Morphological Immaturity of the Neonatal Organ of Corti and Associated Structures in Humans
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Sebastiaan W. F. Meenderink | C. Abdala | M. Liberman | M. D. Valero | C. Shera | Michelle D Valero | M. C. Liberman | S. Meenderink
[1] J. Nadol,et al. Anatomy of the Human Osseous Spiral Lamina and Cochlear Partition Bridge: Relevance for Cochlear Partition Motion , 2020, Journal of the Association for Research in Otolaryngology.
[2] C. Abdala,et al. Swept-Tone Stimulus-Frequency Otoacoustic Emissions in Human Newborns , 2019, Trends in hearing.
[3] A. Ortmann,et al. Reflection- and Distortion-Source Otoacoustic Emissions: Evidence for Increased Irregularity in the Human Cochlea During Aging , 2018, Journal of the Association for Research in Otolaryngology.
[4] A. Brichta,et al. Anatomical and physiological development of the human inner ear , 2016, Hearing Research.
[5] A. Cardona,et al. Fiji: an open-source platform for biological-image analysis , 2012, Nature Methods.
[6] C. Abdala,et al. Maturation and Aging of the Human Cochlea: A View through the DPOAE Looking Glass , 2012, Journal of the Association for Research in Otolaryngology.
[7] Sharon G. Kujawa,et al. Age-Related Primary Cochlear Neuronal Degeneration in Human Temporal Bones , 2011, Journal of the Association for Research in Otolaryngology.
[8] M. Liberman,et al. Selective Inner Hair Cell Loss in Prematurity: A Temporal Bone Study of Infants from a Neonatal Intensive Care Unit , 2011, Journal of the Association for Research in Otolaryngology.
[9] Sumitrajit Dhar,et al. The breaking of cochlear scaling symmetry in human newborns and adults. , 2011, The Journal of the Acoustical Society of America.
[10] C. Abdala,et al. Level dependence of distortion product otoacoustic emission phase is attributed to component mixing. , 2011, The Journal of the Acoustical Society of America.
[11] Stephan Saalfeld,et al. Globally optimal stitching of tiled 3D microscopic image acquisitions , 2009, Bioinform..
[12] Mario A Ruggero,et al. Threshold tuning curves of chinchilla auditory-nerve fibers. I. Dependence on characteristic frequency and relation to the magnitudes of cochlear vibrations. , 2008, Journal of neurophysiology.
[13] Haobing Wang,et al. Three-Dimensional Virtual Model of the Human Temporal Bone: A Stand-Alone, Downloadable Teaching Tool , 2006, Otology & neurotology : official publication of the American Otological Society, American Neurotology Society [and] European Academy of Otology and Neurotology.
[14] F. Spoor,et al. Prenatal growth and development of the modern human labyrinth , 2004, Journal of anatomy.
[15] Peter Dallos,et al. Organ of Corti Kinematics , 2003, Journal of the Association for Research in Otolaryngology.
[16] J. Nadol,et al. Morphometric Analysis of Age-Related Changes in the Human Basilar Membrane , 2001, The Annals of otology, rhinology, and laryngology.
[17] C. Talmadge,et al. Interrelations among distortion-product phase-gradient delays: their connection to scaling symmetry and its breaking. , 2000, The Journal of the Acoustical Society of America.
[18] J. Guinan,et al. Evoked otoacoustic emissions arise by two fundamentally different mechanisms: a taxonomy for mammalian OAEs. , 1999, The Journal of the Acoustical Society of America.
[19] P Dallos,et al. Morphology of the unfixed cochlea , 1998, Hearing Research.
[20] D. Bagger-sjöbäck,et al. Development of the human stria vascularis , 1992, Hearing Research.
[21] D. Mountain,et al. In vivo measurement of basilar membrane stiffness. , 1991, The Journal of the Acoustical Society of America.
[22] D. D. Greenwood. A cochlear frequency-position function for several species--29 years later. , 1990, The Journal of the Acoustical Society of America.
[23] R. Pujol,et al. Hair cell innervation in the fetal human cochlea. , 1988, Acta oto-laryngologica.
[24] Y. Igarashi. Cochlea of the human fetus: a scanning electron microscope study. , 1980, Archivum histologicum Japonicum = Nihon soshikigaku kiroku.
[25] Y. Igarashi,et al. Embryonic development of the human organ of Corti: electron microscopic study. , 1980, International journal of pediatric otorhinolaryngology.
[26] Katsuhiko Tanaka,et al. Organ of Corti in the Human Fetus , 1979, The Annals of otology, rhinology, and laryngology.
[27] L M Cabezudo,et al. The ultrastructure of the basilar membrane in the cat. , 1978, Acta oto-laryngologica.
[28] W. T. Peake,et al. Experiments in Hearing , 1963 .
[29] H. Davis,et al. Exploration of Cochlear Potentials in Guinea Pig with a Microelectrode , 1954 .
[30] E. Wever. II The Width of the Basilar Membrane in Man , 1938 .
[31] S. R. Guild. THE WIDTH OF THE BASILAR MEMBRANE. , 1927, Science.
[32] C. Abdala,et al. Morphological and Functional Ear Development , 2012 .
[33] Saumil N. Merchant,et al. Schuknecht's pathology of the ear , 2010 .
[34] R. Pujol,et al. Development of the auditory hair cell surface in human fetuses , 2004, Anatomy and Embryology.
[35] E. Rubel,et al. Cell division in the gerbil cochlea after acoustic trauma. , 1994, The American journal of otology.
[36] R. Pujol,et al. Surface aspects of the developing human organ of Corti. , 1987, Acta oto-laryngologica. Supplementum.
[37] R. Pujol,et al. Early stages of innervation and sensory cell differentiation in the human fetal organ of Corti. , 1985, Acta oto-laryngologica. Supplementum.
[38] R. Pujol. Morphology, synaptology and electrophysiology of the developing cochlea. , 1985, Acta oto-laryngologica. Supplementum.
[39] J. S. Sánchez Fernández,et al. Early aspects of human cochlea development and tectorial membrane histogenesis. , 1983, Acta oto-laryngologica.
[40] G. Zweig. Basilar membrane motion. , 1976, Cold Spring Harbor symposia on quantitative biology.
[41] R. Pujol,et al. Anatomy and physiology of the onset of auditory function. , 1973, Acta oto-laryngologica.
[42] G. Bredberg,et al. Cellular pattern and nerve supply of the human organ of Corti. , 1968, Acta oto-laryngologica.
[43] B. Anson,et al. Development of the otic capsule of the human ear; illustrated in atlas series. , 1958, Quarterly bulletin. Northwestern University (Evanston, Ill.). Medical School.
[44] B. Anson,et al. The temporal bone and the ear , 1949 .