Dorman M F, Smith L, Parkin J L
Arizona State University, Tempe, Arizona.
Ear Hear. 1993 Aug;14(4):290-2. doi: 10.1097/00003446-199308000-00008.
Estimates of loudness balance were obtained for acoustically and electrically presented 250 Hz sine signals from a patient who uses the Ineraid multichannel cochlear implant. Acoustic and electric loudness matching was possible because the patient evidenced a 25 dB HL threshold at 250 Hz in his nonimplanted ear. The level of the electrical stimulus in microamperes required for a balance of loudness grew linearly with equal increments in decibels for the acoustic stimulus. These data, in concert with the very limited data from previous studies, provide a rationale for using a logarithmic transformation of acoustic to electric intensity in signal processors for cochlear implants.
对一名使用Ineraid多通道人工耳蜗的患者,获取了其对通过声学和电刺激呈现的250Hz正弦信号的响度平衡估计值。由于该患者在其未植入人工耳蜗的耳朵中,在250Hz频率下表现出25dB HL的听阈,所以能够进行声学和电刺激的响度匹配。为实现响度平衡所需的以微安为单位的电刺激水平,随着声学刺激以分贝为单位的等量增加而呈线性增长。这些数据,与先前研究中非常有限的数据一起,为在人工耳蜗的信号处理器中使用从声学强度到电强度的对数变换提供了理论依据。