Publications by authors named "C M Swanson"

An increased need to support behavioral health concerns such as anxiety and depression was identified in both healthcare employees and patients. To address this gap, a multistate Midwestern healthcare system developed a course to provide education and training on behavioral health for employees in clinical and nonclinical roles. Over 650 participants have attended the course.

View Article and Find Full Text PDF

Objectives: To assess the effective and organ/tissue equivalent radiation doses of different scout projection protocols in four CBCT units.

Methods: Optically stimulated luminescence dosimeters (OSLD) were placed in reference anatomical locations in the head and neck segments of an anthropomorphic phantom representing an average adult male. Ten repeated exposures were obtained from each of the twelve scout projections studied, acquired from four maxillofacial cone beam computed tomography (CBCT) units (Midmark EIOS, 3D Accuitomo F170, Veraviewepocs 3D R100, and Veraview X800).

View Article and Find Full Text PDF

Background: Among older adults living with obesity, intentional weight loss (WL) improves prognosis of many comorbidities. However, concomitant decline in bone mineral density (BMD) limits overall benefit of WL by increasing osteoporotic fracture risk. Identification of intervention strategies to maximize body fat loss, while minimizing harm to the musculoskeletal system, is an important area of clinical research.

View Article and Find Full Text PDF

Purpose Of Review: Preparing for pandemics requires a degree of interdisciplinary work that is challenging under the current paradigm. This review summarizes the challenges faced by the field of pandemic science and proposes how to address them.

Recent Findings: The structure of current siloed systems of research organizations hinders effective interdisciplinary pandemic research.

View Article and Find Full Text PDF

The task of adapting enzymes for specific applications is often hampered by our incomplete ability to tune and tailor catalytic functions, particularly when seeking increased activity. Here, we develop and demonstrate a rational approach to address this challenge, applied to ketol-acid reductoisomerase (KARI), which has uses in industrial-scale isobutanol production. While traditional structure-based computational enzyme redesign strategies typically focus on the enzyme-bound ground state (GS) and transition state (TS), we postulated that additionally treating the underlying dynamics of complete turnover events that connect and pass through both states could further elucidate the structural properties affecting catalysis and help identify mutations that lead to increased catalytic activity.

View Article and Find Full Text PDF