ASHA Learning Pass

Log in and check out the Dashboard to view featured courses.

Filter Courses By
Experience
Instructional Level
Presenter(s): Adria L Thompson, MA, CCC-SLP; Steven Barbieri,
Credit(s): PDHs: 1.0, ASHA CEUs*: 0.1
Summary: In this course, enter into a conversation between an SLP and an individual living with dementia about the experience of being on both sides of the provision of speech services. Since individuals living with communication disorders are the true experts, this session will allow firsthand insight into effective interventions, challenges in navigating the medical system, and compensatory strategies that have supported self-advocacy. This presentation is an invitation to deepen your understanding, empathy, and skills to elevate the care and support you provide to your patients with dementia.
Presenter(s): Pamela E Souza, PhD, CCC-A
Credit(s): PDHs: 1.0, ASHA CEUs*: 0.1
Summary: According to recent research, an individual's success with using a hearing aid is connected to their cognitive ability. This course reviews the evidence and explains how to apply it to clinical decision-making to improve outcomes for each individual patient.
Presenter(s): Sarah A Cust, CCC-SLP
Credit(s): PDHs: 0.5, ASHA CEUs*: 0.05
Summary: This presentation addresses the underlying neuropathology of ataxia, dysarthria-specific assessment and treatment for degenerative ataxias, and the importance of cognitive assessment and treatment. The presenter highlights recent advances in intervention, including noninvasive brain stimulation.
Presenter(s): Rene L Utianski, PhD, CCC-SLP, BC-ANCDS; Kristie A Spencer, PhD, CCC-SLP
Credit(s): PDHs: 1.0, ASHA CEUs*: 0.1
Summary: Motor speech disorders occur secondary to a wide variety of progressive neurological disorders. This course discusses strategies for the speaker, listener, and environment that clinicians can consider for managing progressive motor speech disorders. Presenters discuss management strategies in the context of concomitant decline of cognitive-linguistic and motoric function from neurodegenerative processes.