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Original Article

Antigenicity and Protein Content of Perilymph in Acoustic Neuroma Patients

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Pages 502-508 | Published online: 08 Jul 2009

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Yang Li, Yan Sha, Feng Wang, Ping Lu, Xilan Liu, Yaru Sheng, Zhongshuai Zhang & Mengxiao Liu. (2019) Comprehensive comparison of MR image quality between intratympanic and intravenous gadolinium injection using 3D real IR sequences. Acta Oto-Laryngologica 139:8, pages 659-664.
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J. M. Lejeune & R. Charachon. (1992) New Immunobiological Tests in the Investigation of Meniere's Disease and Sensorineural Hearing Loss. Acta Oto-Laryngologica 112:2, pages 174-179.
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Jinye Li, Long Li, Xianwen Jin, Na Hu, Xiao Kong, Linsheng Wang, Xiaoqin Li, Weiqiang Dou, Lixin Sun, Chuanting Li & Ruozhen Gong. (2023) MRI can help differentiate Ménière’s disease from other menieriform diseases. Scientific Reports 13:1.
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Kimberley S. Koetsier, Heiko Locher, Radboud W. Koot, Andel G.L. van der Mey, Peter‐Paul G. van Benthem, Jeroen C. Jansen & Erik F. Hensen. (2023) The Course of Hearing Loss in Patients With a Progressive Vestibular Schwannoma. Otolaryngology–Head and Neck Surgery 169:3, pages 622-632.
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Kareem O. Tawfik, Marin McDonald, Yin Ren, Omid Moshtaghi, Marc S. Schwartz & Rick A. Friedman. (2021) Cochlear T2 Signal May Predict Hearing Outcomes After Resection of Acoustic Neuroma. Otology & Neurotology 42:9, pages 1399-1407.
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Luis Lassaletta, Miryam Calvino, Jose Manuel Morales-Puebla, Pablo Lapunzina, Lourdes Rodriguez-de la Rosa, Isabel Varela-Nieto & Victor Martinez-Glez. (2019) Biomarkers in Vestibular Schwannoma–Associated Hearing Loss. Frontiers in Neurology 10.
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Suming Shi, Feng Zhou & Wuqing Wang. (2019) 3D-real IR MRI of Meniere's disease with partial endolymphatic hydrops. American Journal of Otolaryngology 40:4, pages 589-593.
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Franca Wagner, Matteo Gandalini, Arsany Hakim, Ekin Ermis, Dominic Leiser, Martin Zbinden, Lukas Anschuetz, Andreas Raabe, Marco Caversaccio, Roland Wiest & Evelyn Herrmann. (2018) Radiosurgery of vestibular schwannoma: prognostic factors for hearing outcome using 3D-constructive interference in steady state (3D-CISS)Radiochirurgie bei Vestibularisschwannom: Prognostische Faktoren für das Hörvermögen bei Akquisition der 3D-CISS. Strahlentherapie und Onkologie 194:12, pages 1132-1143.
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Suming Shi, Ping Guo & Wuqing Wang. (2018) Magnetic Resonance Imaging of Ménière’s Disease After Intravenous Administration of Gadolinium. Annals of Otology, Rhinology & Laryngology 127:11, pages 777-782.
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Franca Wagner, Evelyn Herrmann, Roland Wiest, Andreas Raabe, Corrado Bernasconi, Marco Caversaccio & Dominique Vibert. (2018) 3D-constructive interference into steady state (3D-CISS) labyrinth signal alteration in patients with vestibular schwannoma. Auris Nasus Larynx 45:4, pages 702-710.
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Vinay Prabhu, Douglas Kondziolka, Travis C. Hill, Carolina G. Benjamin, Matthew S. Shinseki, John G. Golfinos, J. Thomas Roland & Girish M. Fatterpekar. (2018) Preserved Cochlear CISS Signal is a Predictor for Hearing Preservation in Patients Treated for Vestibular Schwannoma With Stereotactic Radiosurgery. Otology & Neurotology 39:5, pages 628-631.
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Heike A. Schmitt, Andreas Pich, Anke Schröder, Verena Scheper, Giorgio Lilli, Günter Reuter & Thomas Lenarz. (2017) Proteome Analysis of Human Perilymph Using an Intraoperative Sampling Method. Journal of Proteome Research 16:5, pages 1911-1923.
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Ömer Hızlı, Sebahattin Cureoglu, Serdar Kaya, Patricia A. Schachern, Michael M. Paparella & Meredith E. Adams. (2015) Quantitative Vestibular Labyrinthine Otopathology in Temporal Bones with Vestibular Schwannoma. Otolaryngology–Head and Neck Surgery 154:1, pages 150-156.
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Constantin von Kirschbaum & Robert Gürkov. (2016) Audiovestibular Function Deficits in Vestibular Schwannoma. BioMed Research International 2016, pages 1-9.
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D. Y. Kim, J. H. Lee, M. J. Goh, Y. S. Sung, Y. J. Choi, R. G. Yoon, S. H. Cho, J. H. Ahn, H. J. Park & J. H. Baek. (2014) Clinical Significance of an Increased Cochlear 3D Fluid-Attenuated Inversion Recovery Signal Intensity on an MR Imaging Examination in Patients with Acoustic Neuroma. American Journal of Neuroradiology 35:9, pages 1825-1829.
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Mia E. Miller, Mahmood F. Mafee, Julie Bykowski, Thomas H. Alexander, Raoul J. Burchette, Bill Mastrodimos & Roberto A. Cueva. (2014) Hearing Preservation and Vestibular Schwannoma. Otology & Neurotology 35:2, pages 348-352.
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Kazuhiro Ishikawa, Jun Haneda & Kouichirou Okamoto. (2012) Decreased vestibular signal intensity on 3D-FIESTA in vestibular schwannomas differentiating from meningiomas. Neuroradiology 55:3, pages 261-270.
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Shinji Naganawa, Hisashi Kawai, Michihiko Sone, Tsutomu Nakashima & Mitsuru Ikeda. (2011) Endolympathic hydrops in patients with vestibular schwannoma: visualization by non-contrast-enhanced 3D FLAIR. Neuroradiology 53:12, pages 1009-1015.
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In Ho Lee, Hyung-Jin Kim, Won Ho Chung, Eunhee Kim, Jung Won Moon, Sung Tae Kim, Keon Ha Kim, Pyoung Jeon & Hong Sik Byun. (2009) Signal intensity change of the labyrinth in patients with surgically confirmed or radiologically diagnosed vestibular schwannoma on isotropic 3D fluid-attenuated inversion recovery MR imaging at 3 T. European Radiology 20:4, pages 949-957.
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Masahiro Yamazaki, Shinji Naganawa, Hisashi Kawai, Takashi Nihashi, Hiroshi Fukatsu & Tsutomu Nakashima. (2009) Increased signal intensity of the cochlea on pre- and post-contrast enhanced 3D-FLAIR in patients with vestibular schwannoma. Neuroradiology 51:12, pages 855-863.
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R.A. Bhadelia, K.L. Tedesco, S. Hwang, S.H. Erbay, P.H. Lee, W. Shao & C. Heilman. (2008) Increased Cochlear Fluid-Attenuated Inversion Recovery Signal in Patients with Vestibular Schwannoma. American Journal of Neuroradiology 29:4, pages 720-723.
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Mark J. Levenson, Rosemary B. Desloge & Simon C. Parisier. (2009) Beta‐2 Transferrin. The Laryngoscope 106:2, pages 159-161.
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Moufid H. Abdo, Joseph G. Feghali & David R. Stapells. (1993) Transient evoked otoacoustic emissions: clinical applications and technical considerations. International Journal of Pediatric Otorhinolaryngology 25:1-3, pages 61-71.
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J.F. Rehfeld, W.W. van Solinge, M. Tos & J. Thomsen. (1990) Gastrin, cholecystokinin and their precursors in acoustic neuromas. Brain Research 530:2, pages 235-238.
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