Olivia C. Coiado
University of Illinois at Urbana–Champaign
20 Papers
23 Citations
Olivia C. Coiado is an academic researcher from University of Illinois at Urbana–Champaign. The author has contributed to research in topics: Medicine & Curriculum. The author has an hindex of 4, co-authored 15 publications. Previous affiliations of Olivia C. Coiado include State University of Campinas & Illinois College.
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Papers
COVID-19 vaccine and booster hesitation around the world: A literature review
Aashka Shah,Olivia C. Coiado +1 more
TL;DR: In this paper , a literature review aimed to analyze the acceptance of the COVID-19 vaccine among different populations throughout the world, finding that the most common reasons for vaccine hesitancy differ by country and acceptance is affected by misinformation, political circumstances, and cultural values.
How COVID-19 Transformed Problem-Based Learning at Carle Illinois College of Medicine.
TL;DR: In this paper, the authors compare the pros and cons of online versus in-person Problem Based Learning (PBL) sessions and find that the overall student performance with respect to generating and researching learning issues was similar between online and in person PBL sessions.
Introducing First-Year Medical Students to Product Innovation and Entrepreneurship.
Olivia C. Coiado,Kashif A. Ahmad +1 more
TL;DR: The Carle Illinois College of Medicine is creating an innovative model for medical education that integrates engineering principles into an active learning curriculum.
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Ultrasound-induced heart rate decrease: role of the vagus nerve
TL;DR: The vagotomy group showed similar ultrasound-induced cardiac effects compared with the non-vagotomy group, suggesting that the vagus nerve is not influenced by the ultrasound exposure procedures, which are suggestive for an alternative cardiac pacing capability.
The role of the duty factor in ultrasound-mediated cardiac stimulation
TL;DR: Outcomes suggest a possible DF threshold for cardiac pacing in rats exposed transthoracically to 3.5-MHz ultrasonic pulses of 2.0-MPa peak rarefactional pressure amplitude, variable DF, and variable pulse repetition frequency.
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