| Keyword search (4,163 papers available) | ![]() |
"hearing" Keyword-tagged Publications:
| Title | Authors | PubMed ID | |
|---|---|---|---|
| 1 | The effect of hearing ability on dual-task performance following multi-domain training in older adults with mild cognitive impairment: findings from the SYNERGIC trial | Downey RI; Petersen BJ; Mohanathas N; Campos JL; Montero-Odasso M; Bherer L; Pichora-Fuller MK; Bray NW; Burhan AM; Camicioli R; Fraser S; Liu-Ambrose T; Lussier M; Middleton LE; Pieruccini-Faria F; Phillips NA; Li KZH; | 41694460 SOH |
| 2 | Auditory Training for Everyday Functioning in Later Life | Li KZH; Campos J; Pichora-Fuller MK; | 41036263 PSYCHOLOGY |
| 3 | Hearing loss is associated with decreased default-mode network connectivity in individuals with mild cognitive impairment | Grant N; Phillips N; | 40567819 PSYCHOLOGY |
| 4 | Sound degradation type differentially affects neural indicators of cognitive workload and speech tracking | Gagné N; Greenlaw KM; Coffey EBJ; | 40412301 PSYCHOLOGY |
| 5 | Auditory working memory mechanisms mediating the relationship between musicianship and auditory stream segregation | Liu M; Arseneau-Bruneau I; Farrés Franch M; Latorre ME; Samuels J; Issa E; Payumo A; Rahman N; Loureiro N; Leung TCM; Nave KM; von Handorf KM; Hoddinott JD; Coffey EBJ; Grahn J; Zatorre RJ; | 40226491 PSYCHOLOGY |
| 6 | Realistic dual-task listening-while-balancing in older adults with normal hearing and hearing loss with and without hearing aids | Mohanathas N; Montanari L; Gabriel GA; Downey R; Li KZH; Campos JL; | 39567644 PERFORM |
| 7 | The impact of cognitive-motor interference on balance and gait in hearing-impaired older adults: a systematic review | Wunderlich A; Wollesen B; Asamoah J; Delbaere K; Li K; | 38914940 PSYCHOLOGY |
| 8 | Strategies used during the cognitive evaluation of older adults with dual sensory impairment: a scoping review | Dumassais S; Pichora-Fuller MK; Guthrie D; Phillips NA; Savundranayagam M; Wittich W; | 38506649 PSYCHOLOGY |
| 9 | Audiovisual integration in children with cochlear implants revealed through EEG and fNIRS | Alemi R; Wolfe J; Neumann S; Manning J; Towler W; Koirala N; Gracco VL; Deroche M; | 37989460 PSYCHOLOGY |
| 10 | At-home computerized executive-function training to improve cognition and mobility in normal-hearing adults and older hearing aid users: a multi-centre, single-blinded randomized controlled trial | Downey R; Gagné N; Mohanathas N; Campos JL; Pichora-Fuller KM; Bherer L; Lussier M; Phillips NA; Wittich W; St-Onge N; Gagné JP; Li K; | 37864139 PERFORM |
| 11 | Decoding of Envelope vs. Fundamental Frequency During Complex Auditory Stream Segregation | Greenlaw KM; Puschmann S; Coffey EBJ; | 37215227 PSYCHOLOGY |
| 12 | Hearing loss is associated with gray matter differences in older adults at risk for and with Alzheimer's disease | Giroud N; Pichora-Fuller MK; Mick P; Wittich W; Al-Yawer F; Rehan S; Orange JB; Phillips NA; | 36911511 CRDH |
| 13 | A Newly Identified Impairment in Both Vision and Hearing Increases the Risk of Deterioration in Both Communication and Cognitive Performance | Guthrie DM; Williams N; Campos J; Mick P; Orange JB; Pichora-Fuller MK; Savundranayagam MY; Wittich W; Phillips NA; | 35859361 PSYCHOLOGY |
| 14 | CCCDTD5 recommendations on early non cognitive markers of dementia: A Canadian consensus | Montero-Odasso M; Pieruccini-Faria F; Ismail Z; Li K; Lim A; Phillips N; Kamkar N; Sarquis-Adamson Y; Speechley M; Theou O; Verghese J; Wallace L; Camicioli R; | 33094146 CRDH |
| 15 | The Prevalence of Hearing, Vision, and Dual Sensory Loss in Older Canadians: An Analysis of Data from the Canadian Longitudinal Study on Aging. | Mick PT, Hämäläinen A, Kolisang L, Pichora-Fuller MK, Phillips N, Guthrie D, Wittich W | 32546290 PSYCHOLOGY |
| 16 | Hearing and Cognitive Impairments Increase the Risk of Long-term Care Admissions | Williams N; Phillips NA; Wittich W; Campos JL; Mick P; Orange JB; Pichora-Fuller MK; Savundranayagam MY; Guthrie DM; | 31911955 PSYCHOLOGY |
| 17 | Effects of Age on Dual-Task Walking While Listening | Victoria Nieborowska | 30239280 PERFORM |
| Title: | Decoding of Envelope vs. Fundamental Frequency During Complex Auditory Stream Segregation | ||||
| Authors: | Greenlaw KM, Puschmann S, Coffey EBJ | ||||
| Link: | https://pubmed.ncbi.nlm.nih.gov/37215227/ | ||||
| DOI: | 10.1162/nol_a_00013 | ||||
| Publication: | Neurobiology of language (Cambridge, Mass.) | ||||
| Keywords: | auditory stream segregation; hearing-in-noise; neural decoding; pitch representation; reconstruction; speech-in-noise; | ||||
| PMID: | 37215227 | Category: | Date Added: | 2023-05-22 | |
| Dept Affiliation: | PSYCHOLOGY | ||||
Description: |
Hearing-in-noise perception is a challenging task that is critical to human function, but how the brain accomplishes it is not well understood. A candidate mechanism proposes that the neural representation of an attended auditory stream is enhanced relative to background sound via a combination of bottom-up and top-down mechanisms. To date, few studies have compared neural representation and its task-related enhancement across frequency bands that carry different auditory information, such as a sound's amplitude envelope (i.e., syllabic rate or rhythm; 1-9 Hz), and the fundamental frequency of periodic stimuli (i.e., pitch; >40 Hz). Furthermore, hearing-in-noise in the real world is frequently both messier and richer than the majority of tasks used in its study. In the present study, we use continuous sound excerpts that simultaneously offer predictive, visual, and spatial cues to help listeners separate the target from four acoustically similar simultaneously presented sound streams. We show that while both lower and higher frequency information about the entire sound stream is represented in the brain's response, the to-be-attended sound stream is strongly enhanced only in the slower, lower frequency sound representations. These results are consistent with the hypothesis that attended sound representations are strengthened progressively at higher level, later processing stages, and that the interaction of multiple brain systems can aid in this process. Our findings contribute to our understanding of auditory stream separation in difficult, naturalistic listening conditions and demonstrate that pitch and envelope information can be decoded from single-channel EEG data. |



