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时变脉冲序列的振动触觉和电触觉感知

Vibrotactile and electrotactile perception of time-varying pulse trains.

作者信息

Summers I R, Dixon P R, Cooper P G, Gratton D A, Brown B H, Stevens J C

机构信息

Department of Physics, University of Exeter, United Kingdom.

出版信息

J Acoust Soc Am. 1994 Mar;95(3):1548-58. doi: 10.1121/1.408542.

Abstract

To establish the best strategy for transmitting speech-derived information via a single tactile channel, measurements were made on the perception of frequency- and/or amplitude-modulated pulse-train stimuli, with a comparison of the electrotactile and vibrotactile modalities. In one experiment, vibrotactile perception of 2-oct step changes in stimulus frequency was found to be significantly better than electrotactile on a time-scale appropriate for the transmission of speech features (e.g., with practiced subjects, information transfer of 69% with 200-ms vibrotactile stimuli, 32% with 200-ms electrotactile stimuli). Perception of step changes in stimulus amplitude was similar in the two modalities when changes in amplitude were tailored to match the different dynamic ranges available. In a second experiment, vibrotactile-perception of voice fundamental frequency with various codings was investigated. Both experiments showed information transfer for vibrotactile stimuli to be greater when frequency and amplitude modulation were used together rather than with one or the other in isolation (sentence-stress identification scores: 66% for FM stimuli, 69% for AM stimuli, 80% for FM/AM stimuli). It is concluded that frequency- and amplitude-modulated vibratory stimulation is a good choice in a practical device for the profoundly hearing impaired.

摘要

为了确定通过单一触觉通道传输语音衍生信息的最佳策略,我们对频率和/或幅度调制脉冲串刺激的感知进行了测量,并比较了电触觉和振动触觉模式。在一项实验中,发现在适合语音特征传输的时间尺度上,对刺激频率2倍频程阶跃变化的振动触觉感知明显优于电触觉(例如,对于熟练的受试者,200毫秒振动触觉刺激的信息传递率为69%,200毫秒电触觉刺激的信息传递率为32%)。当调整幅度变化以匹配可用的不同动态范围时,两种模式下对刺激幅度阶跃变化的感知相似。在第二项实验中,研究了各种编码下语音基频的振动触觉感知。两项实验均表明,当同时使用频率和幅度调制而非单独使用其中一种时,振动触觉刺激的信息传递更大(句子重音识别分数:调频刺激为66%,调幅刺激为69%,调频/调幅刺激为80%)。得出的结论是,频率和幅度调制的振动刺激在为极重度听力受损者设计的实用设备中是一个不错的选择。

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