Publication

Paper

Journal

  • [HTML] H. Sugimoto H, T. Toya, Y. Watanabe, W. Takei, R. Nagai, Y. Donjo, R. Motoo, M. Inaba, T. Yoshizaki, M. Murakoshi, "Wideband frequency impedance for diagnosis of ossicular chain abnormality," Acta Oto-Laryngol., Vol. 143, pp. 958-964, 2023.
  • T. Toya, M. Kobayashi, K. Nakamura and M. Unoki, "Methods for improving word intelligibility of bone-conducted speech by using bone-conduction headphones," Applied Acoustics, Vol. 207, No. 109337, pp. 1-12, 2023.
  • T. Toya, P. Birkholz and M. Unoki, "Measurements of transmission characteristics related to bone-conducted speech using a sound source in the oral cavity," Journal of Speech, Language and Hearing Research, Vol. 63, No. 12, pp. 1-13, 2020.
  • T. Toya, D. Ishikawa, R. Miyauchi, K. Nishimoto and M. Unoki, "Study on effects of speech production during delayed auditory feedback for air-conducted and bone-conducted speech," Journal of Signal Processing, Vol. 20, No. 6, pp. 197-200, 2016.

Book Chapter

  • T. Toya, P. Birkholz and M. Unoki, "Estimates of transmission characteristics related to perception of bone-conducted speech using real utterances and transcutaneous vibration on larynx," in A. A. Salah, A. Karpov and R. Potapova (Eds.), Speech and Computer, LNAI 11658, pp. 491-500, Springer Nature Switzerland, AG, Cham, Switzerland, 2019.

International Conference

Reviewed

  • [PDF] T. Toya, R. Nagai, H. Sugimoto and M. Murakoshi, "Towards non-invasive diagnosis system for middle-ear dysfunctions based on principles of impulse response measurement," Proc. 2023 IEEE 12th Global Conference on Consumer Electronics (GCCE2023), pp.434-438, OS-AAT(1)-5, Nara, Japan, Oct. 2023.
  • Y. Uezu, S. Wang, T. Toya and M. Unoki, "Consonant emphasis method incorporating robust consonant section detection to improve intelligibility of bone conducted speech," INTERSPEECH 2023, Dublin, Ireland, Oct. 2023.
  • T. Toya, M. Kobayashi, K. Nakamura and M. Unoki, "Method for improving the word intelligibility of presented speech using bone-conduction headphones," INTERSPEECH 2022, Incheon, Korea, Sep. 2022.
  • T. Toya, P. Birkholz and M. Unoki, "Estimates of transmission characteristics related to perception of bone-conducted speech using real utterances and transcutaneous vibration on larynx," 21st International Conference on Speech and Computer (SPECOM 2019), Istanbul, Turkey, Aug. 2019.
  • T. Toya, D. Ishikawa, R. Miyauchi, K. Nishimoto and M. Unoki, "Study on effects of speech production during delayed auditory feedback for air-conducted and bone-conducted speech," RISP International Workshop in Nonlinear Circuits, Communications and Signal Processing (NCSP’16), Honolulu, USA, Mar. 2016.

Others

  • H. Nakagawa, T. Toya, R. Nagai, H. Sugimoto and M. Murakoshi, "Sweep frequency impedance measures of different ear conditions," Proc. 12th Asian Pacific Conference on Biomechanics, p. 88, Kuala Lumpur, Malaysia, Nov. 2023.
  • [PDF] T. Toya, H. Nakagawa, R. Nagai, H. Sugimoto and M. Murakoshi, "Sweep frequency impedance (SFI) measures of middle ears with ossicular-chain dysfunctions," Proc. 6th Japan-Switzerland Workshop on Biomechanics (JSB2023), Session 5-5, p. 69, Otaru, Japan, Aug. 2023.
  • H. Nakagawa, T. Toya and M. Murakoshi, "Sweep frequency impedance measures of normal middle ear," Proc. 6th Japan-Switzerland Workshop on Biomechanics (JSB2023), Session 3-P02, p. 38, Otaru, Japan, Aug. 2023.
  • [PDF] S. Inoue, T. Toya, Y. Uezu and M. Unoki, "Study on suppression effect of air-conducted sound by bone-conducted sound," Proc. Inter-noise 2023, 1-1-3, 11p, Makuhari, Japan, Aug. 2023.
  • T. Toya, P. Birkholz and M. Unoki, "Subjective evaluation regarding mixing ratio of bone-conducted to air-conducted speech for own-voice perception," Proc. 24th International Congress for Acoustics (ICA 2022), pp. 160-167, Gyeongju, Korea, Oct. 2022.
  • S. Morita, D. Kawamoto and T. Toya, "Voice conversion model for estimation of transfer characteristic in auditory feedback," Proc. 23rd International Congress for Acoustics (ICA 2019), pp. 6630-6636, Aachen, Germany, Sep. 2019.
  • T. Toya, P. Birkholz and M. Unoki, "Analysis of spectral and transmission characteristics of bone-conducted speech using real utterances and transcutaneous vibration," 176th Meeting of Acoustical Society of America, Victoria, Canada, Nov. 2018.
  • T. Toya and M. Unoki, "Presentation method as air- and bone-conducted speech for delayed auditory feedback," Acoustics'17 (ASA & EAA), Boston, US, Jun. 2017.

Domestic Presentation

Research Meeting

  • S, Ariizumi, T. Toya and K. Ozawa, "Consideration on Sound Source Distance Measurement by Complex Sparse Bayesian Estimation Using a Small Microphone Array System, " IEICE Technical Report, Vol. 123, No. 95, EA2023-17, pp.72-77, Sapporo,Jul. 2023 (in Japanese).
  • X. Su, W. Kong, X. Jin, T. Toya and K. Ozawa, "An idea about pretraining in EEG domain," IEICE Technical Report, Vol. 123, No. 95, EA2023-15, pp.58-63, Sapporo, Jul. 2023.
  • S. Wang, Y. Uezu, T. Toya and M. Unoki, "Consonant-emphasis modification for improving intelligibility of bone-conducted speech," IEICE Technical Report, Vol. 122, EA-2022-59, pp. 93-98, Online,Nov. 2022 (in Japanese).
  • W. Zhu, S. Fujita, T. Toya, M. Kobayashi and M. Unoki, "Study on method for improving speech intelligibility for bone-conduction hearing devices," Proc. Auditory Res. Meeting, Vol. 51, No. 7, H-2021-91, pp. 491-496, Online, Nov. 2021 (in Japanese).
  • T. Toya, P. Birkholz and M. Unoki, "Measurements of transmission characteristics related to bone-conducted speech under attenuation of sidetones with a soundproof wall," Proc. Auditory Res. Meeting, Vol. 51, No. 2, H-2021-10, pp. 55-60, Online, May 2021 (in Japanese).
  • T. Toya, P. Birkholz and M. Unoki, "Subjective evaluation for mixing ration of bone-conducted to air-conducted speech in own-voice perception," Proc. Auditory Res. Meeting, Vol. 50, No. 3, H-2020-29, pp. 153-158, Online, Jun. 2020 (in Japanese).
  • S. Morita, D. Kawamoto and T. Toya, "Study of voice conversion model using air- and bone-conducted sound in auditory feedback," Proc. Aidutory Res. Meeting, Vol. 49, No. 5, H-2019-59, pp. 301-305, Miyagi, Aug. 2019 (in Japanese).
  • T. Toya, P. Birkholz and M. Unoki, "Analysis of transmission characteristics of bone-conducted speech derived from sound pressure in vocal tract," Proc. Auditory Res. Meeting, Vol. 49, No. 2, H-2019-19, pp. 95-100, Tokyo, Mar 2019 (In Japanese).
  • T. Toya, P. Birkholz and M. Unoki, "Analysis of transmission characteristics of bone-conducted speech using spoken voice," IEICE Technical Report, Vol. 117, No. 515, EA2017-167, pp.355-360, Ishigaki-isl., Mar. 2018 (in Japanese).
  • T. Toya, P. Birkholz and M. Unoki, "Analysis of transmission characteristics of bone-conducted speech using vibration signals," Proc. Auditory Res. Meeting, Vol. 48, No. 2, H-2018-34, pp.169-174, Okinawa, Mar. 2018 (in Japanese).
  • T. Toya and M. Unoki. "Study on effects of delayed auditory feedback by air-conducted and bone-conducted speech on speech production," IEICE Technical Report, Vol. 116, No. 246, EA2016-34, pp. 19-24, Ishikawa, Oct. 2016 (in Japanese).

Domestic Conference

  • [PDF] T. Toya, R. Nagai, H. Sugimoto and M. Murakoshi, "Improvement of middle-ear impedance meter based on principles of impulse response measurement," Proc. 150th (2023 Autumn) Meeting of Acoust. Soc. Jpn., pp. 877-878, 1-R-12, Nagoya, Sep. 2023 (in Japanese).
  • S. Ariizumi, T. Toya and K. Ozawa, "A study on source distance measurement using small microphone arrays based on complex sparse bayesian estimation," IPSJ SIG Technical Report, Vol. 2023-MUS-137, No. 19, pp. 1-6, Chofu, Jun. 2023 (in Japanese).
  • T. Toya, H. Nakagawa, R. Nagai, H. Sugimoto and M. Murakoshi, "Middle-ear dynamic characteristics for ossicular-chain separation/fixation based on sweep frequency impedance (SFI)," 34th Conference on Bioengineering, P313-2, Sendai, Jun. 2023 (in Japanese).
  • H. Nakagawa, T. Toya, R. Nagai, H. Sugimoto and M. Murakoshi, "Sweep frequemcy impedance (SFI) measures for normal ears," 34th Conference on Bioengineering, P312-2, Sendai, Jun. 2023 (in Japanese).
  • S. Inoue, T. Toya, Y. Uezu and M. Unoki, "Study on the suppression effect of the air-conducted tone by the bone-conducted tone," Proc. 149th (2023 Spring) Meeting of Acoust. Soc. Jpn., 1-4P-5, 479-482, Online,Mar. 2023 (in Japanese).
  • Y. Watanabe, S. Tamai, T. Toya, R. Nagai, W. Takei, H. Sugimoto and M. Murakoshi,"理工系研究シーズの医療機器開発の促進事例;新規の中耳機能測定技術," 14th Meeting on JSCTR, Kanazawa, Feb. 2023 (in Japanese).
  • T. Kokubo, H. Nakagawa, T. Toya and M. Murakoshi, "Development of a new ear probe for sweep frequency impedance (SFI) meter," Proc. 33th Conference on Bio-Frontier, 1C18, 4p, Kobe, Dec. 2022 (in Japanese).
  • T. Toya, A. Mageshi, H. Nakagawa, R. Nagai, H. Sugimoto and M. Murakoshi, "Measurement of dynamic characteristics for several middle-ear condutions based on sweep frequency impendace (SFI)," Proc. 33th Conference on Bio-Frontier, 1C08, 4p, Kobe, Dec. 2022 (in Japanese).
  • T. Toya, M. Kobayashi, K. Nakamura and M, Unoki, "Methods for improving word intelligibility of bone-conducted speech presented by bone-conduction headphones," Proc. 2022 Autumn Meeting of the Institute of Noise Control Engineering of Japan, 1-1-07, 4p, Tokyo, Nov. 2022 (in Japanese).
  • S. Morita, T. Toya and M. Unoki, "Study on timbre and pitch differences in self-perceived own voices," Proc. 2022 Autumn Meeting of Acoust. Soc. Jpn., 3-P-25, 4p, Sapporo, Sep. 2022 (in Japanese).
  • S. Inoue, T. Toya and M. Unoki, "Suppression of air-conducted sound using bone-couducted sound presentation," Proc. JHES2022, G-20, Ishikawa, Sep. 2022 (in Japanese).
  • M. Murakoshi, T. Toya, A. Mageshi, H. Nakagawa, R. Nagai and H. Sugimoto, "Development of diagnostic system for conductive hearing impairment based on middle-ear dynamic characteristics," Meeting of Japanese Society for Medical and Biological Engineering, O3-5-2-3, Niigata, Jun. 2022 (in Japanese).
  • H. Nakagawa, A. Mageshi, T. Toya and M. Murakoshi, "Sweep frequency impedance (SFI) measurements on adults with normal middle ear function," 34th Conference on Bioengineering, 2P5-07, Fukuoka, Jun. 2022 (in Japanese).
  • T. Toya, A. Mageshi, H. Nakagawa, R. Nagai, H. Sugimoto and M. Murakoshi, "Measurements of sweep frequency impedance (SFI) for patients with conductive hearing loss," 34th Conference on Bioengineering, 2P5-06, Fukuoka, Jun. 2022 (in Japanese).
  • W. Zhu, T. Toya, K. Nakamura and M, Unoki, "Improvement of word intelligibility of bone-conducted speech by consonant emphasis," Proc. 2022 Spring Meeting of Acoust. Soc. Jpn., 2-4-6, pp. 693-696, Online, Mar. 2022 (in Japanese).
  • T. Toya, M. Kobayashi, K. Nakamura and M, Unoki, "Methods for improving word intelligibility of bone-conducted speech presented by bone-conduction hearing devices," Proc. 2022 Spring Meeting of Acoust. Soc. Jpn., 2-4-5, pp. 689-692, Online, Mar. 2022 (in Japanese).
  • T. Toya, P. Birkholz and M. Unoki, "Investigation of sidetone attenuation for measurements of bone-conduction transmission characteristics during vocalization," Proc. 2021 Autumn Meeting of Acoust. Soc. Jpn., 1-4-3, pp. 695-696, Online, Sep. 2021 (in Japanese).
  • W. Zhu, S. Fujita, T. Toya and M. Unoki, "Method for improving word intelligibility of bone-conducted speech in noisy environment for non-native Japanese speakers," Proc. JHES2021, G-4, Online, Sep. 2021 (in Japanese).
  • S. Morita, T. Toya and M. Unoki, "Investigation of speaker individuality for sense of self-perceived own voices," Proc. 2021 Spring Meeting of Acoust. Soc. Jpn., 3-4P-3, pp. 705-708, Online, Mar. 2021 (in Japanese).
  • S. Fujita, T. Toya and M. Unoki, "Word intelligibility of bone-conducted speech under noisy environment," Proc. JHES2020, G-1-4, Ishikawa, Sep. 2020 (in Japanese).
  • T. Toya, P. Birkholz and M. Unoki, "Proportion of bone-conducted speech transmission in one's perceived own voice," Proc. 2020 Spring Meeting of Acoust. Soc. Jpn., 1-P-4, pp. 799-800, Saitama, Mar. 2020 (in Japanese).
  • S. Morita, D. Kawamoto and T. Toya, "Voice conversion model besed on air-conducted and bone-conducted voices," Proc. 2019 Autumn Meeting of Acoust. Soc. Jpn., 1-R-9, pp. 597-600, Shiga, Sep. 2019 (in Japanese).
  • T. Toya, P. Birkholz and M. Unoki, "Estimates of ear-canal radiation characteristics for bone-conducted speech," Proc. 2019 Autumn Meeting of Acoust. Soc. Jpn., 1-R-8, pp. 595-596, Shiga, Sep. 2019(in Japanese).
  • T. Toya, P. Birkholz and M. Unoki, "Analysis of transmission characteristics of bone-conducted speech using a sound source in oral cavity," Proc. 2019 Spring Meeting of Acoust. Soc. Jpn., 1-R-20, pp. 835-836, Tokyo, Mar. 2019 (in Japanese).
  • T. Toya, P. Birkholz and M. Unoki, "Analysis of transmission characteristics of bone-conducted speech using long-term average spectrum," Proc. 2018 Spring Meeting of Acoust. Soc. Jpn., 3-P-5, pp. 1297-1300, Saitama, Mar. 2018 (in Japanese).
  • T. Toya and M. Unoki, "Study on acoustical characteristics of bone-conducted speech perceived by speakers," Proc. 2017 Autumn Meeting of Acoust. Soc. Jpn., 3-P-10, pp. 345-348, Ehime, Sep. 2017 (in Japanese).
  • T. Toya and M. Unoki, "Presentation method for delayed auditory feedback by air-conducted and bone-conducted speech," Proc. 2017 Spring Meeting of Acoust. Soc. Jpn., 3-Q-46, pp. 1529-1532, Kanagawa, Mar. 2017 (in Japanese).
  • D. Ishikawa, T. Toya and M. Unoki, "Construction of delayed auditory feedback system using Puredata," 7th Hokuriku United Acoustical Seminar, No. 7,Ishikawa, Dec. 2015 (in Japanese).
  • T. Toya, R. Miyauchi and M. Unoki, "Study on suppressive masking based on psychophysical tuning curve," 7th Hokuriku United Acoustical Seminar, No. 6,Ishikawa, Dec. 2015 (in Japanese).
  • T. Toya, R. Miyauchi and M. Unoki, "Study on suppressive masking based on psychophysical tuning curve," Proc. JHES2015, G-10, Ishikawa, Sep. 2015 (in Japanese).
  • T. Toya, T. Fukunari and K. Nishimoto, "Notes-nugetter: A collective and irreversible musical composition system based on Twitter," Proc. Interaction 2015, B09, pp. 470-472, Tokyo, Mar. 2015 (in Japanese).

Awards

Contact me
TOYA, Teruki(Project Assistant Professor @Department of Computer Science and Engineering)
Building A-3, 4-3-11 Takeda, Kofu, 400-8511, Japan
TEL:+81 55-220-8630
mail : t.toya[at]yamanashi.ac.jp