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    المؤلفون: Fernandes, Porfírio Afonso

    المساهمون: Santos, Joaquim Filipe Peixoto dos, Repositório Científico do Instituto Politécnico do Porto

    وصف الملف: application/pdf

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    Academic Journal
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    eBook
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    Academic Journal
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    المساهمون: Edward Stredny, MD, Assistant Professor, Department of Anesthesiology and Perioperative Medicine

    المصدر: Utility of the Superior Vena Cava Collapsibility Index (SVC-CI) to Predict Fluid Responsiveness in Patients with Coronary Artery Disease Undergoing Surgical Revascularization
    1. Charbonneau H, Riu B, Faron M, et al. Predicting preload responsiveness using simultaneous recordings of inferior and superior vena cavae diameters. Crit Care. 2014;18(5):473. 2. Hrishi AP, Sethuraman M, Menon G. Quest for the holy grail: Assessment of echo-derived dynamic parameters as predictors of fluid responsiveness in patients with acute aneurysmal subarachnoid hemorrhage. Ann Card Anaesth. 2018;21(3):243-248. 3. Vieillard-Baron A, Chergui K, Rabiller A, et al. Superior vena caval collapsibility as a gauge of volume status in ventilated septic patients. Intensive Care Med. 2004;30(9):1734-1739. 4. Vignon P, Repessé X, Bégot E, et al. Comparison of Echocardiographic Indices Used to Predict Fluid Responsiveness in Ventilated Patients. Am J Respir Crit Care Med. 2017;195(8):1022-1032.

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    المساهمون: Armina Kreuzer, Dr. tech.

    المصدر: Impact of Music Therapy on Speech Intelligibility in Noise in CI Patients
    Digeser F, Hast A, Hessel H, Hoppe U (2008): Einfluss von Obertönen auf die Frequenzdiskrimination bei Cochlear Implant Trägern https://www.uzh.ch/orl/dga2008/programm/wissprog/Digeser.pdf
    Wagener KC, Kühnel V, Kollmeier B (1999b) Entwicklung und Evaluation eines Satztests für die deutsche Sprache III: Evaluation des Oldenburger Sprachtests. Z Audiol 38:86-95.
    Wagener KC, Kühnel V, Kollmeier B (1999a) Entwicklung und Evaluation eines Satztests für die deutsche Sprache I: Design des Oldenburger Satztests. Z Audiol 38:4-15.
    Schuppert M, Munte TF, Wieringa BM, Altenmuller E. Receptive amusia: evidence for cross-hemispheric neural networks underlying music processing strategies. Brain. 2000 Mar;123 Pt 3:546-59. doi: 10.1093/brain/123.3.546.
    Schauwecker N, Patro A, Holder JT, Bennett ML, Perkins E, Moberly AC. Cochlear Implant Qualification in Noise Versus Quiet: Do Patients Demonstrate Similar Postoperative Benefits? Otolaryngol Head Neck Surg. 2024 May;170(5):1411-1420. doi: 10.1002/ohn.677. Epub 2024 Feb 14.
    Parbery-Clark A, Strait DL, Anderson S, Hittner E, Kraus N. Musical experience and the aging auditory system: implications for cognitive abilities and hearing speech in noise. PLoS One. 2011 May 11;6(5):e18082. doi: 10.1371/journal.pone.0018082.
    Patel AD. Why would Musical Training Benefit the Neural Encoding of Speech? The OPERA Hypothesis. Front Psychol. 2011 Jun 29;2:142. doi: 10.3389/fpsyg.2011.00142. eCollection 2011.
    Petersen B, Mortensen MV, Gjedde A, Vuust P. Reestablishing speech understanding through musical ear training after cochlear implantation: a study of the potential cortical plasticity in the brain. Ann N Y Acad Sci. 2009 Jul;1169:437-40. doi: 10.1111/j.1749-6632.2009.04796.x.
    Mirza S, Douglas SA, Lindsey P, Hildreth T, Hawthorne M. Appreciation of music in adult patients with cochlear implants: a patient questionnaire. Cochlear Implants Int. 2003 Jun;4(2):85-95. doi: 10.1179/cim.2003.4.2.85.
    McDermott HJ. Music perception with cochlear implants: a review. Trends Amplif. 2004;8(2):49-82. doi: 10.1177/108471380400800203.
    Looi V, Gfeller K, Driscoll V. MUSIC APPRECIATION AND TRAINING FOR COCHLEAR IMPLANT RECIPIENTS: A REVIEW. Semin Hear. 2012 Nov 1;33(4):307-334. doi: 10.1055/s-0032-1329222. Epub 2012 Nov 19.
    Lima JP, Iervolino SMS, Schochat E. Musical and temporal auditory skills in cochlear implant users after music therapy. Codas. 2018 Nov 12;30(6):e20180006. doi: 10.1590/2317-1782/20182018006. English, Portuguese.
    Hutter E, Grapp M, Argstatter H. [Music therapy in adults with cochlear implants : Effects on music perception and subjective sound quality]. HNO. 2016 Dec;64(12):880-890. doi: 10.1007/s00106-016-0279-7. German.
    Hey M, Bohnke B, Mewes A, Munder P, Mauger SJ, Hocke T. Speech comprehension across multiple CI processor generations: Scene dependent signal processing. Laryngoscope Investig Otolaryngol. 2021 Jun 15;6(4):807-815. doi: 10.1002/lio2.564. eCollection 2021 Aug.
    Haumann S, Muhler R, Ziese M, von Specht H. [Discrimination of musical pitch with cochlear implants]. HNO. 2007 Aug;55(8):613-9. doi: 10.1007/s00106-006-1485-5. German.
    Gfeller K, Woodworth G, Robin DA, Witt S, Knutson JF. Perception of rhythmic and sequential pitch patterns by normally hearing adults and adult cochlear implant users. Ear Hear. 1997 Jun;18(3):252-60. doi: 10.1097/00003446-199706000-00008.
    Dincer D'Alessandro H, Boyle PJ, Portanova G, Mancini P. Music perception and speech intelligibility in noise performance by Italian-speaking cochlear implant users. Eur Arch Otorhinolaryngol. 2022 Aug;279(8):3821-3829. doi: 10.1007/s00405-021-07103-x. Epub 2021 Oct 1.
    Amann E, Anderson I. Development and validation of a questionnaire for hearing implant users to self-assess their auditory abilities in everyday communication situations: the Hearing Implant Sound Quality Index (HISQUI19). Acta Otolaryngol. 2014 Sep;134(9):915-23. doi: 10.3109/00016489.2014.909604. Epub 2014 Jun 30.

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    المصدر: A Technology-Driven Intervention to Improve Early Detection and Management of Cognitive Impairment

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