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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
1

Diplacusis

Fagelson, Marc A., Baguley, David M. 15 March 2018 (has links)
Book Summary: Hyperacusis and Disorders of Sound Intolerance: Clinical and Research Perspectives is a professional resource for audiology practitioners involved in the clinical management of patients who suffer from sound tolerance concerns. The text covers emerging assessment and intervention strategies associated with hyperacusis, disorders of pitch perception, and other unusual processing deficits of the auditory system. In order to illustrate the patients perspectives and experiences with disorders of auditory processing, cases are included throughout. This collection of diagnostic strategies and tools, evidence-based clinical research, and case reports provides practitioners with avenues for supporting patient management and coping. It combines new developments in the understanding of auditory mechanisms with the clinical tools developed to manage the effects such disorders exert in daily life. Topics addressed include unusual clinical findings and features that influence a patient s auditory processing such as their perceptual accuracy, recognition abilities, and satisfaction with the perception of sound. Hyperacusis is covered with respect to its effects, its relation to psychological disorders, and its management. Hyperacusis is often linked to trauma or closed head injury and the text also considers the management of patients with traumatic brain injury as an opportunity to illustrate the effectiveness of interprofessional care in such cases. Interventions such as cognitive behavioral therapy, self-efficacy training, and hearing aid use are reported in a way that enhances clinicians' ability to weave such strategies into their own work, or into their referral system. Hyperacusis and Disorders of Sound Intolerance illuminates increasingly observed auditory-related disorders that challenge students, clinicians, physicians, and patients. The text elucidates and reinforces audiologists contributions to polytrauma and interprofessional care teams and provides clear definitions, delineation of mechanisms, and intervention options for auditory disorders.
2

Influence de la surdité neurosensorielle sur la perception de la hauteur tonale / Influence of neurosensory hearing loss on perception of pitch

Colin, David 12 December 2016 (has links)
Dans le cas de perte auditive neurosensorielle, la biomécanique cochléaire se trouve modifiée et les phénomènes actifs liés aux cellules ciliées sont altérés. Si les conséquences sur la baisse de sensibilité, les capacités de sélectivité fréquentielle ou la compréhension de la parole dans le bruit sont bien connus, la perception de la hauteur tonale peut également être modifiée suite à une perte neurosensorielle. Cette thèse se propose d’étudier la perception de la hauteur à travers quatre approches chez des sujets présentant une surdité neurosensorielle. La première étude s’intéresse à la diplacousie et a montré que ce phénomène était bien plus fréquent que ce que l’on pouvait imaginer. Les résultats ont montré que la perception était en règle générale plus aiguë sur l’oreille la plus lésée. La seconde étude propose une mesure catégorielle de la tonie. Les résultats ont montré que pour une même fréquence, les malentendants percevaient un son comme plus aigu que les normo-entendants. La troisième étude traite de la correspondance d’octave et de l’écoute de la musique. Les résultats montrent que la perte auditive est corrélée avec la perception de l’octave. La quatrième étude s’intéresse à la perception catégorielle des fricatives non-voisées. Les résultats montrent que la frontière catégorielle est décalée vers les fréquences graves ce qui semble être le reflet d’une perception plus aigue de ces phonèmes. Ces résultats d’expériences de psychoacoustique vont dans le sens des études menées sur des animaux montrant une modification de la carte tonotopique cochléaire et des fréquences caractéristiques des neurones lors d’une atteinte neurosensorielle. Ces observations pourraient conduire à une meilleure prise en charge des malentendants et à l’élaboration de nouveaux algorithmes sur les futures aides auditives / In the case of sensorineural hearing loss, the cochlear mechanism is modified and the active phenomena linked to the hair cells are altered. If the effects on decreased sensitivity, frequency selectivity, or speech in noise intelligibility are well known, the perception of pitch can also be altered following a neurosensory hearing loss. This thesis proposes to study the perception of pitch with four approaches in subjects with neurosensory hearing loss. The first study focuses on diplacusis and has shown that this phenomenon is much more frequent than one could imagine. The results showed that perception was generally higher on the worse ear. The second study proposes a categorical measure of pitch. The results showed that for the same frequency, the hearing-impaired perceived a sound higher than the normal hearing listeners. The third study is about octave matching and listening to music. The results show that hearing loss correlates with the octave matching frequency. The fourth study focuses on the categorical perception of voiceless fricatives. The results show that the categorical boundary is shifted towards the low frequencies, which seems to reflect a higher perception of these phonemes. These results of psychoacoustic experiments are consistent with the studies carried out on animals showing a modification of the cochlear tonotopic map and the characteristic frequencies of the neurons in case of a neurosensory hearing loss. These observations could lead to better care for the hearing impaired and to the development of new algorithms on future hearing aids

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