RG Moser (Molecular Anatomy, Physiology and Pathology of Sound Encoding)

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  • 2024 Journal Article
    ​ ​Eria-Oliveira, Ana-Sofia, Folacci, M., Chassot, A. A., Fedou, S., Thézé, N., Zabelskii, D., Alekseev, A. ... Vivaudou, M. (2024). ​Hijacking of internal calcium dynamics by intracellularly residing viral rhodopsins. Nature Communications15(1), ​65​. ​doi: https://doi.org/10.1038/s41467-023-44548-6 
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  • 2024 Preprint
    ​ ​Lamm, G., Marin, E., Schellbach, A., Stetsenko, A., Alekseev, A., Bourenkov, G., Borshchevskiy, V. ... Kovalev, K. (2024). CryoRhodopsins: a comprehensive characterization of a new clade of microbial rhodopsins from cold environments.​ Unpublished manuscript. ​doi: https://doi.org/10.1101/2024.01.15.575777 
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  • 2024 Journal Article | Interview
    ​ ​Moser, T. (2024). ​Hörvermögen wiederherstellen mit Optogenetik. Sprache, Stimme, Gehör48(1), ​54​-56​. ​doi: https://doi.org/10.1055/a-2171-0849 
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  • 2023 Journal Article | 
    ​ ​Hunniford, V., Kühler, R., Wolf, B., Keppeler, D., Strenzke, N. & Moser, T. (2023). ​Patient perspectives on the need for improved hearing rehabilitation: A qualitative survey study of German cochlear implant users. Frontiers in Neuroscience17, . ​doi: https://doi.org/10.3389/fnins.2023.1105562 
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  • 2023 Journal Article | 
    ​ ​Helke, C., Reinhardt, M., Arnold, M., Schwenzer, F., Haase, M., Wachs, M., Goßler, C. ... Reuter, D. (2023). ​On the Fabrication and Characterization of Polymer-Based Waveguide Probes for Use in Future Optical Cochlear Implants. Materials16(1), ​106​. ​doi: https://doi.org/10.3390/ma16010106 
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  • 2023 Journal Article | Overview
    ​ ​Moser, T. (2023). ​Mit Lichtstrahlen das Gehör wiederherstellen. GMS Zeitschrift für Audiologie - audiological acoustics5, . ​doi: https://doi.org/10.3205/ZAUD000027 
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  • 2023 Journal Article | Overview
    ​ ​Khurana, L., Harczos, T., Moser, T. & Jablonski, L. (2023). ​En route to sound coding strategies for optical cochlear implants. iScience26(10), Article 107725​. ​doi: https://doi.org/10.1016/j.isci.2023.107725 
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  • 2023 Journal Article
    ​ ​Michael, M., Wolf, B. J., Klinge-Strahl, A., Jeschke, M., Moser, T. & Dieter, A. (2023). ​Devising a framework of optogenetic coding in the auditory pathway: Insights from auditory midbrain recordings. Brain Stimulation16(5), ​1486​-1500​. ​doi: https://doi.org/10.1016/j.brs.2023.09.018 
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  • 2023 Journal Article
    ​ ​Haro-Moreno, J. M., López-Pérez, M., Alekseev, A., Podoliak, E., Kovalev, K., Gordeliy, V., Stepanauskas, R. ... Rodriguez-Valera, F. (2023). ​Flotillin-associated rhodopsin (FArhodopsin), a widespread paralog of proteorhodopsin in aquatic bacteria with streamlined genomes. mSystems, Article e00008-23​. ​doi: https://doi.org/10.1128/msystems.00008-23 
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  • 2023 Journal Article
    ​ ​Jaime Tobón, L. M. & Moser, T. (2023). ​Ca 2+ regulation of glutamate release from inner hair cells of hearing mice. Proceedings of the National Academy of Sciences120(49), Article e2311539120​. ​doi: https://doi.org/10.1073/pnas.2311539120 
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  • 2023 Preprint
    ​ ​Zerche, M., Hunniford, V., Alekseev, A., May, F. E., Vavakou, A., Siegenthaler, D., Hüser, M. A. ... Moser, T. (2023). Efficient and sustained optogenetic control of nervous and cardiac systems.​ Unpublished manuscript. ​doi: https://doi.org/10.1101/2023.11.17.567544 
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  • 2023 Journal Article
    ​ ​Chen, H., Monga, M., Fang, Q., Slitin, L., Neef, J., Chepurwar, S. S, Mingroni Netto, R. C. ... Moser, T. (2023). ​Ca2+-binding to the C2E domain of otoferlin is required for hair cell exocytosis and hearing. Protein & cell, Article pwad058​. ​doi: https://doi.org/10.1093/procel/pwad058 
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  • 2023 Preprint
    ​ ​Eria-Oliveira, Ana-Sofia, Folacci, M., Chassot, A. A., Fedou, S., Thézé, N., Zabelskii, D., Alekseev, A. ... Vivaudou, M. (2023). Hijacking of internal calcium dynamics by intracellularly residing rhodopsins.​ Unpublished manuscript. ​doi: https://doi.org/10.1101/2023.05.25.542240 
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  • 2023 Conference Paper
    ​ ​Zerche, M., Hunniford, V., Witzke, I., Wolf, B., Mager, T. & Moser, T. (2023). ​In vitro and in vivo characterization of improved channelrhodopsin ChRmine variants for optogenetic activation of the auditory pathway.​ Laryngo-Rhino-Otologie​, 102(S02), S287​, S287​. doi: https://doi.org/10.1055/s-0043-1767412 
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  • 2023 Preprint
    ​ ​Archit, A., Nair, S., Khalid, N., Hilt, P., Rajashekar, V., Freitag, M., Gupta, S. ... Pape, C. (2023). Segment Anything for Microscopy.​ Unpublished manuscript. ​doi: https://doi.org/10.1101/2023.08.21.554208 
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  • 2023 Conference Paper
    ​ ​Roos, L., Garrido-Charles, A., Wolf, B., Kusch, K., Mager, T. & Moser, T. (2023). ​Characterization of novel channelrhodopsin variants for blue-light optogenetic activation of the auditory pathway.​ Laryngo-Rhino-Otologie​, 102(S02), S279​, S279​. doi: https://doi.org/10.1055/s-0043-1767383 
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  • 2023 Preprint
    ​ ​Jaime Tobón, L. M. & Moser, T. (2023). Bridging the gap between presynaptic hair cell function and neural sound encoding.​ Unpublished manuscript. ​doi: https://doi.org/10.1101/2022.10.19.512823 
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  • 2023 Preprint
    ​ ​Haro-Moreno, J. M., López-Pérez, M., Alekseev, A., Podoliak, E., Kovalev, K., Gordeliy, V., Stepanauskas, R. ... Rodriguez-Valera, F. (2023). Flotillin-Associated rhodopsin (FArhodopsin), a widespread paralog of proteorhodopsin in aquatic bacteria with streamlined genomes.​ Unpublished manuscript. ​doi: https://doi.org/10.1101/2023.01.04.522823 
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  • 2023 Preprint
    ​ ​Podoliak, E., Lamm, G. H. U., Alekseev, A., Marin, E., Schellbach, A. V., Fedotov, D. A., Stetsenko, A. ... Kovalev, K. (2023). A novel subgroup of light-driven sodium pumps with an additional Schiff base counterion.​ Unpublished manuscript. ​doi: https://doi.org/10.1101/2023.10.11.561842 
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  • 2023 Preprint
    ​ ​Hain, P. J. H. & Moser, T. (2023). Optical measurement of glutamate release robustly reports short-term plasticity at a fast central synapse.​ Unpublished manuscript. ​doi: https://doi.org/10.1101/2022.11.27.518035 
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  • 2023 Journal Article
    ​ ​Mittring, A., Moser, T. & Huet, A. (2023). ​Graded optogenetic activation of the auditory pathway for hearing restoration. Brain Stimulation, . ​doi: https://doi.org/10.1016/j.brs.2023.01.1671 
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  • 2023 Journal Article
    ​ ​Michanski, S., Kapoor, R., Steyer, A. M., Möbius, W., Früholz, I., Ackermann, F., Gültas, M. ... Wichmann, C. (2023). ​Piccolino is required for ribbon architecture at cochlear inner hair cell synapses and for hearing. EMBO reports, Article e56702​. ​doi: https://doi.org/10.15252/embr.202256702 
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  • 2023 Journal Article
    ​ ​Chen, H., Fang, Q., Benseler, F., Brose, N. & Moser, T. (2023). ​Probing the role of the C2F domain of otoferlin. Frontiers in Molecular Neuroscience16, Article 1299509​. ​doi: https://doi.org/10.3389/fnmol.2023.1299509 
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  • 2023 Journal Article | Overview | 
    ​ ​Moser, T., Karagulyan, N., Neef, J. & Jaime Tobón, L. M. (2023). ​Diversity matters — extending sound intensity coding by inner hair cells via heterogeneous synapses. The EMBO Journal, Article e114587​. ​doi: https://doi.org/10.15252/embj.2023114587 
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  • 2023 Journal Article
    ​ ​Zerche, M., Wrobel, C., Kusch, K., Moser, T. & Mager, T. (2023). ​Channelrhodopsin fluorescent tag replacement for clinical translation of optogenetic hearing restoration. Molecular Therapy. Methods & Clinical Development29, ​202​-212​. ​doi: https://doi.org/10.1016/j.omtm.2023.03.009 
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  • 2023 Journal Article
    ​ ​Cepeda, A. P., Ninov, M., Neef, J., Parfentev, I., Kusch, K., Reisinger, E., Jahn, R. ... Urlaub, H. (2023). ​Proteomic analysis reveals the composition of glutamatergic organelles of auditory inner hair cell. Molecular & Cellular Proteomics, Article 100704​. ​doi: https://doi.org/10.1016/j.mcpro.2023.100704 
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  • 2023 Journal Article
    ​ ​Kovalev, K., Tsybrov, F., Alekseev, A., Shevchenko, V., Soloviov, D., Siletsky, S., Bourenkov, G. ... Gordeliy, V. (2023). ​Mechanisms of inward transmembrane proton translocation. Nature Structural & Molecular Biology, . ​doi: https://doi.org/10.1038/s41594-023-01020-9 
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  • 2023 Journal Article
    ​ ​Karagulyan, N. & Moser, T. (2023). ​Synaptic activity is not required for establishing heterogeneity of inner hair cell ribbon synapses. Frontiers in Molecular Neuroscience16, Article 1248941​. ​doi: https://doi.org/10.3389/fnmol.2023.1248941 
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  • 2022 Journal Article | Overview | 
    ​ ​Wolf, B. J., Kusch, K., Hunniford, V., Vona, B., Kühler, R., Keppeler, D., Strenzke, N. ... Moser, T. (2022). ​Is there an unmet medical need for improved hearing restoration? EMBO Molecular Medicine14(8), Article e15798​. ​doi: https://doi.org/10.15252/emmm.202215798 
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  • 2022 Journal Article | Research Paper
    ​ ​Grabner, C. P., Jansen, I., Neef, J., Weihs, T., Schmidt, R., Riedel, D., Wurm, C. A. ... Moser, T. (2022). ​Resolving the molecular architecture of the photoreceptor active zone with 3D-MINFLUX. Science Advances8(28), Article eabl7560​. ​doi: https://doi.org/10.1126/sciadv.abl7560 
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  • 2022 Conference Paper
    ​ ​Zerche, M., Moser, T. & Mager, T. (2022). ​Identification and optimization of channelrhodopsin variants for optogenetic hearing restoration.​ Laryngo-Rhino-Otologie​, 101(S02), S243​-S244​, S243​-S244​. doi: https://doi.org/10.1055/s-0042-1746832 
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  • 2022 Conference Paper
    ​ ​Wrobel, C., Zerche, M., Kusch, K., Mager, T. & Moser, T. (2022). ​In vivo investigation of f-Chrimson variants for optogenetic hearing restoration.​ Laryngo-Rhino-Otologie​, 101(S02), S243​-S244​, S243​-S244​. doi: https://doi.org/10.1055/s-0042-1746830 
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  • 2022 Journal Article | Research Paper | 
    ​ ​Bali, B., Gruber-Dujardin, E., Kusch, K., Rankovic, V. & Moser, T. (2022). ​Analyzing efficacy, stability, and safety of AAV-mediated optogenetic hearing restoration in mice. Life Science Alliance5(8), Article e202101338​. ​doi: https://doi.org/10.26508/lsa.202101338 
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  • 2022 Preprint
    ​ ​Chakrabarti, R., Jaime Tobon, L. M., Slitin, L., Redondo-Canales, M., Hoch, G., Slashcheva, M., Fritsch, E. ... Wichmann, C. (2022). Optogenetics and electron tomography for structure-function analysis of cochlear ribbon synapses.​ Unpublished manuscript. ​doi: https://doi.org/10.1101/2022.05.10.491334 
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  • 2022 Preprint
    ​ ​Shaib, A. H., Chouaib, A. A., Imani, V., Chowdhury, R., Georgiev, S. V., Mougios, N., Monga, M. ... Rizzoli, S. O. (2022). Expansion microscopy at one nanometer resolution.​ Unpublished manuscript. ​doi: https://doi.org/10.1101/2022.08.03.502284 
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  • 2022 Preprint
    ​ ​Mittring, A., Moser, T. & Huet, A. (2022). Graded optogenetic activation of the auditory pathway for hearing restoration.​ Unpublished manuscript. ​doi: https://doi.org/10.1101/2022.09.05.506618 
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  • 2022 Preprint
    ​ ​Jaime Tobón, L. M. & Moser, T. (2022). Tackling the Dynamic Range Problem of Hearing: Diverse Hair Cell Synapses Enable Broad Neural Sound Intensity Coding.​ Unpublished manuscript. ​doi: https://doi.org/10.2139/ssrn.4203980 
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  • 2022 Preprint
    ​ ​Michanski, S., Kapoor, R., Steyer, A. M., Möbius, W., Früholz, I., Ackermann, F., Gültas, M. ... Wichmann, C. (2022). Piccolino regulates the architecture of the ribbon at cochlear inner hair cell synapses.​ Unpublished manuscript. ​doi: https://doi.org/10.1101/2022.12.15.520589 
    Details  DOI 
  • 2022 Journal Article | Research Paper | 
    ​ ​Garrido-Charles, A., Huet, A., Matera, C., Thirumalai, A., Hernando, J., Llebaria, A., Moser, T. ... Gorostiza, P. (2022). ​Fast Photoswitchable Molecular Prosthetics Control Neuronal Activity in the Cochlea. Journal of the American Chemical Society, Article jacs.1c12314​. ​doi: https://doi.org/10.1021/jacs.1c12314 
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  • 2022 Journal Article | Research Paper | 
    ​ ​Khurana, L., Keppeler, D., Jablonski, L. & Moser, T. (2022). ​Model-based prediction of optogenetic sound encoding in the human cochlea by future optical cochlear implants. Computational and structural biotechnology journal20, ​3621​-3629​. ​doi: https://doi.org/10.1016/j.csbj.2022.06.061 
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  • 2022 Journal Article | 
    ​ ​Chakrabarti, R., Jaime Tobón, L. M., Slitin, L., Redondo-Canales, M., Hoch, G., Slashcheva, M., Fritsch, E. ... Wichmann, C. (2022). ​Optogenetics and electron tomography for structure-function analysis of cochlear ribbon synapses. eLife11, Article e79494​. ​doi: https://doi.org/10.7554/eLife.79494 
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  • 2022 Journal Article | Research Paper | 
    ​ ​Pater, J. A., Penney, C., O’Rielly, D. D., Griffin, A., Kamal, L., Brownstein, Z., Vona, B. ... Young, Terry-Lynn (2022). ​Autosomal dominant non-syndromic hearing loss maps to DFNA33 (13q34) and co-segregates with splice and frameshift variants in ATP11A, a phospholipid flippase gene. Human Genetics, . ​doi: https://doi.org/10.1007/s00439-022-02444-x 
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  • 2022 Journal Article
    ​ ​Cantu‐Guerra, H. L., Papazian, M. R., Gorsky, A. L., Alekos, N. S., Caccavano, A., Karagulyan, N., Neef, J. ... Coate, T. M. (2022). ​Cochlear hair cell innervation is dependent on a modulatory function of Semaphorin‐3A. Developmental Dynamics, Article dvdy.548​. ​doi: https://doi.org/10.1002/dvdy.548 
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  • 2022 Journal Article | Research Paper | 
    ​ ​Calapai, A., Cabrera-Moreno, J., Moser, T. & Jeschke, M. (2022). ​Flexible auditory training, psychophysics, and enrichment of common marmosets with an automated, touchscreen-based system. Nature Communications13(1), Article 1648​. ​doi: https://doi.org/10.1038/s41467-022-29185-9 
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  • 2021 Journal Article | Research Paper
    ​ ​Keppeler, D., Kampshoff, C. A., Thirumalai, A., Duque-Afonso, C. J., Schaeper, J. J., Quilitz, T., Töpperwien, M. ... Moser, T. (2021). ​Multiscale photonic imaging of the native and implanted cochlea. Proceedings of the National Academy of Sciences of the United States of America118(18), Article e2014472118​. ​doi: https://doi.org/10.1073/pnas.2014472118 
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  • 2021 Journal Article | Overview | 
    ​ ​Wrobel, C., Zafeiriou, M. P. & Moser, T. (2021). ​Understanding and treating paediatric hearing impairment. EBioMedicine63, Article 103171​. ​doi: https://doi.org/10.1016/j.ebiom.2020.103171 
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  • 2021 Preprint
    ​ ​Garrido-Charles, A., Huet, A., Matera, C., Thirumalai, A., Llebaria, A., Moser, T. & Gorostiza, P. (2021). Fast photoswitchable molecular prosthetics control neuronal activity in the cochlea.​ Unpublished manuscript. ​doi: https://doi.org/10.1101/2021.05.25.445123 
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  • 2021 Journal Article | Research Paper | 
    ​ ​Rankovic, V., Vogl, C., Dörje, N. M., Bahader, I., Duque-Afonso, C. J., Thirumalai, A., Weber, T. ... Moser, T. (2021). ​Overloaded Adeno-Associated Virus as a Novel Gene Therapeutic Tool for Otoferlin-Related Deafness. Frontiers in Molecular Neuroscience13, . ​doi: https://doi.org/10.3389/fnmol.2020.600051 
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  • 2021 Preprint
    ​ ​Grabner, C. P., Jansen, I., Neef, J., Weiss, T., Schmidt, R., Riedel, D., Wurm, C. A. ... Moser, T. (2021). Resolving the molecular architecture of the photoreceptor active zone by MINFLUX nanoscopy.​ Unpublished manuscript. ​doi: https://doi.org/10.1101/2021.05.28.446138 
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  • 2021 Journal Article | Research Paper | 
    ​ ​Hua, Y., Ding, X., Wang, H., Wang, F., Lu, Y., Neef, J., Gao, Y. ... Wu, H. (2021). ​Electron Microscopic Reconstruction of Neural Circuitry in the Cochlea. Cell Reports34(1), ​108551​. ​doi: https://doi.org/10.1016/j.celrep.2020.108551 
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  • 2021 Preprint
    ​ ​Butola, T., Alvanos, T., Hintze, A., Koppensteiner, P., Kleindienst, D., Shigemoto, R., Wichmann, C. ... Moser, T. (2021). RIM-Binding Protein 2 organizes Ca2+ channel topography and regulates release probability and vesicle replenishment at a fast central synapse.​ Unpublished manuscript. ​doi: https://doi.org/10.1101/2021.03.20.435607 
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  • 2021 Preprint
    ​ ​Jablonski, L., Harczos, T., Wolf, B., Hoch, G., Dieter, A., Hessler, R., Ayub, S. ... Moser, T. (2021). Hearing restoration by a low-weight power-efficient multichannel optogenetic cochlear implant system.​ Unpublished manuscript. ​doi: https://doi.org/10.1101/2020.05.25.114868 
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  • 2021 Journal Article | Research Paper | 
    ​ ​Huet, A. T., Dombrowski, T., Rankovic, V., Thirumalai, A. & Moser, T. (2021). ​Developing Fast, Red-Light Optogenetic Stimulation of Spiral Ganglion Neurons for Future Optical Cochlear Implants. Frontiers in Molecular Neuroscience14, . ​doi: https://doi.org/10.3389/fnmol.2021.635897 
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  • 2021 Journal Article | Research Paper
    ​ ​Butola, T., Alvanos, T., Hintze, A., Koppensteiner, P., Kleindienst, D., Shigemoto, R., Wichmann, C. ... Moser, T. (2021). ​RIM-Binding Protein 2 Organizes Ca2+ Channel Topography and Regulates Release Probability and Vesicle Replenishment at a Fast Central Synapse. The Journal of Neuroscience41(37), ​7742​-7767​. ​doi: https://doi.org/10.1523/JNEUROSCI.0586-21.2021 
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  • 2021 Journal Article | Research Paper | 
    ​ ​Bali, B., Lopez de la Morena, D., Mittring, A., Mager, T., Rankovic, V., Huet, A. T. & Moser, T. (2021). ​Utility of red‐light ultrafast optogenetic stimulation of the auditory pathway. EMBO Molecular Medicine13(6), . ​doi: https://doi.org/10.15252/emmm.202013391 
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  • 2021 Journal Article | Research Paper | 
    ​ ​Grabner, C. P. & Moser, T. (2021). ​The mammalian rod synaptic ribbon is essential for Cav channel facilitation and ultrafast synaptic vesicle fusion. eLife10, . ​doi: https://doi.org/10.7554/eLife.63844 
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  • 2021 Journal Article | Research Paper | 
    ​ ​Burfeind, D., Moser, T., Krinner, S., Predoehl, F. & Vogl, C. (2021). ​RIM-Binding Proteins Are Required for Normal Sound-Encoding at Afferent Inner Hair Cell Synapses. Frontiers in Molecular Neuroscience14, Article 651935​. ​doi: https://doi.org/10.3389/fnmol.2021.651935 
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  • 2021 Journal Article | Research Paper | 
    ​ ​Oestreicher, D., Picher, M. M., Rankovic, V., Moser, T. & Pangrsic, T. (2021). ​Cabp2-Gene Therapy Restores Inner Hair Cell Calcium Currents and Improves Hearing in a DFNB93 Mouse Model. Frontiers in Molecular Neuroscience14, . ​doi: https://doi.org/10.3389/fnmol.2021.689415 
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  • 2020 Journal Article | Research Paper
    ​ ​Keppeler, D., Schwaerzle, M., Harczos, T., Jablonski, L., Dieter, A., Wolf, B., Ayub, S. ... Moser, T. (2020). ​Multichannel optogenetic stimulation of the auditory pathway using microfabricated LED cochlear implants in rodents. Science Translational Medicine12(553), ​eabb8086​. ​doi: https://doi.org/10.1126/scitranslmed.abb8086 
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  • 2020 Journal Article | Erratum | 
    ​ ​Sograte-Idrissi, S., Schlichthaerle, T., Duque-Afonso, C. J., Alevra, M., Strauss, S., Moser, T., Jungmann, R. ... Opazo, F. (2020). ​Correction: Circumvention of common labelling artefacts using secondary nanobodies. Nanoscale12(48), ​24543​-24543​. ​doi: https://doi.org/10.1039/d0nr90279a 
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  • 2020 Book Chapter
    ​ ​Moser, T. (2020). ​Presynaptic Physiology of Cochlear Inner Hair Cells. In B. Fritzsch​ (Ed.), The Senses: A Comprehensive Reference ​(​2. ed., Vol. 2, pp. 441​-467​). ​​Elsevier. doi: https://doi.org/10.1016/B978-0-12-809324-5.24185-0 
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  • 2020 Journal Article | Overview
    ​ ​Effertz, T., Moser, T. & Oliver, D. (2020). ​Recent advances in cochlear hair cell nanophysiology: subcellular compartmentalization of electrical signaling in compact sensory cells. Faculty Reviews9, ​24​. ​doi: https://doi.org/10.12703/r/9-24 
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  • 2020 Preprint
    ​ ​Jean, P., Anttonen, T., Michanski, S., de Diego, A. M. G., Steyer, A. M., Neef, A., Oestreicher, D. ... Moser, T. (2020). Macromolecular and electrical coupling between inner hair cells in the rodent cochlea.​ Unpublished manuscript. ​doi: https://doi.org/10.1101/2019.12.17.879767 
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  • 2020 Journal Article | Research Paper | 
    ​ ​Jean, P., Anttonen, T., Michanski, S., de Diego, A. M. G., Steyer, A. M., Neef, A., Oestreicher, D. ... Moser, T. (2020). ​Macromolecular and electrical coupling between inner hair cells in the rodent cochlea. Nature Communications11(1), . ​doi: https://doi.org/10.1038/s41467-020-17003-z 
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  • 2020 Preprint
    ​ ​Grabner, C. P. & Moser, T. (2020). The mammalian rod synaptic ribbon is essential for Cav channel facilitation and ultrafast fusion of the readily releasable pool of vesicles.​ Unpublished manuscript. ​doi: https://doi.org/10.1101/2020.10.12.336503 
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  • 2020 Preprint
    ​ ​Hua, Y., Ding, X., Wang, H., Wang, F., Gao, Y., Lu, Y., Moser, T. ... Wu, H. (2020). Electron Microscopic Reconstruction of Neural Circuitry in the Cochlea.​ Unpublished manuscript. ​doi: https://doi.org/10.1101/2020.01.04.894816 
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  • 2020 Journal Article | Research Paper | 
    ​ ​Dieter, A., Klein, E., Keppeler, D., Jablonski, L., Harczos, T., Hoch, G., Rankovic, V. ... Moser, T. (2020). ​μLED‐based optical cochlear implants for spectrally selective activation of the auditory nerve. EMBO Molecular Medicine12(8), . ​doi: https://doi.org/10.15252/emmm.202012387 
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  • 2020 Journal Article | Research Paper | 
    ​ ​Sograte-Idrissi, S., Schlichthaerle, T., Duque-Afonso, C. J., Alevra, M., Strauss, S., Moser, T., Jungmann, R. ... Opazo, F. (2020). ​Circumvention of common labelling artefacts using secondary nanobodies. Nanoscale12(18), ​10226​-10239​. ​doi: https://doi.org/10.1039/d0nr00227e 
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  • 2020 Journal Article | Research Paper | 
    ​ ​Dieter, A., Keppeler, D. & Moser, T. (2020). ​Towards the optical cochlear implant: optogenetic approaches for hearing restoration. EMBO Molecular Medicine12(4), . ​doi: https://doi.org/10.15252/emmm.201911618 
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  • 2020 Journal Article | Overview
    ​ ​Kleinlogel, S., Vogl, C., Jeschke, M., Neef, J. & Moser, T. (2020). ​Emerging approaches for restoration of hearing and vision. Physiological Reviews, . ​doi: https://doi.org/10.1152/physrev.00035.2019 
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  • 2020 Journal Article | Research Paper | 
    ​ ​Özçete, Ö. D & Moser, T. (2020). ​A sensory cell diversifies its output by varying Ca 2+ influx‐release coupling among active zones. The EMBO Journal40(5), . ​doi: https://doi.org/10.15252/embj.2020106010 
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  • 2020 Journal Article | Research Paper | 
    ​ ​Zabelskii, D., Alekseev, A., Kovalev, K., Rankovic, V., Balandin, T., Soloviov, D., Bratanov, D. ... Gordeliy, V. (2020). ​Viral rhodopsins 1 are an unique family of light-gated cation channels. Nature Communications11(1), . ​doi: https://doi.org/10.1038/s41467-020-19457-7 
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  • 2019 Preprint
    ​ ​Sograte-Idrissi, S., Schlichthaerle, T., Duque-Afonso, C. J., Alevra, M., Strauss, S., Moser, T., Jungmann, R. ... Opazo, F. (2019). Circumvention of common labeling artifacts using secondary nanobodies.​ Unpublished manuscript. ​doi: https://doi.org/10.1101/818351 
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  • 2018 Journal Article | Research Paper | 
    ​ ​Al‐Moyed, H., Cepeda, A. P., Jung, S., Moser, T., Kügler, S. & Reisinger, E. (2018). ​A dual‐AAV approach restores fast exocytosis and partially rescues auditory function in deaf otoferlin knock‐out mice. EMBO Molecular Medicine11(1), . ​doi: https://doi.org/10.15252/emmm.201809396 
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  • 2017 Journal Article | Research Paper | 
    ​ ​Butola, T., Wichmann, C. & Moser, T. (2017). ​Piccolo Promotes Vesicle Replenishment at a Fast Central Auditory Synapse. Frontiers in synaptic neuroscience9, Article 14​. ​doi: https://doi.org/10.3389/fnsyn.2017.00014 
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  • 2017 Journal Article | Research Paper | 
    ​ ​Krinner, S., Butola, T., Jung, S., Wichmann, C. & Moser, T. (2017). ​RIM-Binding Protein 2 Promotes a Large Number of CaV1.3 Ca2+-Channels and Contributes to Fast Synaptic Vesicle Replenishment at Hair Cell Active Zones. Frontiers in Cellular Neuroscience11, Article 334​. ​doi: https://doi.org/10.3389/fncel.2017.00334 
    Details  DOI  PMID  PMC 

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