PVDF-based piezoelectric microphone for sound detection inside the cochlea: toward totally implantable cochlear implants S Park, X Guan, Y Kim, FPX Creighton, E Wei, I Kymissis, HH Nakajima, ... Trends in hearing 22, 2331216518774450, 2018 | 65 | 2018 |
Impedances of the inner and middle ear estimated from intracochlear sound pressures in normal human temporal bones DL Frear, X Guan, C Stieger, JJ Rosowski, HH Nakajima Hearing research 367, 17-31, 2018 | 39 | 2018 |
Experimental and modeling study of human tympanic membrane motion in the presence of middle ear liquid X Zhang, X Guan, D Nakmali, V Palan, M Pineda, RZ Gan Journal of the Association for Research in Otolaryngology 15, 867-881, 2014 | 36 | 2014 |
Effect of middle ear fluid on sound transmission and auditory brainstem response in guinea pigs X Guan, RZ Gan Hearing research 277 (1-2), 96-106, 2011 | 34 | 2011 |
Intracochlear sound pressure measurements in normal human temporal bones during bone conduction stimulation C Stieger, X Guan, RB Farahmand, BF Page, JP Merchant, D Abur, ... Journal of the Association for Research in Otolaryngology 19, 523-539, 2018 | 32 | 2018 |
Motion of tympanic membrane in guinea pig otitis media model measured by scanning laser Doppler vibrometry X Wang, X Guan, M Pineda, RZ Gan Hearing research 339, 184-194, 2016 | 30 | 2016 |
An intracochlear pressure sensor as a microphone for a fully implantable cochlear implant FPX Creighton, X Guan, S Park, IJ Kymissis, HH Nakajima, ES Olson Otology & Neurotology 37 (10), 1596-1600, 2016 | 29 | 2016 |
Mechanisms of tympanic membrane and incus mobility loss in acute otitis media model of guinea pig X Guan, RZ Gan Journal of the Association for Research in Otolaryngology 14, 295-307, 2013 | 27 | 2013 |
Factors affecting loss of tympanic membrane mobility in acute otitis media model of chinchilla X Guan, Y Chen, RZ Gan Hearing research 309, 136-146, 2014 | 26 | 2014 |
Modeling analysis of biomechanical changes of middle ear and cochlea in otitis media RZ Gan, X Zhang, X Guan AIP Conference Proceedings 1403 (1), 539-544, 2011 | 21 | 2011 |
Bone-conduction hyperacusis induced by superior canal dehiscence in human: the underlying mechanism X Guan, YS Cheng, DJ Galaiya, JJ Rosowski, DJ Lee, HH Nakajima Scientific reports 10 (1), 16564, 2020 | 17 | 2020 |
Measurement of basilar membrane motion during round window stimulation in guinea pigs Y Chen, X Guan, T Zhang, RZ Gan Journal of the Association for Research in Otolaryngology 15, 933-943, 2014 | 15 | 2014 |
Comparison of eardrum mobility in acute otitis media and otitis media with effusion models X Guan, W Li, RZ Gan Otology & Neurotology 34 (7), 1316-1320, 2013 | 14 | 2013 |
Morphological changes in the tympanic membrane associated with Haemophilus influenzae-induced acute otitis media in the chinchilla X Guan, S Jiang, TW Seale, BM Hitt, RZ Gan International journal of pediatric otorhinolaryngology 79 (9), 1462-1471, 2015 | 13 | 2015 |
Superior canal dehiscence similarly affects cochlear pressures in temporal bones and audiograms in patients YS Cheng, S Raufer, X Guan, CF Halpin, DJ Lee, HH Nakajima Ear and hearing 41 (4), 804-810, 2020 | 12 | 2020 |
Factors affecting sound energy absorbance in acute otitis media model of chinchilla X Guan, TW Seale, RZ Gan Hearing research 350, 22-31, 2017 | 8 | 2017 |
The effect of round window reinforcement on human hearing X Guan, YS Cheng, D Galaiya, HH Nakajima AIP Conference Proceedings 1965 (1), 2018 | 7 | 2018 |
Vibrational communication in elephants: a case for bone conduction C O’Connell-Rodwell, X Guan, S Puria Biotremology: Studying Vibrational Behavior, 259-276, 2019 | 5 | 2019 |
Impedances of the ear estimated with intracochlear pressures in normal human temporal bones D Frear, X Guan, C Stieger, HH Nakajima AIP Conference Proceedings 1965 (1), 2018 | 2 | 2018 |
Effect of ossicular-joint flexibility on bone conduction hearing—A finite-element model analysis X Guan, S Puria The Journal of the Acoustical Society of America 141 (5_Supplement), 3896-3896, 2017 | 1 | 2017 |