Moore B C, Shailer M J, Schooneveldt G P
Department of Experimental Psychology, University of Cambridge, England.
Br J Audiol. 1992 Aug;26(4):229-37. doi: 10.3109/03005369209076641.
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.
测量了检测正弦幅度调制所需的调制深度与调制率的函数关系,得到了时间调制传递函数(TMTF)。载波是一个以2 kHz为中心的一个倍频程宽的噪声,它呈现在一个5 kHz低通滤波的未调制背景噪声中。对三名单侧耳蜗性听力损失患者进行了测试。对于每个受试者,正常耳在与患耳相同的声压级(SPL)和相同的感觉级(SL)下进行测试。在相等的SPL和相等的SL下,正常耳和患耳的TMTF基本相同。还对三名双侧耳蜗性听力损失患者的较好耳进行了测试。同样,TMTF与正常耳获得的结果基本相同。这些结果表明,至少通过这项任务测量,时间分辨率不一定会受到耳蜗性听力损失的不利影响。