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Presenter(s): Harvey B Abrams, PhD; James W Hall, PhD
Credit(s): PDHs: 1.0, ASHA CEUs*: 0.1
Summary: This course includes two presentations that introduce strategies and tools for remote hearing assessment, including online and smartphone tests of hearing, remote pure tone audiometry, speech audiometry, and evaluation of peripheral and central auditory dysfunction in pediatric and adult populations. The course is part of a set of practical programs that address specific aspects of remote practice in audiology.
Presenter(s): De Wet Swanepoel; Karina De Sousa
Credit(s): PDHs: 0.5, ASHA CEUs*: 0.05
Summary: This course discusses validated technologies for remote hearing screening in the digital age, including options for no-touch screening with uncalibrated equipment and low-touch remote screening. The course is part of a set of practical programs that address specific aspects of remote practice in audiology.
Presenter(s): Georgia Cambridge; Tracey Taylor; Wayne Wilson; Wendy Arnott
Credit(s): PDHs: 0.5, ASHA CEUs*: 0.05
Summary: This course presents a systematic review that aimed to answer the PICO-format clinical research question: For adults with cochlear implants and severe to profound postlingual sensorineural hearing loss, is auditory training effective in improving listening outcomes?
Presenter(s): Jennifer A Drob, AuD, CCC-A
Credit(s): PDHs: 1.0, ASHA CEUs*: 0.1
Summary: As bone conduction implants evolve, there are now more options available than ever before, prompting the question: How do I choose the right one for my patients? This recorded session from the ASHA Audiology 2022 Online Conference discusses the current bone conduction implants on the market, candidacy criteria, and programming considerations.
Presenter(s): Mark A. Parker, PhD, CCC-A, F-AAA
Credit(s): PDHs: 0.5, ASHA CEUs*: 0.05
Summary: The audiogram is a poor representation of a person's underlying otopathology and can therefore be a poor predictor of a person's hearing impairment. For example, persons with audiometric thresholds within normal limits may experience hearing impairment such as difficulty hearing in noise. Cochlear synaptopathy and outer hair cell dysfunction are two otopathologies undetected by the standard audiogram (a.k.a. Hidden Hearing Loss), but outer hair cell function plays a primary role in hearing in noise performance. A third undetected otopathology is cochlear untuning, which occurs secondary to outer hair cell damage. This course discusses each of these otopathologies and presents clinical normative data that can be used to differentially diagnose each otopathology.
Presenter(s): Cynthia Hogan,PhD, CCC-A; Janalene Jacobson,AuD, CCC-A; Melanie Meldrum,AuD, CCC-A; Sarah Ostlie, AuD, CCC-A
Credit(s): PDHs: 1.5, ASHA CEUs*: 0.15
Summary: This course explores the most commonly fit devices for patients whose hearing is significantly poorer in one ear than the other (e.g., single-sided deafness or asymmetric hearing loss) and identify factors that impact device selection and hearing management. Using data analysis and case examples from their clinic, the speakers discuss management options for asymmetrical sensorineural hearing loss, including traditional hearing aids, Bi-CROS devices, bone conduction devices (BCD), and cochlear implants (all with or without assistive devices).This course – part of the SIGnature Series – was developed by SIG 6: Hearing and Hearing Disorders: Research and Diagnostics.
Credit(s): PDHs: 5.0, ASHA CEUs*: 0.5
Summary: Pedagogical practices in communication sciences and disorders have grown thanks in part to innovative techniques from other fields. The articles in this activity each present models that can be successfully incorporated into our discipline. Slavych describes models of backward course design—course development that starts by focusing on learning outcomes before considering content or teaching methods. Squires and Squires introduce best–worst scaling, a method for examining group preferences, and reported on how it can inform admissions practices. Speights Atkins et al. describe models of mentoring undergraduate research experiences and their applications in two communication sciences and disorders research labs. Finally, Perryman et al. examine the effects of a mixed-reality simulation in which actors playing parents interacted through computer avatars with undergraduate students carrying out clinical procedures.
Presenter(s): Stephanie Feller; Akbar Razvi, AuD
Credit(s): PDHs: 0.5, ASHA CEUs*: 0.05
Summary: This session covers a unique case of bilateral temporal bone fractures: one that spares the otic capsule yet presents with a large sensorineural component. The speaker describes the anatomy and physiology of the temporal bone to provide background information about potential structures that can be damaged in a fracture as well as explain the varying etiologies of temporal bone fractures (TBF). In addition, this session discusses possible outcomes from a TBF in relation to hearing loss and facial nerve function and potential implications for treatment, including cochlear implantation.
Presenter(s): Dave Fabry, PhD
Credit(s): PDHs: 0.5, ASHA CEUs*: 0.05
Summary: There is no question that emerging technologies such as embedded sensors and artificial intelligence are changing the hearing health landscape. This session will look ahead to the coming decade and explore innovations in hearing health care technology, strategy, and service. The speaker will discuss practical ways to leverage these innovations to be successful in today’s and tomorrow’s dynamic market landscape.
Presenter(s): Meaghan Reed, AuD, CCC-A
Credit(s): PDHs: 0.5, ASHA CEUs*: 0.05
Summary: It is unclear how over-the-counter hearing devices will impact our patients and our practices in the coming years. This session will discuss practical strategies for incorporating OTC devices, deciding when to offer alternative rehabilitation options to patients, and offering a wider variety of solutions to meet our patients’ needs.
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