Keyword search (4,163 papers available)

"technology" Keyword-tagged Publications:

Title Authors PubMed ID
1 Smart Optogenetics for Real-Time Automated Control of Cardiac Electrical Activity Deng S; Harlaar N; Zhang J; Dekker SO; Kudryashova NN; Zhou H; Bart CI; Jin T; Derevyanko G; van Driel W; Panfilov AV; Poelma RH; de Vries AAF; Zhang G; De Coster T; Pijnappels DA; 41684280
CHEMBIOCHEM
2 Mechanistic insights of plant-microbe interactions for enhancing the growth and productivity of plants under salt stress conditions for agricultural sustainability Sharma B; Negi R; Jyothi SR; Gupta A; Jhamta S; Yadav N; Kaur N; Puri P; Thakur SS; Bagavathiappan S; Thakur N; Shreaz S; Madouh TA; Yadav AN; 41245209
BIOLOGY
3 Auditory and vibrotactile interactions in perception of timbre acoustic features Chauvette L; Sophie Grenier A; Albouy P; Coffey E; Zatorre R; Sharp A; 41168236
PSYCHOLOGY
4 Leveraging Personal Technologies in the Treatment of Schizophrenia Spectrum Disorders: Scoping Review D' Arcey J; Torous J; Asuncion TR; Tackaberry-Giddens L; Zahid A; Ishak M; Foussias G; Kidd S; 39348196
PSYCHOLOGY
5 Advancements in Hybrid Cellulose-Based Films: Innovations and Applications in 2D Nano-Delivery Systems Ramezani G; Stiharu I; van de Ven TGM; Nerguizian V; 38667550
ENCS
6 Perinatal, obstetric and parental risk factors for asthma in the offspring throughout childhood: a longitudinal cohort study Caparros-Gonzalez RA; Essau C; Gouin JP; Pemau A; Galvez-Merlin A; de la Torre-Luque A; 37326102
PSYCHOLOGY
7 Online physical exercise intervention in older adults during lockdown: Can we improve the recipe? Granet J; Peyrusqué E; Ruiz F; Buckinx F; Abdelkader LB; Dang-Vu TT; Sirois MJ; Gouin JP; Pageaux B; Aubertin-Leheudre M; 36635450
PERFORM
8 The use of technology in the treatment of youth with eating disorders: A scoping review Dufour R; Novack K; Picard L; Chadi N; Booij L; 36434657
PSYCHOLOGY
9 Coding Public Health Interventions for Health Technology Assessments: A Pilot Experience With WHO's International Classification of Health Interventions (ICHI) Wübbeler M; Geis S; Stojanovic J; Elliott L; Gutierrez-Ibarluzea I; Lenoir-Wijnkoop I; 34222165
HKAP
10 Recent Advances of DNA Tetrahedra for Therapeutic Delivery and Biosensing. Copp W, Pontarelli A, Wilds CJ 33506614
CHEMBIOCHEM
11 Digital Game Interventions for Youth Mental Health Services (Gaming My Way to Recovery): Protocol for a Scoping Review. Ferrari M, McIlwaine SV, Reynolds JA, Archie S, Boydell K, Lal S, Shah JL, Henderson J, Alvarez-Jimenez M, Andersson N, Boruff J, Nielsen RKL, Iyer SN 32579117
CONCORDIA
12 O6-Alkylguanine DNA Alkyltransferase Mediated Disassembly of a DNA Tetrahedron. Copp W, Wilds CJ 32543755
CHEMBIOCHEM
13 Evaluating Public Health Interventions: A Neglected Area in Health Technology Assessment. Stojanovic J, Wübbeler M, Geis S, Reviriego E, Gutiérrez-Ibarluzea I, Lenoir-Wijnkoop I 32391300
HKAP
14 Augmented reality mastectomy surgical planning prototype using the HoloLens template for healthcare technology letters. Amini S, Kersten-Oertel M 32038868
PERFORM
15 Exploring the use of smartphones and tablets among people with visual impairments: Are mainstream devices replacing the use of traditional visual aids? Martiniello N, Eisenbarth W, Lehane C, Johnson A, Wittich W 31697612
PSYCHOLOGY
16 Start-up of oxygen-limited autotrophic partial nitrification-anammox process for treatment of nitrite-free wastewater in a single-stage hybrid bioreactor. Hosseinpour B, Saborimanesh N, Yerushalmi L, Walsh D, Mulligan CN 31378146
CSFG

 

Title:Auditory and vibrotactile interactions in perception of timbre acoustic features
Authors:Chauvette LSophie Grenier AAlbouy PCoffey EZatorre RSharp A
Link:https://pubmed.ncbi.nlm.nih.gov/41168236/
DOI:10.1038/s41598-025-21908-4
Publication:Scientific reports
Keywords:Assistive technologyAuditionMultimodal perceptionSensory substitutionTimbreVibrotactile
PMID:41168236 Category: Date Added:2025-10-31
Dept Affiliation: PSYCHOLOGY
1 CERVO Brain Research Centre Université Laval, G1E 1T2, Quebec City, Canada. loonan.chauvette@cervo.ulaval.ca.
2 Faculty of Medicine, Université Laval, G1V 0A6, Quebec City, Canada. loonan.chauvette@cervo.ulaval.ca.
3 CERVO Brain Research Centre Université Laval, G1E 1T2, Quebec City, Canada.
4 School of Psychology, Laval University, Quebec City, G1V 0A6, Canada.
5 Concordia University, Montreal, H3G 1M8, Canada.
6 Montreal Neurological Institute McGill University, Montreal, H3A 2B4, Canada.
7 Centre for Research on Brain, Language and Music (CRBLM), McGill University, Montreal, H3G 2A8, Canada.
8 International Laboratory for Brain, Music and Sound Research (BRAMS), Montreal, H2V 2S9, Canada.
9 Faculty of Medicine, Université Laval, G1V 0A6, Quebec City, Canada.

Description:

Recently, there has been increasing interest in developing auditory-to-vibrotactile sensory devices. However, the potential of these technologies is constrained by our limited understanding of which features of complex sounds can be perceived through vibrations. The present study aimed to investigate the vibrotactile perception of acoustic features related to timbre, an essential component to identify environmental, speech and musical sounds. Discrimination thresholds were measured for six features: three spectral (number of harmonics, harmonic roll-off ratio, even-harmonic attenuation) and three temporal (attack time, amplitude modulation depth and amplitude modulation frequency) using auditory, vibrotactile and combined auditory + vibrotactile stimulation in 31 adult humans with normal tactile and auditory sensitivity. Result revealed that all spectral and temporal features can be reliably discriminated via vibrotactile stimulation only. However, for spectral features, vibrotactile thresholds were significantly higher (i.e., worse) than auditory thresholds whereas, for temporal features, only vibrotactile amplitude modulation frequency was significantly higher. With simultaneous auditory and tactile presentation, thresholds significantly improved for attack time and amplitude modulation depth, but not for any of the spectral acoustic features. These results suggest that vibrotactile temporal cues have a more straightforward potential for assisting auditory perception, while vibrotactile spectral cues may require specialized signal processing schemes.





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