016) Pre-operative and post-operative cognitive deficits in patients with supratentorial meningiomas. Clin Neurol Neurosurg 143:150–158
Broyd SJ, Demanuele C, Debener S, Helps SK, James CJ, Sonuga-Barke EJ (2009) Default-mode brain dysfunction in mental disorders: a systematic review. Neurosci Biobehav Rev 33:279–296
De Baene W, Rijnen SJ, Gehring K, Meskal I (2019) Rutten G-JM, Sitskoorn MM: Lesion symptom mapping at the regional level in patients with a meningioma. Neuropsychology 33:103
Di Cristofori A, Zarino B, Bertani G, Locatelli M, Rampini P, Carrabba G et al (2018) Surgery in elderly patients with intracranial meningioma: neuropsychological functioning during a long term follow-up. J Neurooncol 137:611–619
Dijkstra M, van Nieuwenhuizen D, Stalpers LJ, Wumkes M, Waagemans M, Vandertop WP et al (2009) Late neurocognitive sequelae in patients with WHO grade I meningioma. J Neurol Neurosurg Psychiatry 80:910–915
Article CAS PubMed Google Scholar
Farrin L, Hull L, Unwin C, Wykes T, David A (2003) Effects of depressed mood on objective and subjective measures of attention. J Neuropsychiatry Clin Neurosci 15:98–104
Filley CM (2000) Clinical neurology and executive dysfunction, in Seminars in speech and language: Copyright© 2000 by Thieme Medical Publishers, Inc., 333 Seventh Avenue, New, vol 21, pp 0095–0108
Fisher FL, Najafabadi AHZ, van der Meer PB, Boele FW, Peerdeman SM, Peul WC et al (2021) Long-term health-related quality of life and neurocognitive functioning after treatment in skull base meningioma patients. J Neurosurg 136:1077–1089
Guarracino I, Ius T, Skrap M, Tomasino B (2020) Meningioma can lead to pre-operative cognitive alterations even if localized in sensorimotor areas: A multimodal MRI-neuropsychological study in a series of 46 patients. Neuropsychologia 137:107288
Hendrix P, Hans E, Griessenauer CJ, Simgen A, Oertel J, Karbach J (2017) Neurocognitive function surrounding the resection of frontal WHO grade I meningiomas: a prospective matched-control study. World Neurosurg 98:203–210
Hohman TJ, Beason-Held LL, Resnick SM (2011) Cognitive complaints, depressive symptoms, and cognitive impairment: are they related? J Am Geriatr Soc 59:1908–1912
Article PubMed PubMed Central Google Scholar
Kang MJ, Pyun J-M, Baek MJ, Hwang K, Han JH, Park YH et al (2020) Predictors of pre-operative cognitive impairment in meningioma patients over 60 years old. BMC Neurol 20:1–6
Koizumi H, Ideguchi M, Iwanaga H, Shirao S, Sadahiro H, Oka F et al (2014) Cognitive dysfunction might be improved in association with recovered neuronal viability after intracranial meningioma resection. Brain Res 1574:50–59
Article CAS PubMed Google Scholar
Konglund A, Rogne S, Lund-Johansen M, Scheie D, Helseth E, Meling T (2013) Outcome following surgery for intracranial meningiomas in the aging. Acta Neurol Scand 127:161–169
Article CAS PubMed Google Scholar
Krupp W, Klein C, Koschny R, Holland H, Seifert V, Meixensberger J (2009) Assessment of neuropsychological parameters and quality of life to evaluate outcome in patients with surgically treated supratentorial meningiomas. Neurosurgery 64:40–47
Liouta E, Koutsarnakis C, Liakos F, Stranjalis G (2016) Effects of intracranial meningioma location, size, and surgery on neurocognitive functions: a 3-year prospective study. J Neurosurg 124:1578–1584
Louis DN, Perry A, Wesseling P, Brat DJ, Cree IA, Figarella-Branger D et al (2021) The 2021 WHO classification of tumors of the central nervous system: a summary. Neuro Oncol 23:1231–1251
Article CAS PubMed PubMed Central Google Scholar
Meskal I, Gehring K, van der Linden SD (2015) Rutten G-JM, Sitskoorn MM: Cognitive improvement in meningioma patients after surgery: clinical relevance of computerized testing. J Neurooncol 121:617–625
Okonkwo DO, Laws Jr ER (2009) Meningiomas: historical perspective. In: Meningiomas: Springer, pp 3–10
Ostrom QT, Patil N, Cioffi G, Waite K, Kruchko C, Barnholtz-Sloan JS (2020) CBTRUS statistical report: primary brain and other central nervous system tumors diagnosed in the United States in 2013–2017. Neuro-oncology 22:iv1–iv96
Article PubMed PubMed Central Google Scholar
Page MJ, McKenzie JE, Bossuyt PM, Boutron I, Hoffmann TC, Mulrow CD et al (2021) The PRISMA 2020 statement: an updated guideline for reporting systematic reviews. Int J Surg 88:105906
Park BJ, Kim HK, Sade B, Lee JH (2009) Epidemiology in Lee, Juang H. Meningiomas: diagnosis, threatyment and outcome
Park K-J, Kang S-H, Chae Y-S, Yu M-O, Cho T-H, Suh J-K et al (2010) Influence of interleukin-6 on the development of peritumoral brain edema in meningiomas. J Neurosurg 112:73–80
Article CAS PubMed Google Scholar
Passier PE, Visser-Meily JM, Rinkel GJ, Lindeman E, Post MW (2011) Life satisfaction and return to work after aneurysmal subarachnoid hemorrhage. J Stroke Cerebrovasc Dis 20:324–329
Pranckevičienė A, Jurkuvėnas V, Deltuva VP, Tamašauskas A, Bunevičius A (2018) Preoperative verbal memory problems and their clinical prognostic value in meningioma patients: a prospective study. Appl Neuropsychol Adult 26(6):503–512. https://doi.org/10.1080/23279095.2018.1450750
Rijnen SJ, Meskal I, Bakker M, De Baene W, Rutten G-JM, Gehring K et al (2019) Cognitive outcomes in meningioma patients undergoing surgery: individual changes over time and predictors of late cognitive functioning. Neuro-oncol 21:911–922
Article PubMed PubMed Central Google Scholar
Rosazza C, Minati L (2011) Resting-state brain networks: literature review and clinical applications. Neurol Sci 32:773–785
Sekely A, Zakzanis KK, Mabbott D, Tsang DS, Kongkham P, Zadeh G et al (2022) Long-term neurocognitive, psychological, and return to work outcomes in meningioma patients. Support Care Cancer 30:3893–3902
Stoecklein V, Wunderlich S, Papazov B, Thon N, Schmutzer M, Schinner R et al (2023) Perifocal edema in patients with meningioma is associated with impaired whole-brain connectivity as detected by resting-state fMRI. Am J Neuroradiol 44:814–819
Article CAS PubMed Google Scholar
Toh CH, Siow TY, Castillo M (2021) Peritumoral brain edema in metastases may be related to glymphatic dysfunction. Front Oncol 11:725354
Article CAS PubMed PubMed Central Google Scholar
Tucha O, Smely C, Lange KW (2001) Effects of surgery on cognitive functioning of elderly patients with intracranial meningioma. Br J Neurosurg 15:184–188
Tucha O, Smely C, Preier M, Becker G, Paul GM, Lange KW (2003) Preoperative and postoperative cognitive functioning in patients with frontal meningiomas. J Neurosurg 98:21–31
Van Den Heuvel MP, Pol HEH (2010) Exploring the brain network: a review on resting-state fMRI functional connectivity. Eur Neuropsychopharmacol 20:519–534
van der Vossen S, Schepers VP, van der Sprenkel JWB, Visser-Meily JM, Post MW (2014) Cognitive and emotional problems in patients after cerebral meningioma surgery. J Rehabil Med 46:430–437
Van Nieuwenhuizen D, Ambachtsheer N, Heimans J, Reijneveld J, Peerdeman S, Klein M (2013) Neurocognitive functioning and health-related quality of life in patients with radiologically suspected meningiomas. J Neurooncol 113:433–440
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