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Articles

Bone conduction reception: Head sensitivity mapping

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Pages 702-718 | Received 18 Mar 2006, Published online: 23 Apr 2008

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Allison R. Mackey, William E. Hodgetts & Susan A. Small. (2018) Maturation of bone-conduction transcranial and forehead attenuation using a measure of sound pressure in the ear canal. International Journal of Audiology 57:4, pages 283-290.
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Ivo Dobrev, Stefan Stenfelt, Christof Röösli, Lucy Bolt, Flurin Pfiffner, Rahel Gerig, Alexander Huber & Jae Hoon Sim. (2016) Influence of stimulation position on the sensitivity for bone conduction hearing aids without skin penetration. International Journal of Audiology 55:8, pages 439-446.
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Articles from other publishers (28)

Seokhyun Hwang, YoungIn Kim, Youngseok Seo & SeungJun Kim. (2023) Enhancing Seamless Walking in Virtual Reality: Application of Bone-Conduction Vibration in Redirected Walking. Enhancing Seamless Walking in Virtual Reality: Application of Bone-Conduction Vibration in Redirected Walking.
Mohammad Ghoncheh, Susan BuschThomas LenarzHannes Maier. (2023) A Novel Method to Determine the Maximum Output of Individual Patients for an Active Transcutaneous Bone Conduction Implant Using Clinical Routine Data. Ear & Hearing.
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Ko Uemura, Sho Otsuka & Seiji Nakagawa. (2023) Basic perception and propagation characteristics of bone-conducted sounds presented to facial parts. Japanese Journal of Applied Physics 62:SJ, pages SJ1016.
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Jie Wang, Yunda Chen, Stefan Stenfelt, Jinqiu Sang, Xiaodong Li & Chengshi Zheng. (2023) Analysis of cross-talk cancellation of bilateral bone conduction stimulation. Hearing Research 434, pages 108781.
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Fengxuan Ren, Yutong Li, Lidan Chen, Jiaqi Huang & Jianxiang Tao. (2022) The sensitivity of bone conduction for dental implants. The Journal of the Acoustical Society of America 152:3, pages 1389-1393.
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Yafei Nie, Jie Wang, Chengshi Zheng, Jian Xu, Xiaodong Li, Yu Wang, Bo Zhong, Juanjuan Cai & Jinqiu Sang. (2022) Measurement and modeling of the mechanical impedance of human mastoid and condyle. The Journal of the Acoustical Society of America 151:3, pages 1434-1448.
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Jie Wang, Stefan Stenfelt, Shengjian Wu, Zhihao Yan, Jinqiu Sang, Chengshi Zheng & Xiaodong Li. (2022) The Effect of Stimulation Position and Ear Canal Occlusion on Perception of Bone Conducted Sound. Trends in Hearing 26, pages 233121652211301.
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Claire Richards, Nicolas Misdariis, Roland Cahen, Damien Faux & Vincent Hayward. (2021) Vibratory Detection Thresholds for the Spine, Clavicle and Sternum. Vibratory Detection Thresholds for the Spine, Clavicle and Sternum.
Takumi Asakura. (2021) Bone Conduction Auditory Navigation Device for Blind People. Applied Sciences 11:8, pages 3356.
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Rafael N. C. Patrick, Tomasz R. Letowski & Maranda E. McBride. (2020) A multimodal auditory equal-loudness comparison of air and bone conducted sounds. Journal on Multimodal User Interfaces 14:2, pages 199-206.
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Vanessa Cobus & Wilko Heuten. (2019) To Beep or Not to Beep? Evaluating Modalities for Multimodal ICU Alarms. Multimodal Technologies and Interaction 3:1, pages 15.
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Xiuyuan Qin & Tsuyoshi Usagawa. (2017) Frequency characteristics of bone conduction actuators – Measurements of loudness and acceleration. Applied Acoustics 126, pages 19-25.
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Kimberly A. Pollard, Phuong K. Tran & Tomasz Letowski. (2017) Morphological differences affect speech transmission over bone conduction. The Journal of the Acoustical Society of America 141:2, pages 936-944.
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Allison R. MackeyWilliam E. HodgettsDylan ScottSusan A. Small. (2016) Maturation of Mechanical Impedance of the Skin-Covered Skull: Implications for Soft Band Bone-Anchored Hearing Systems Fitted in Infants and Young Children. Ear & Hearing 37:4, pages e210-e223.
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Maranda McBride, Phuong Tran, Kimberly A. Pollard, Tomasz Letowski & Garnett P. McMillan. (2015) Effects of Bone Vibrator Position on Auditory Spatial Perception Tasks. Human Factors: The Journal of the Human Factors and Ergonomics Society 57:8, pages 1443-1458.
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Kimberly A. Pollard, Phuong K. Tran & Tomasz Letowski. (2015) The effect of vocal and demographic traits on speech intelligibility over bone conduction. The Journal of the Acoustical Society of America 137:4, pages 2060-2069.
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Måns Eeg-Olofsson, Stefan Stenfelt, Hamidreza Taghavi, Sabine Reinfeldt, Bo Håkansson, Tomas Tengstrand & Caterina Finizia. (2013) Transmission of bone conducted sound – Correlation between hearing perception and cochlear vibration. Hearing Research 306, pages 11-20.
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Phuong K. Tran, Tomasz R. Letowski & Maranda E. McBride. (2013) The effect of bone conduction microphone placement on intensity and spectrum of transmitted speech items. The Journal of the Acoustical Society of America 133:6, pages 3900-3908.
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Misty Blue, Maranda McBride, Rachel Weatherless & Tomasz Letowski. (2012) Impact of a Bone Conduction Communication Channel on Multichannel Communication System Effectiveness. Human Factors: The Journal of the Human Factors and Ergonomics Society 55:2, pages 346-355.
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Kimberly A. Pollard, Phuong K. Tran & Tomasz R. Letowski. (2013) A free-field method to calibrate bone conduction transducers. The Journal of the Acoustical Society of America 133:2, pages 858-865.
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Woojae Han. (2013) Effects of Hearing Protection Methods and Noise Directions on Bone-Conduction Sensitivity. THE JOURNAL OF THE ACOUSTICAL SOCIETY OF KOREA 32:5, pages 423.
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Rafael Patrick, Jason Kring, Maranda McBride & Tomasz Letowski. (2012) Conduction Equivalency Ratios: A Means for Comparing the Frequency Response of Bone and Air Conduction Auditory Displays. Proceedings of the Human Factors and Ergonomics Society Annual Meeting 56:1, pages 1356-1360.
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Meghan L. Hodges & Maranda E. McBride. (2012) Gender differences in bone conduction auditory signal processing: Communication equipment design implications. International Journal of Industrial Ergonomics 42:1, pages 49-55.
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Maranda McBride, Phuong Tran, Tomasz Letowski & Rafael Patrick. (2011) The effect of bone conduction microphone locations on speech intelligibility and sound quality. Applied Ergonomics 42:3, pages 495-502.
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Raymond M. Stanley & Bruce N. Walker. (2009) Intelligibility of bone-conducted speech at different locations compared to air-conducted speech. Proceedings of the Human Factors and Ergonomics Society Annual Meeting 53:17, pages 1086-1090.
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M McBride, M Hodges & J French. (2008) Speech intelligibility differences of male and female vocal signals transmitted through bone conduction in background noise: Implications for voice communication headset design. International Journal of Industrial Ergonomics 38:11-12, pages 1038-1044.
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Maranda McBridePhuong TranTomasz Letowski. (2008) Head Mapping: Search for an Optimum Bone Microphone Placement. Proceedings of the Human Factors and Ergonomics Society Annual Meeting 52:5, pages 503-507.
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Phuong Tran, Tomasz Letowski & Maranda McBride. (2008) Bone conduction microphone: Head sensitivity mapping for speech intelligibility and sound quality. Bone conduction microphone: Head sensitivity mapping for speech intelligibility and sound quality.

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