Δευτέρα 11 Ιουνίου 2018

20Q: OTC Hearing Aids and a 21st Century Pricing and Delivery Model - A Change Is Gonna Come

An engaging Q & A discussion of how audiologists can adapt to the changing market including the advent of over the counter hearing aids by following evidence-based practice, offering services within the full scope of practice of audiology, and utilizing a patient-centric pricing and delivery model.

from #Audiology via ola Kala on Inoreader https://ift.tt/2sMCICW
via IFTTT

Hearing Aid Automation and User Interaction: Have the Best of Both with Widex Evoke

With the launch of Evoke, Widex is introducing devices that are intelligent today, and even smarter tomorrow. This course provides an overview of this exciting new platform; focusing on industry-leading world first features.

from #Audiology via ola Kala on Inoreader https://ift.tt/2sXiRA9
via IFTTT

20Q: OTC Hearing Aids and a 21st Century Pricing and Delivery Model - A Change Is Gonna Come

An engaging Q & A discussion of how audiologists can adapt to the changing market including the advent of over the counter hearing aids by following evidence-based practice, offering services within the full scope of practice of audiology, and utilizing a patient-centric pricing and delivery model.

from #Audiology via ola Kala on Inoreader https://ift.tt/2sMCICW
via IFTTT

Hearing Aid Automation and User Interaction: Have the Best of Both with Widex Evoke

With the launch of Evoke, Widex is introducing devices that are intelligent today, and even smarter tomorrow. This course provides an overview of this exciting new platform; focusing on industry-leading world first features.

from #Audiology via ola Kala on Inoreader https://ift.tt/2sXiRA9
via IFTTT

Κυριακή 10 Ιουνίου 2018

Recommendations on Collecting and Storing Samples for Genetic Studies in Hearing and Tinnitus Research

Objectives: Research on the genetic basis of tinnitus is still in its first steps. A group of scientists dedicated to tinnitus genetics within European Tinnitus Network (TINNET) network recognize that further progress requires multicenter collaborative efforts for defining contributing genes. The purpose of the present work is to provide instructions regarding collection, processing, storage, and shipment of samples intended for genetic studies in auditory research. Design: One part of the recommendations has a general character; another part is of particular importance for auditory healthcare practitioners such as otolaryngology physicians, audiologists, and general practitioners. Results: We provide a set of instructions and various options for obtaining samples. We give advice regarding sample processing, storage, and shipment and define the minimal and essential clinical information that should accompany the samples collected for genetic processing. Conclusions: These recommendations offer a basis to standardize and optimize collaborations between geneticists and healthcare practitioners specialized in tinnitus and hearing disorders. This is an open-access article distributed under the terms of the Creative Commons Attribution-Non Commercial-No Derivatives License 4.0 (CCBY-NC-ND), where it is permissible to download and share the work provided it is properly cited. The work cannot be changed in any way or used commercially without permission from the journal. ACKNOWLEDGMENTS: The work was supported by an independent research program funded under the Biomedicine and Molecular Biosciences European Cooperation in Science and Technology (COST) Action framework (TINNET, BM1306) and from the European Union H2020 research and innovation program under the MSC-ITN 722046 (Schlee et al. 2017). A.J.S. received funding from German Tinnitus Foundation, Sonnenfeld Fundation, and Dürr Foundation. C.R.C. received funding from Karolinska Institutet, Tysta Skolan, Hörselforskningsfonden, Magnus Bergvalls, and Lars Hiertas Minne. J.A.L.-E. received funding from Meniere Society, UK, and the Luxembourg National Research Fund (INTER/Mobility/17/11772209). Publication fees were partially supported by Polytechnic Institute of Setúbal, Portugal. The authors have no conflicts of interest to disclose. Received November 30, 2017; accepted April 6, 2018. Address for correspondence: Jose A. Lopez-Escamez, Otology and Neurotology Group CTS495, GENYO, Centre for Genomics and Oncological Research, Pfizer/University of Granada/Andalusian Regional Government, Avda de la Ilustración, 114, 18016 Granada, Spain. E-mail: antonio.lopezescamez@genyo.es Copyright © 2018 Wolters Kluwer Health, Inc. All rights reserved.

from #Audiology via ola Kala on Inoreader https://ift.tt/2sLjbCN
via IFTTT

Recommendations on Collecting and Storing Samples for Genetic Studies in Hearing and Tinnitus Research

Objectives: Research on the genetic basis of tinnitus is still in its first steps. A group of scientists dedicated to tinnitus genetics within European Tinnitus Network (TINNET) network recognize that further progress requires multicenter collaborative efforts for defining contributing genes. The purpose of the present work is to provide instructions regarding collection, processing, storage, and shipment of samples intended for genetic studies in auditory research. Design: One part of the recommendations has a general character; another part is of particular importance for auditory healthcare practitioners such as otolaryngology physicians, audiologists, and general practitioners. Results: We provide a set of instructions and various options for obtaining samples. We give advice regarding sample processing, storage, and shipment and define the minimal and essential clinical information that should accompany the samples collected for genetic processing. Conclusions: These recommendations offer a basis to standardize and optimize collaborations between geneticists and healthcare practitioners specialized in tinnitus and hearing disorders. This is an open-access article distributed under the terms of the Creative Commons Attribution-Non Commercial-No Derivatives License 4.0 (CCBY-NC-ND), where it is permissible to download and share the work provided it is properly cited. The work cannot be changed in any way or used commercially without permission from the journal. ACKNOWLEDGMENTS: The work was supported by an independent research program funded under the Biomedicine and Molecular Biosciences European Cooperation in Science and Technology (COST) Action framework (TINNET, BM1306) and from the European Union H2020 research and innovation program under the MSC-ITN 722046 (Schlee et al. 2017). A.J.S. received funding from German Tinnitus Foundation, Sonnenfeld Fundation, and Dürr Foundation. C.R.C. received funding from Karolinska Institutet, Tysta Skolan, Hörselforskningsfonden, Magnus Bergvalls, and Lars Hiertas Minne. J.A.L.-E. received funding from Meniere Society, UK, and the Luxembourg National Research Fund (INTER/Mobility/17/11772209). Publication fees were partially supported by Polytechnic Institute of Setúbal, Portugal. The authors have no conflicts of interest to disclose. Received November 30, 2017; accepted April 6, 2018. Address for correspondence: Jose A. Lopez-Escamez, Otology and Neurotology Group CTS495, GENYO, Centre for Genomics and Oncological Research, Pfizer/University of Granada/Andalusian Regional Government, Avda de la Ilustración, 114, 18016 Granada, Spain. E-mail: antonio.lopezescamez@genyo.es Copyright © 2018 Wolters Kluwer Health, Inc. All rights reserved.

from #Audiology via ola Kala on Inoreader https://ift.tt/2sLjbCN
via IFTTT

Σάββατο 9 Ιουνίου 2018

Smoking Associated with Hearing Impairment in Infants

​​Exposure to tobacco smoke prenatally and postnatally is associated with hearing impairment in children, according to researchers in Japan (Paediatr Perinat Epidemiol. 2018 Jun 5. doi: 10.1111/ppe.12477. [Epub ahead of print]). They conducted a retrospective study of 50,734 children born between 2004 and 2010 in Kobe City, and measured smoking during pregnancy and exposure to tobacco smoke at 4 months with parent-reported questionnaires. 

The prevalence of hearing impairment at 3 years old was 4.6 percent. Compared with children not exposed to tobacco smoke prenatally and at 4 months, children exposed to only maternal smoking during pregnancy had a 26 percent increased relative risk, those exposed to only second-hand smoke at 4 months had a 30 percent increased relative risk, those exposed to smoking only during pregnancy had a 68 percent increased relative risk, and those exposed to both smoking during pregnancy and second-hand smoke at 4 months had a 2.4-time increased relative risk.
 
Senior author of the study, Koji Kawakami, MD, PhD, a professor at Kyoto University, said this study clearly shows that preventing exposure to tobacco smoke during pregnancy and postnatally may reduce the risk of hearing problems in children. “The findings remind us of the need to continue strengthening interventions to prevent smoking before and during pregnancy and exposure to second-hand smoke in children,” he said in a press release. 
Published: 6/8/2018 11:05:00 AM


from #Audiology via ola Kala on Inoreader https://ift.tt/2xZeDOo
via IFTTT