Hallpike CS, Cairns H (1938) Observations on the pathology of Meniere’s syndrome: (Section of Otology). Pro R Soc Med 31(11):1317–1336
Niyazov DM, Andrews JC, Strelioff D et al (2001) Diagnosis of endolymphatic hydrops in vivo with magnetic resonance imaging. Otol Neurotol 22(6):813–817
Article CAS PubMed Google Scholar
Zou J, Pyykko I, Bretlau P et al (2003) In vivo visualization of endolymphatic hydrops in guinea pigs: magnetic resonance imaging evaluation at 4.7 tesla. Ann Otol Rhinol Laryngol 112(12):1059–1065
Naganawa S, Komada T, Fukatsu H et al (2006) Observation of contrast enhancement in the cochlear fluid space of healthy subjects using a 3D-FLAIR sequence at 3 Tesla. Eur Radiol 16(3):733–737
Nakashima T, Naganawa S, Sugiura M et al (2007) Visualization of endolymphatic hydrops in patients with Meniere’s disease. Laryngoscope 117(3):415–420
Wang F, Lyu H, Zhao M et al (2017) Assessment of cochlea endolymphatic hydrops using 3-D FLAIR and 3-D Real IR sequence in guinea pigs via 3T MRI after intratympanic gadolinium: a histopathological comparison. Otol Neurotol 38(4):585–590
Suárez Vega VM, Dominguez P, Caballeros Lam FM et al (2020) Comparison between high-resolution 3D-IR with real reconstruction and 3D-flair sequences in the assessment of endolymphatic hydrops in 3 tesla. Acta Otolaryngol 140(11):883–888
Chen W, Niu Y, Lin M et al (2022) Space-occupying lesions of the inner ear are easily misdiagnosed as endolymphatic hydrops in a perilymph-enhanced sequence without the assistance of a heavily T2-weighted sequence. J Comput Assist Tomogr 46(5):830–835
Venkatasamy A, Veillon F, Fleury A et al (2017) Imaging of the saccule for the diagnosis of endolymphatic hydrops in Meniere disease, using a three-dimensional T2-weighted steady state free precession sequence: accurate, fast, and without contrast material intravenous injection. Eur Radiol Exp 1(1):14
Article PubMed PubMed Central Google Scholar
Fukutomi H, Hamitouche L, Yamamoto T et al (2022) Visualization of the saccule and utricle with non-contrast-enhanced FLAIR sequences. Eur Radiol 32(5):3532–3540
Article CAS PubMed Google Scholar
Bera K, Braman N, Gupta A et al (2022) Predicting cancer outcomes with radiomics and artificial intelligence in radiology. Nat Rev Clin Oncol 19(2):132–146
Article CAS PubMed Google Scholar
Rizzo S, Botta F, Raimondi S et al (2018) Radiomics: the facts and the challenges of image analysis. Eur Radiol Exp 2(1):36
Article PubMed PubMed Central Google Scholar
Wagner MW, Namdar K, Biswas A et al (2021) Radiomics, machine learning, and artificial intelligence-what the neuroradiologist needs to know. Neuroradiology 63(12):1957–1967
Article PubMed PubMed Central Google Scholar
Goebel JA (2016) 2015 Equilibrium Committee Amendment to the 1995 AAO-HNS guidelines for the definition of Meniere’s disease. Otolaryngol Head Neck Surg 154(3):403–404
Nakashima T, Naganawa S, Pyykko I et al (2009) Grading of endolymphatic hydrops using magnetic resonance imaging. Acta Otolaryngol Suppl 560:5–8
Bernaerts A, Vanspauwen R, Blaivie C et al (2019) The value of four stage vestibular hydrops grading and asymmetric perilymphatic enhancement in the diagnosis of Meniere’s disease on MRI. Neuroradiology 61(4):421–429
Article PubMed PubMed Central Google Scholar
Gibson WPR (2019) Meniere’s disease. Adv Otorhinolaryngol 82:77–86
Yang TH, Xirasagar S, Cheng YF et al (2021) Peripheral vestibular disorders: nationwide evidence from Taiwan. Laryngoscope 131(3):639–643
Connor S, Grzeda MT, Jamshidi B et al (2023) Delayed post gadolinium MRI descriptors for Meniere’s disease: a systematic review and meta-analysis. Eur Radiol 33(10):7113–7135
Article PubMed PubMed Central Google Scholar
Li J, Wang L, Hu N et al (2023) Improving diagnostic accuracy for probable and definite Meniere’s disease using magnetic resonance imaging. Neuroradiology 65(9):1371–1379
Yamamoto M, Teranishi M, Naganawa S et al (2010) Relationship between the degree of endolymphatic hydrops and electrocochleography. Audiol Neurootol 15(4):254–260
Katayama N, Yamamoto M, Teranishi M et al (2010) Relationship between endolymphatic hydrops and vestibular-evoked myogenic potential. Acta Otolaryngol 130(8):917–923
Wu Q, Dai C, Zhao M et al (2016) The correlation between symptoms of definite Meniere’s disease and endolymphatic hydrops visualized by magnetic resonance imaging. Laryngoscope 126(4):974–979
Horii A, Osaki Y, Kitahara T et al (2011) Endolymphatic hydrops in Meniere’s disease detected by MRI after intratympanic administration of gadolinium: comparison with sudden deafness. Acta Otolaryngol 131(6):602–609
Yu J, Zhou YJ, Xu XD et al (2020) Different findings of morphological changes and functional decline in the vestibule and the semicircular canal in ipsilateral delayed endolymphatic hydrops. Clin Neurophysiol 131(7):1487–1494
Xiao H, Chen Y, Huang Q et al (2023) (2023) Differentiating Meniere’s disease and vestibular migraine: insights from gadolinium-enhanced magnetic resonance imaging and clinical features. Laryngoscope. https://doi.org/10.1002/lary.30858
Lin KT, Lu CJ, Young YH (2022) Predicting positive cochlear endolymphatic hydrops on magnetic resonance images. Laryngoscope Investig Otolaryngol 7(4):1178–1185
Article PubMed PubMed Central Google Scholar
Simon F, Guichard JP, Kania R et al (2017) Saccular measurements in routine MRI can predict hydrops in Meniere’s disease. Eur Arch Otorhinolaryngol 274(12):4113–4120
Keller JH, Hirsch BE, Marovich RS et al (2017) Detection of endolymphatic hydrops using traditional MR imaging sequences. Am J Otolaryngol 38(4):442–446
van der Lubbe M, Vaidyanathan A, de Wit M et al (2022) A non-invasive, automated diagnosis of Meniere’s disease using radiomics and machine learning on conventional magnetic resonance imaging: a multicentric, case-controlled feasibility study. Radiol Med 127(1):72–82
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