Translating Music to Touch: Exploring Tactile Perception of Pitch, Roughness, and Pleasantness
Marozeau, J.; Taylor, A.; Novozhilova, S.; Prsa, M.; Huber, D.
Show abstract
Music is a rich multisensory experience, yet individuals with hearing impairments often lack access to this important aspect of culture. As tactile technologies advance, there is growing interest in whether musical information can be conveyed through vibration. This study investigates how core dimensions of auditory music perception, pitch, roughness, and pleasantness, can be translated into the tactile domain. Participants were asked to rate these perceptual dimensions in response to sinusoidal and complex waveforms, including amplitude-modulated signals, sawtooth, and missing fundamental stimuli. Perceived pitch showed a systematic relationship with stimulus frequency for most participants, suggesting that tactile devices could at least partially convey some form of simple melodic patterns. The sawtooth waveform emerged as particularly effective for representing pitch changes, underscoring the role of rapid temporal transitions in tactile pitch encoding. Roughness ratings were negatively correlated with pleasantness, mirroring well-established findings in auditory perception. Waveforms with sudden temporal changes or rapid amplitude modulations were consistently judged as less pleasant. Taken together, these findings in normal hearing participants may inform the design of vibrotactile displays that could support access to selected music relevant perceptual dimensions, although generalization to people with hearing loss remains to be tested. Importantly, our results highlight the crucial role of the fast temporal envelope rather than the temporal fine structure, in shaping vibrotactile perception. Consistent with this interpretation, our data provide evidence for a tactile analog of the auditory missing fundamental phenomenon, reinforcing the idea that tactile pitch perception primarily relies on envelope periodicity rather than the presence of specific frequency components.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Exploring the distribution of statistical feature parameters for natural sound textures 95%
- Visual body form and orientation cues do not modulate visuo-tactile temporal integration 95%
- Supra-threshold perception and neural representation of tones presented in noise in conditions of masking release 94%
Similar papers in this journal
- Feeling Senseless Sensations: A Crossmodal study of mismatching tactile and virtual visual experience 93%
- Virtual reality validation of naturalistic modulation strategies to counteract fading in retinal stimulation 92%
- Biomimetic stimulation patterns drive natural artificial touch percepts using intracortical microstimulation in humans 92%
Similar papers in this journal
- Focality of sound source placement by higher (9th) order ambisonics and perceptual effects of spectral reproduction errors 96%
- Magnified interaural level differences enhance spatial release from masking in bilateral cochlear implant users 94%
- Click evoked Middle Ear Muscle Reflex: Spectral and Temporal Aspects 94%
Similar papers in this journal
- Touch inhibits touch: sanshool-induced paradoxical tingling reveals perceptual interference between somatosensory submodalities 92%
- Respiration shapes response speed and accuracy with a systematic time lag 92%
- Predicting speech-in-noise ability with static and dynamic auditory figure-ground analysis using structural equation modelling 91%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.