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- Member of: Metis Center for Infrastructure and Sustainable Engineering
- Member of: Master of Healthcare Innovation Capstone Collection
- Member of: Learning Sciences Applied Projects

Working toward changing the language and leadership of healthcare to improve patient responsibility and decrease preventable disease.

The value of the RNS4PTS website is to provide transparency by supplying information that those who work in the medical field have to those who do not.

Vision Statement: Our patients deserve the best continuity of care possible. With that said, our nurses should effectively communicate patient information with our physicians in order to ensure the best treatment for acute condition changes in order to prevent hospital readmissions.
This presentation explains the role of skilled nursing facilities in the reduction of hospital readmissions.

"In attempts to reduce nosocomial infections, the focus of PPE is shifted to include patient protection.
This innovation project will help lead the healthcare organization to better health deliver and better service because it will prevent transmission of nosocomial infections between patients via hospital staff. Patients with HAI’s tend to have a longer duration hospital stay as well as more costs. Likewise, current healthcare reform restricts reimbursements for treatments associated with nosocomial infections. By minimizing these costly infections, the healthcare organization will be able to realize a greater profit."

Current educational systems are trying to transform their practices with those that align with critical thinking skills, collaboration amongst students and allowing students to feel motivated and engaged in learning. Within a special education classroom at a Title I high school located in South Tempe, Arizona, a design was innovated in order to attempt to enhance this learning environment to foster students’ ability to build intrinsic motivation and engaged within their classroom through collaboration and the autonomy supported by the teacher and this innovation. Throughout this paper, you will be able to see the contextual analysis, theoretical inspirations, design constructs and analysis of the implementation within two separate class periods.

To address the dearth of knowledge about person-based and trip-level exposure, we developed the Icarus model. Icarus uses mesoscale traffic model—activity-based model—to analyze the heat exposure of regions of interest at an individual level. The goal with Icarus was to design accurate, granular models of population and temperature behavior for a target region, which could be transformed into a heat exposure model by means of simulation and spatial-temporal joining. By combining and implementing the most robust software and data available, Icarus was able to capture person-based exposure with unparalleled detail. Here we describe the model methodology. We use the metropolitan region of Phoenix, Arizona, USA to carry out a case study using Icarus.
