Zahorik Pavel, Kim Duck O, Kuwada Shigeyuki, Anderson Paul W, Brandewie Eugene, Srinivasan Nirmal
Proc Meet Acoust. 2011 Oct;12:50005-50010. doi: 10.1121/1.3656342.
The temporal modulation transfer function (TMTF) approach allows techniques from linear systems analysis to be used to predict how the auditory system will respond to arbitrary patterns of amplitude modulation (AM). Although this approach forms the basis for a standard method of predicting speech intelligibility based on estimates of the acoustical modulation transfer function (MTF) between source and receiver, human sensitivity to AM as characterized by the TMTF has not been extensively studied under realistic listening conditions, such as in reverberant sound fields. Here, TMTFs (octave bands from 2 - 512 Hz) were obtained in 3 listening conditions simulated using virtual auditory space techniques: diotic, anechoic sound field, reverberant room sound field. TMTFs were then related to acoustical MTFs estimated using two different methods in each of the listening conditions. Both diotic and anechoic data were found to be in good agreement with classic results, but AM thresholds in the reverberant room were lower than predictions based on acoustical MTFs. This result suggests that simple linear systems techniques may not be appropriate for predicting TMTFs from acoustical MTFs in reverberant sound fields, and may be suggestive of mechanisms that functionally enhance modulation during reverberant listening.
时间调制传递函数(TMTF)方法允许使用线性系统分析技术来预测听觉系统将如何对任意幅度调制(AM)模式做出反应。尽管这种方法构成了一种基于源与接收器之间声学调制传递函数(MTF)估计来预测语音可懂度的标准方法的基础,但在诸如混响声场等实际聆听条件下,以TMTF表征的人类对AM的敏感度尚未得到广泛研究。在此,使用虚拟听觉空间技术在三种模拟聆听条件下获得了TMTF(2 - 512 Hz倍频程):双耳、消声声场、混响室声场。然后在每种聆听条件下,将TMTF与使用两种不同方法估计的声学MTF相关联。发现双耳和消声数据与经典结果吻合良好,但混响室中的AM阈值低于基于声学MTF的预测。这一结果表明,简单的线性系统技术可能不适用于在混响声场中从声学MTF预测TMTF,并可能暗示了在混响聆听过程中功能上增强调制的机制。