參考文獻 |
Bhattacharya, A., and Zeng, F.-G. (2007). "Companding to improve cochlear-implant speech recognition in speech-shaped noise," J. Acoust. Soc. Am. 122, 1079–1089.
Blarney, P. J., Dowell, R. C., Tong, Y. C., Brown, A. M., Luscornbe, S. M., and Clark, G. M. (1984). "Speech processing studies using an acoustic model of a multiplechannel cochlear implant," J. Acoust. Soc. Am. 76, 104-110.
Carroll, J., and Zeng, F.-G. (2007). "Fundamental frequency discrimination and speech perception in noise in cochlear implant simulations," Hearing Research 231, 42-53.
Ching, T. Y. C., Incerti, P., and Hill, M. (2004). "Binaural Benefits for Adults Who Use Hearing Aids and Cochlear Implants in Opposite Ears," Ear & Hearing 25, 9-21.
Desai, S., Stickney, G., and Zeng, F.-G. (2008). "Auditory-visual speech perception in normal-hearing and cochlear-implant listeners," J. Acoust. Soc. Am. 123, 428–440.
Dorman, M. F., Loizou, P. C., and Rainey, D. (1997). "Speech intelligibility as a function of the number of channels of stimulation for signal processors using sine-wave and noise-band outputs," J. Acoust. Soc. Am. 102, 2403-2411.
Fishman, K. E., Shannon, R. V., and Slattery, W. H. (1997). "Speech recognition as a function of the number of electrodes used in the SPEAK cochlear implant speech processor," Journal of Speech, Language, and Hearing Research 40, 1201-1215.
Friesen, L. M., Shannon, R. V., Baskent, D., and Wang, X. (2001). "Speech recognition in noise as a function of the number of spectral channels: Comparison of acoustic hearing and cochlear implants," J. Acoust. Soc. Am. 110, 1150-1163.
Fu, Q.-J., Hsu, C.-J., and Horng, M.-J. (2004). "Effects of Speech Processing Strategy on Chinese Tone Recognition by Nucleus-24 Cochlear Implant Users," Ear & Hearing 25, 501-508.
Fu, Q.-J., and Nogaki, G. (2004). "Noise Susceptibility of Cochlear Implant Users: The Role of Spectral Resolution and Smearing," JARO 6, 19-27.
Fu, Q.-J., and Shannon, R. V. (1998). "Effects of amplitude nonlinearity on phoneme recognition by cochlear implant users and normal-hearing listeners," J. Acoust. Soc. Am. 104, 2570-2577.
Fu, Q.-J., Shannon, R. V., and Wang, X. (1998). "Effects of noise and spectral resolution on vowel and consonant recognition: Acoustic and electric hearing," J. Acoust. Soc. Am. 104, 3586-3596.
Greenwood, D. D. (1990). "A cochlear frequency-position function for several species--29 years later," J. Acoust. Soc. Am. 87, 2592-2605.
Kong, Y.-Y., Stickney, G. S., and Zeng, F.-G. (2005). "Speech and melody recognition in binaurally combined acoustic and electric hearing," J. Acoust. Soc. Am. 117, 1351–1361.
Laneau, J., Moonen, M., and Wouters, J. (2006). "Factors affecting the use of noise-band vocoders as acoustic models for pitch perception in cochlear implants," J. Acoust. Soc. Am. 119, 491–506.
Li, A., and Martin, F. N. (1983). "Development of materials for determination of the speech reception threshold in chinese," Chin Med J 32, 282-288.
Liu, T.-C., Chen, H.-P., and Lin, H.-C. (2004). "Effects of Limiting the Number of Active Electrodes on Mandarin Tone Perception in Young Children Using Cochlear Implants," Acta Otolaryngol 124, 1149-1154.
Loizou, P. C. (1998). "Mimicking the human ear," in IEEE Signal Processing Magazine, pp. 101-130.
Luntz, M., Shpak, T., and Weiss, H. (2005). "Binaural-bimodal hearing: Concomitant use of a unilateral cochlear implant and a contralateral hearing aid," Acta Oto-Laryngologica 125.
Nelson, P. B., Jin, S.-H., Carney, A. E., and Nelson, D. A. (2003). "Understanding speech in modulated interference: Cochlear implant users and normal-hearing listeners," J. Acoust. Soc. Am. 113, 961-968.
Nie, K., Stickney, G., and Zeng, F.-G. (2005). "Encoding Frequency Modulation to Improve Cochlear Implant Performance in Noise," IEEE Transactions on Biomedical Engineering 52, 64-73.
Nilsson, M., Soil, S. D., and Sullivan, J. A. (1994). "Development of the Hearing In Noise Test for the measurement of speech reception thresholds in quiet and in noise," J. Acoust. Soc. Am. 95, 1085-1099.
Nissen, S. L., Harris, R. W., and Dukes, A. (2007). "Word Recognition Materials for Native Speakers of Taiwan Mandarin," American Journal of Audiology.
Nissen, S. L., Harris, R. W., Jennings, L.-J., Eggett, D. L., and Buck, H. (2005). "Psychometrically equivalent Mandarin bisyllabic speech discrimination materials spoken by male and female talkers," International Journal of Audiology 44, 379-390.
Nogueira, W., B?chner, A., Lenarz, T., and Edler, B. (2005). "A Psychoacoustic “NofM”-Type Speech Coding Strategy for Cochlear Implants," EURASIP Journal on Applied Signal Processing 18, 3044-3059.
Parikh, G., and Loizou, P. C. (2005). "The influence of noise on vowel and consonant cues," J. Acoust. Soc. Am. 118, 3874–3888.
Rothauser, E. H., Chapman, W. D., Guttman, N., Silbiger, H. R., Hecker, M. H. L., Urbanek, G. E., Sordby, K. S., Weinstock, M., LIcGee, V. E., Pachl, C. P., and Voiers, J. D. (1969). "IEEE Recommended Practice for Speech Quality Measurements," IEEE Transactions on Audio and Electroacoustics AU-17, 225-246.
Shannon, R. V., Zeng, F.-G., Kamath, V., Wygonski, J., and Ekelid, M. (1995). "Speech Recognition with Primarily Temporal Cues," Science 270, 303-304.
Singh, S., Kong, Y.-Y., and Zeng, F.-G. (2009). "Cochlear Implant Melody Recognition as a Function of Melody Frequency Range, Harmonicity, and Number of Electrodes," Ear & Hearing 30, 160-168.
Stickney, G. S., Assmann, P. F., Chang, J., and Zeng, F.-G. (2007). "Effects of cochlear implant processing and fundamental frequency on the intelligibility of competing sentences," J. Acoust. Soc. Am. 122, 1069–1078.
Stickney, G. S., Nie, K., and Zeng, F.-G. (2005). "Contribution of frequency modulation to speech recognition in noise," J. Acoust. Soc. Am. 118, 2412–2420.
Stone, M. A., F?llgrabe, C., and Moore, B. C. J. (2008). "Benefit of high-rate envelope cues in vocoder processing: Effect of number of channels and spectral region," J. Acoust. Soc. Am. 124, 2272–2282.
Tillman, T. W., and Carhart, R. (1966). "An expanded test for speech discrimination utilizing CNC monosyllabic words. Northwestern University Auditory Test NO. 6," USAF School of Aerospace Medicine Technical Report, Brooks Air Force Base, TX.
Turner, C. W., Gantz, B. J., Vidal, C., Behrens, A., and Henry, B. A. (2004). "Speech recognition in noise for cochlear implant listeners: Benefits of residual acoustic hearing," J. Acoust. Soc. Am. 115, 1729-1735.
Turner, C. W., Reiss, L. A. J., and Gantz, B. J. (2008). "Combined acoustic and electric hearing: Preserving residual acoustic hearing," Hearing Research 242, 164-171.
Wong, L. L. N., Soli, S. D., Liu, S., Han, N., and Huang, M.-W. (2007). "Development of the Mandarin Hearing in Noise Test (MHINT)," Ear & Hearing 28, 70S–74S.
Xu, L., Tsai, Y., and Pfingst, B. E. (2002). "Features of stimulation affecting tonal-speech perception: Implications for cochlear prostheses," J. Acoust. Soc. Am. 112, 247-258.
王老得, and 蘇富美 (1979). "中國語音均衡字彙表之編製研究," 耳鼻喉科醫學會雜誌 14, 87-95.
吳炤民, 黃國原, 林鴻清, 何玲玲, 劉佳林, and 吳哲民 (2008). "雙耳聽(人工電子耳與助聽器)對中文語音辨識率影響之研究-模擬與臨床實驗," in 生物醫學工程科技研討會暨國科會醫學工程學門成果發表會 (長庚大學).
林永松, 張簡培崙, and 沈美玲 (1997). "中文揚揚格語詞聽閾檢定表," 中華民國耳鼻喉科醫學會雜誌 32, 7-13.
林鴻清, 徐銘燦, 李國森, and Lin, G. (2007). "Long-term follow-up of true-positives after newborn hearing screening," in 82屆台灣耳鼻喉科醫學會 (彰化基督教醫院).
統計處 (2008). "九十八年第九週內政統計通報(97年底列冊身心障礙者人數統計)," Retrieved July 23, 2009, from http://www.moi.gov.tw/stat/news_content. aspx?sn=2123.
許筱曼 (2003). "改變電刺激速率對於人工電子耳兒童漢語語音及聲調辨識的影響," in 國立台北護理學院聽語障礙科學研究所.
陳小娟, and 利文鳳 (1999). "學齡前兒童國語語音閾語詞之編製," 特殊教育與復健學報 7, 183-217.
黃銘緯 (2005). "台灣地區噪音下漢語語音聽辨測試," in 聽語障礙科學研究所 (國立台北護理學院), p. 70.
楊惠美, and 吳俊良 (2005). "學齡前兒童中文語彙毗鄰測驗的編制與驗證," in 台灣耳鼻喉頭頸外科雜誌, pp. 1-12.
董書豪 (2007). "人工電子耳進階結合編碼策略的中文語音辨識成效模擬--結合助聽器之分析 " in 電機工程研究所 (國立中央大學), p. 91.
劉樹玉, 劉俊榮, 王南梅, 郭于靚, and 黃國祐 (2009). "台灣成人電子耳植入者之使用現況調查," in 台灣聽力語言學會雜誌, pp. 25-53.
鄭惟仁 (2006). "結合人工電子耳與助聽器對中文語音辨識率的影響 " in 電機工程研究所 (國立中央大學), p. 78.
|