Temporal modulation transfer functions for band-limited noise in subjects with cochlear hearing loss
The modulation depth required for the detection of sinusoidal amplitude modulation was measured as a function of modulation rate, giving temporal modulation transfer functions (TMTFs). The carrier was a one-octave wide noise centred at 2 kHz, and it was presented in an unmodulated background noise l...
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| Vydané v: | British Journal of Audiology Ročník 26; číslo 4; s. 229 - 237 |
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| Hlavní autori: | , , |
| Médium: | Journal Article |
| Jazyk: | English |
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London
Informa UK Ltd
01.01.1992
Taylor & Francis Whurr |
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| ISSN: | 0300-5364, 1708-8186 |
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| Abstract | The modulation depth required for the detection of sinusoidal amplitude modulation was measured as a function of modulation rate, giving temporal modulation transfer functions (TMTFs). The carrier was a one-octave wide noise centred at 2 kHz, and it was presented in an unmodulated background noise lowpass filtered at 5 kHz. Three subjects with unilateral cochlear hearing loss were tested. For each subject, the normal ear was tested both at the same sound pressure level (SPL) and at the same sensation level (SL) as the impaired ear. The TMTFs were essentially the same for the normal and impaired ears, both at equal SPL and at equal SL. The better ears of three subjects with bilateral cochlear losses were also tested. Again, TMTFs were essentially the same as obtained for normal ears. These results suggest that temporal resolution is not necessarily adversely affected by cochlear hearing loss, at least as measured by this task. |
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| AbstractList | The modulation depth required for the detection of sinusoidal amplitude modulation was measured as a function of modulation rate, giving temporal modulation transfer functions (TMTFs). The carrier was a one-octave wide noise centred at 2 kHz, and it was presented in an unmodulated background noise lowpass filtered at 5 kHz. Three subjects with unilateral cochlear hearing loss were tested. For each subject, the normal ear was tested both at the same sound pressure level (SPL) and at the same sensation level (SL) as the impaired ear. The TMTFs were essentially the same for the normal and impaired ears, both at equal SPL and at equal SL. The better ears of three subjects with bilateral cochlear losses were also tested. Again, TMTFs were essentially the same as obtained for normal ears. These results suggest that temporal resolution is not necessarily adversely affected by cochlear hearing loss, at least as measured by this task.The modulation depth required for the detection of sinusoidal amplitude modulation was measured as a function of modulation rate, giving temporal modulation transfer functions (TMTFs). The carrier was a one-octave wide noise centred at 2 kHz, and it was presented in an unmodulated background noise lowpass filtered at 5 kHz. Three subjects with unilateral cochlear hearing loss were tested. For each subject, the normal ear was tested both at the same sound pressure level (SPL) and at the same sensation level (SL) as the impaired ear. The TMTFs were essentially the same for the normal and impaired ears, both at equal SPL and at equal SL. The better ears of three subjects with bilateral cochlear losses were also tested. Again, TMTFs were essentially the same as obtained for normal ears. These results suggest that temporal resolution is not necessarily adversely affected by cochlear hearing loss, at least as measured by this task. The modulation depth required for the detection of sinusoidal amplitude modulation was measured as a function of modulation rate, giving temporal modulation transfer functions (TMTFs). The carrier was a one-octave wide noise centred at 2 kHz, and it was presented in an unmodulated background noise lowpass filtered at 5 kHz. Three subjects with unilateral cochlear hearing loss were tested. For each subject, the normal ear was tested both at the same sound pressure level (SPL) and at the same sensation level (SL) as the impaired ear. The TMTFs were essentially the same for the normal and impaired ears, both at equal SPL and at equal SL. The better ears of three subjects with bilateral cochlear losses were also tested. Again, TMTFs were essentially the same as obtained for normal ears. These results suggest that temporal resolution is not necessarily adversely affected by cochlear hearing loss, at least as measured by this task. |
| Author | Moore, Brian C. J. Shailer, Michael J. Schooneveldt, Gregory P. |
| Author_xml | – sequence: 1 givenname: Brian C. J. surname: Moore fullname: Moore, Brian C. J. organization: 1Department of Experimental Psychology, University of Cambridge, Downing Street, Cambridge, CB2 3EB, England – sequence: 2 givenname: Michael J. surname: Shailer fullname: Shailer, Michael J. organization: 1Department of Experimental Psychology, University of Cambridge, Downing Street, Cambridge, CB2 3EB, England – sequence: 3 givenname: Gregory P. surname: Schooneveldt fullname: Schooneveldt, Gregory P. organization: 1Department of Experimental Psychology, University of Cambridge, Downing Street, Cambridge, CB2 3EB, England |
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| Cites_doi | 10.1121/1.388254 10.1093/ije/18.4.911 10.1121/1.397749 10.1016/0378-5955(90)90041-M 10.1121/1.392045 10.1121/1.383938 10.1121/1.388256 10.1121/1.381437 10.1121/1.399185 10.1121/1.393374 10.1121/1.1918946 10.1121/1.394507 10.1121/1.399055 10.1121/1.395153 10.1001/archotol.1936.00640050746005 10.1121/1.396054 10.3109/00206098509081545 10.1121/1.389812 10.1121/1.391005 10.3109/00206098409070085 10.1121/1.397753 10.1121/1.399729 10.1097/00003446-199112001-00009 10.3109/00206098709078410 10.1121/1.396631 10.1007/978-3-642-70622-6_10 10.1016/0378-5955(90)90170-T 10.1044/jshr.2703.449 10.1121/1.396831 10.1121/1.401950 10.1121/1.397734 10.3109/03005369009077854 10.1121/1.397457 10.1121/1.383531 10.1121/1.389619 10.1121/1.401781 |
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| Title | Temporal modulation transfer functions for band-limited noise in subjects with cochlear hearing loss |
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