Connection
Daniel Tollin to Cochlea
This is a "connection" page, showing publications Daniel Tollin has written about Cochlea.
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Connection Strength |
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5.703 |
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Benson MA, Peacock J, Sergison MD, Stich D, Tollin DJ. Neural and behavioral binaural hearing impairment and its recovery following moderate noise exposure. Hear Res. 2025 Feb; 456:109166.
Score: 0.851
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Greene NT, Argo TF, Easter J, Walilko T, Tollin DJ. Frequency dependence and harmonic distortion of stapes displacement and intracochlear pressure in response to very high level sounds. Hear Res. 2024 Nov; 453:109121.
Score: 0.837
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Banakis Hartl RM, Kaufmann C, Hansen MR, Tollin DJ. Intracochlear Pressure Transients During Cochlear Implant Electrode Insertion: Effect of Micro-mechanical Control on Limiting Pressure Trauma. Otol Neurotol. 2019 07; 40(6):736-744.
Score: 0.583
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Peacock J, Al Hussaini M, Greene NT, Tollin DJ. Intracochlear pressure in response to high intensity, low frequency sounds in chinchilla. Hear Res. 2018 09; 367:213-222.
Score: 0.543
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Farrell NF, Banakis Hartl RM, Benichoux V, Brown AD, Cass SP, Tollin DJ. Intracochlear Measurements of Interaural Time and Level Differences Conveyed by Bilateral Bone Conduction Systems. Otol Neurotol. 2017 12; 38(10):1476-1483.
Score: 0.522
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Banakis Hartl RM, Mattingly JK, Greene NT, Farrell NF, Gubbels SP, Tollin DJ. Drill-induced Cochlear Injury During Otologic Surgery: Intracochlear Pressure Evidence of Acoustic Trauma. Otol Neurotol. 2017 08; 38(7):938-947.
Score: 0.511
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Jones HG, Koka K, Tollin DJ. Postnatal development of cochlear microphonic and compound action potentials in a precocious species, Chinchilla lanigera. J Acoust Soc Am. 2011 Jul; 130(1):EL38-43.
Score: 0.335
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Eric Lupo J, Koka K, Thornton JL, Tollin DJ. The effects of experimentally induced conductive hearing loss on spectral and temporal aspects of sound transmission through the ear. Hear Res. 2011 Feb; 272(1-2):30-41.
Score: 0.320
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Tollin DJ, Koka K, Peacock J. Using Stapes Velocity to Estimate the Efficacy of Mechanical Stimulation of the Round Window With an Active Middle Ear Implant. Otol Neurotol. 2023 06 01; 44(5):e311-e318.
Score: 0.189
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Alhussaini MA, Banakis Hartl RM, Benichoux V, Tollin DJ, Jenkins HA, Greene NT. Intracochlear Pressures in Simulated Otitis Media With Effusion: A Temporal Bone Study. Otol Neurotol. 2018 08; 39(7):e585-e592.
Score: 0.137
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Banakis Hartl RM, Greene NT, Jenkins HA, Cass SP, Tollin DJ. Lateral Semicircular Canal Pressures During Cochlear Implant Electrode Insertion: a Possible Mechanism for Postoperative Vestibular Loss. Otol Neurotol. 2018 07; 39(6):755-764.
Score: 0.136
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Greene NT, Jenkins HA, Tollin DJ, Easter JR. Stapes displacement and intracochlear pressure in response to very high level, low frequency sounds. Hear Res. 2017 05; 348:16-30.
Score: 0.124
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Greene NT, Mattingly JK, Banakis Hartl RM, Tollin DJ, Cass SP. Intracochlear Pressure Transients During Cochlear Implant Electrode Insertion. Otol Neurotol. 2016 12; 37(10):1541-1548.
Score: 0.122
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Banakis Hartl RM, Mattingly JK, Greene NT, Jenkins HA, Cass SP, Tollin DJ. A Preliminary Investigation of the Air-Bone Gap: Changes in Intracochlear Sound Pressure With Air- and Bone-conducted Stimuli After Cochlear Implantation. Otol Neurotol. 2016 10; 37(9):1291-9.
Score: 0.120
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Mattingly JK, Greene NT, Jenkins HA, Tollin DJ, Easter JR, Cass SP. Effects of Skin Thickness on Cochlear Input Signal Using Transcutaneous Bone Conduction Implants. Otol Neurotol. 2015 Sep; 36(8):1403-11.
Score: 0.112
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Greene NT, Mattingly JK, Jenkins HA, Tollin DJ, Easter JR, Cass SP. Cochlear Implant Electrode Effect on Sound Energy Transfer Within the Cochlea During Acoustic Stimulation. Otol Neurotol. 2015 Sep; 36(9):1554-61.
Score: 0.112
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Lupo JE, Koka K, Jenkins HA, Tollin DJ. Third-window vibroplasty with an active middle ear implant: assessment of physiologic responses in a model of stapes fixation in Chinchilla lanigera. Otol Neurotol. 2012 Apr; 33(3):425-31.
Score: 0.088
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Mattingly JK, Banakis Hartl RM, Jenkins HA, Tollin DJ, Cass SP, Greene NT. A Comparison of Intracochlear Pressures During Ipsilateral and Contralateral Stimulation With a Bone Conduction Implant. Ear Hear. 2020 Mar/Apr; 41(2):312-322.
Score: 0.038
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Thornton JL, Chevallier KM, Koka K, Gabbard SA, Tollin DJ, Tollin D. Conductive hearing loss induced by experimental middle-ear effusion in a chinchilla model reveals impaired tympanic membrane-coupled ossicular chain movement. J Assoc Res Otolaryngol. 2013 Aug; 14(4):451-64.
Score: 0.024
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Connection Strength
The connection strength for concepts is the sum of the scores for each matching publication.
Publication scores are based on many factors, including how long ago they were written and whether the person is a first or senior author.
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