Department of Neuroscience, Baylor College of Medicine.
Department of Biochemistry and Cell Biology, Rice University.
J Exp Psychol Gen. 2019 Jul;148(7):1124-1137. doi: 10.1037/xge0000513. Epub 2018 Oct 18.
Naturally occurring signals in audition and touch can be complex and marked by temporal variations in frequency and amplitude. Auditory frequency sweep processing has been studied extensively; however, much less is known about sweep processing in touch because studies have primarily focused on the perception of simple sinusoidal vibrations. Given the extensive interactions between audition and touch in the frequency processing of pure tone signals, we reasoned that these senses might also interact in the processing of higher-order frequency representations like sweeps. In a series of psychophysical experiments, we characterized the influence of auditory distractors on the ability of participants to discriminate tactile frequency sweeps. Auditory frequency sweeps systematically biased the tactile perception of sweep direction. Importantly, auditory cues exerted little influence on tactile sweep direction perception when the sounds and vibrations occupied different absolute frequency ranges or when the sounds consisted of intensity sweeps. Thus, audition and touch interact in frequency sweep perception in a frequency- and feature-specific manner. Our results demonstrate that audio-tactile interactions are not constrained to the processing of simple sinusoids. Because higher-order frequency representations may be synthesized from simpler representations, our findings imply that multisensory interactions in the temporal frequency domain span multiple hierarchical levels in sensory processing. (PsycINFO Database Record (c) 2019 APA, all rights reserved).
听觉和触觉中的自然信号可能很复杂,并具有频率和幅度随时间变化的特征。听觉频率扫描处理已得到广泛研究;然而,由于研究主要集中在对简单正弦振动的感知上,因此对触觉扫描处理的了解要少得多。鉴于在纯音信号的频率处理中听觉和触觉之间存在广泛的相互作用,我们推断这些感觉在处理更高阶的频率表示(如扫描)时也可能相互作用。在一系列心理物理实验中,我们描述了听觉干扰对参与者辨别触觉频率扫描能力的影响。听觉频率扫描系统地影响了对扫描方向的触觉感知。重要的是,当声音和振动占据不同的绝对频率范围或声音由强度扫描组成时,听觉提示对触觉扫描方向感知的影响很小。因此,听觉和触觉在频率扫描感知中以频率和特征特异性的方式相互作用。我们的研究结果表明,音频-触觉相互作用不仅限于对简单正弦波的处理。由于高阶频率表示可以从更简单的表示中合成,因此我们的发现意味着在时间频率域中的多感觉相互作用跨越了多个感觉处理的层次级别。