Cosgrove GR, Bertrand G, Fontaine S, Robitaille Y, Melanson D (1988) Cavernous angiomas of the spinal cord. J Neurosurg 68(1):31–36. https://doi.org/10.3171/jns.1988.68.1.0031
Article CAS PubMed Google Scholar
Maslehaty H, Barth H, Petridis AK, Doukas A, Mehdorn HM (2011) Symptomatic spinal cavernous malformations: indication for microsurgical treatment and outcome. Eur Spine J 20(10):1765–1770. https://doi.org/10.1007/s00586-011-1898-z
Article PubMed PubMed Central Google Scholar
Smith ER (2024) Cavernous malformations of the central nervous system. N Engl J Med 390(11):1022–1028. https://doi.org/10.1056/NEJMra2305116
Article CAS PubMed Google Scholar
Goldstein HE, Solomon RA (2017) Epidemiology of cavernous malformations. Handb Clin Neurol 143:241–247. https://doi.org/10.1016/b978-0-444-63640-9.00023-0
Santoro A, Piccirilli M, Frati A, Salvati M, Innocenzi G, Ricci G, Cantore G (2004) Intramedullary spinal cord cavernous malformations: report of ten new cases. Neurosurg Rev 27(2):93–98. https://doi.org/10.1007/s10143-003-0302-9
Velz J, Bozinov O, Sarnthein J, Regli L, Bellut D (2018) The current management of spinal cord cavernoma. J Neurosurg Sci 62(4):383–396. https://doi.org/10.23736/s0390-5616.18.04305-9
Badhiwala JH, Farrokhyar F, Alhazzani W, Yarascavitch B, Aref M, Algird A, Murty N, Kachur E, Cenic A, Reddy K, Almenawer SA (2014) Surgical outcomes and natural history of intramedullary spinal cord cavernous malformations: a single-center series and meta-analysis of individual patient data. J Neurosurg-Spine 21(4):662–676. https://doi.org/10.3171/2014.6.spine13949
Hirsch JA, Nicola G, McGinty G, Liu RW, Barr RM, Chittle MD, Manchikanti L (2016) ICD-10: history and context. AJNR Am J Neuroradiol 37(4):596–599. https://doi.org/10.3174/ajnr.A4696
Article CAS PubMed PubMed Central Google Scholar
Sandmann ACA, Kempeneers MA, van den Berg R, Verbaan D, Vandertop WP, Coutinho JM (2024) Clinical course of patients with conservatively managed cerebral cavernous malformations. Eur Stroke J. https://doi.org/10.1177/23969873241246868
Article PubMed PubMed Central Google Scholar
von Elm E, Altman DG, Egger M, Pocock SJ, Gøtzsche PC, Vandenbroucke JP (2008) The strengthening the reporting of observational studies in epidemiology (STROBE) statement: guidelines for reporting observational studies. J Clin Epidemiol 61(4):344–349. https://doi.org/10.1016/j.jclinepi.2007.11.008
Zhang L, Yang W, Jia W, Kong D, Yang J, Wang G, Xu Y (2016) Comparison of outcome between surgical and conservative management of symptomatic spinal cord cavernous malformations. Clin Neurosurg 78:552–561. https://doi.org/10.1227/neu.0000000000001075
Ohnishi YI, Nakajima N, Takenaka T, Fujiwara S, Miura S, Terada E, Yamada S, Kishima H (2020) Conservative and surgical management of spinal cord cavernous malformations. World Neurosurg 5:100066. https://doi.org/10.1016/j.wnsx.2019.100066
Al-Shahi Salman R, Berg MJ, Morrison L, Awad IA, Angioma Alliance Scientific Advisory Board (2008) Hemorrhage from cavernous malformations of the brain: definition and reporting standards. Stroke 39(12):3222–3230. https://doi.org/10.1161/strokeaha.108.515544
Banks JL, Marotta CA (2007) Outcomes validity and reliability of the modified Rankin scale: implications for stroke clinical trials: a literature review and synthesis. Stroke 38(3):1091–1096. https://doi.org/10.1161/01.STR.0000258355.23810.c6
Rabin R, de Charro F (2001) EQ-5D: a measure of health status from the EuroQol Group. Ann Med 33(5):337–343. https://doi.org/10.3109/07853890109002087
Article CAS PubMed Google Scholar
Hays RD, Spritzer KL, Schalet BD, Cella D (2018) PROMIS(®)-29 v2.0 profile physical and mental health summary scores. Qual Life Res 27(7):1885–1891. https://doi.org/10.1007/s11136-018-1842-3
Article PubMed PubMed Central Google Scholar
MedCalc Software Ltd. Comparison of two rates. https://www.medcalc.org/calc/rate_comparison.php (Version 22.016)
Versteegh MM, Vermeulen KM, Evers SMAA, de Wit GA, Prenger R, Stolk EA (2016) Dutch tariff for the five-level version of EQ-5D. Value Health 19(4):343–352. https://doi.org/10.1016/j.jval.2016.01.003
Cella D, Choi SW, Condon DM, Schalet B, Hays RD, Rothrock NE, Yount S, Cook KF, Gershon RC, Amtmann D, DeWalt DA, Pilkonis PA, Stone AA, Weinfurt K, Reeve BB (2019) PROMIS(®) adult health profiles: efficient short-form measures of seven health domains. Value Health 22(5):537–544. https://doi.org/10.1016/j.jval.2019.02.004
Article PubMed PubMed Central Google Scholar
Terwee CB, Ahmed S, Alhasani R, Alonso J, Bartlett SJ, Chaplin JE, Cho J, Choi H, Correia H, Efficace F, Fischer F, Glinkowski W, Kang D, Mercieca-Bebber R, Mucsi I, Oishi T, Pan A-W, Roorda LD, Rose M, Schalet BD, Schmidt S, Tinsley M, Valderas JM, Vilagut G, Yuan C, Cella D (2024) Comparable real-world patient-reported outcomes data across health conditions, settings, and countries: the PROMIS international collaboration. NEJM Catalyst 5(9):CAT.24.0045. https://doi.org/10.1056/CAT.24.0045
Terwee CB, Roorda LD (2023) Country-specific reference values for PROMIS(®) pain, physical function and participation measures compared to US reference values. Ann Med 55(1):1–11. https://doi.org/10.1080/07853890.2022.2149849
Article PubMed PubMed Central Google Scholar
Elsman EBM, Flens G, de Beurs E, Roorda LD, Terwee CB (2022) Towards standardization of measuring anxiety and depression: differential item functioning for language and Dutch reference values of PROMIS item banks. PLoS ONE 17(8):e0273287. https://doi.org/10.1371/journal.pone.0273287
Article CAS PubMed PubMed Central Google Scholar
Terwee CB, Elsman EB, Roorda LD (2022) Towards standardization of fatigue measurement: psychometric properties and reference values of the PROMIS fatigue item bank in the Dutch general population. Res Methods Med Health Sci 3(3):86–98. https://doi.org/10.1177/26320843221089628
Terwee CB, van Litsenburg RRL, Elsman EBM, Roorda LD (2023) Psychometric properties and reference values of the Patient-Reported Outcomes Measurement Information System (PROMIS) sleep item banks in the Dutch general population. J Sleep Res 32(2):e13753. https://doi.org/10.1111/jsr.13753
IBM Corp. Released 2021. IBM SPSS Statistics for Windows, Version 28.0. IBM Corp., Armonk, NY
(2023) MedCalc® Statistical Software version 22.016. MedCalc Software Ltd, Ostend, Belgium
Kharkar S, Shuck J, Conway J, Rigamonti D (2007) The natural history of conservatively managed symptomatic intramedullary spinal cord cavernomas. Neurosurgery 60(5):865–871. https://doi.org/10.1227/01.neu.0000255437.36742.15
Goyal A, Rinaldo L, Alkhataybeh R, Kerezoudis P, Alvi MA, Flemming KD, Williams L, Diehn F, Bydon M (2019) Clinical presentation, natural history and outcomes of intramedullary spinal cord cavernous malformations. J Neurol Neurosurg Psychiatry 90(6):695–703. https://doi.org/10.1136/jnnp-2018-319553
Nagoshi N, Tsuji O, Nakashima D, Takeuchi A, Kameyama K, Okada E, Fujita N, Yagi M, Matsumoto M, Nakamura M, Watanabe K (2019) Clinical outcomes and prognostic factors for cavernous hemangiomas of the spinal cord: a retrospective cohort study. J Neurosurg-Spine 31(2):271–278. https://doi.org/10.3171/2019.1.spine18854
Kim KM, Chung CK, Huh W, Lee WJ, Park SB, Kim CH, Kim KJ, Jahng TA (2013) Clinical outcomes of conservative management of spinal cord cavernous angiomas. Acta Neurochir 155(7):1209–1214. https://doi.org/10.1007/s00701-013-1760-7
Ren J, Jiang N, Bian L, Dmytriw AA, Zeng G, He C, Sun L, Li X, Ma Y, Yu J, Li G, Ye M, Hu P, Li J, Yang F, Li Q, Ling F, Zhang H, Hong T (2022) Natural history of spinal cord cavernous malformations: a multicenter cohort study. Neurosurgery 90:390–398. https://doi.org/10.1227/neu.0000000000001842
Santos AN, Rauschenbach L, Darkwah Oppong M, Gembruch O, Saban D, Chen B, Herten A, Schmidt B, Li Y, Ozkan N, Jabbarli R, Wrede K, Sure U, Dammann P (2022) Natural course of untreated spinal cord cavernous malformations: a follow-up study within the initial 5 years after diagnosis. J Neurosurg Spine 36(6):1030–1034. https://doi.org/10.3171/2021.9.spine211052
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