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Stroke is a leading cause of disability with varying effects across stroke survivors necessitating comprehensive approaches to rehabilitation. Interactive neurorehabilitation (INR) systems represent promising technological solutions that can provide an array of sensing, feedback and analysis tools which hold the potential to maximize clinical therapy as well as extend therapy

Stroke is a leading cause of disability with varying effects across stroke survivors necessitating comprehensive approaches to rehabilitation. Interactive neurorehabilitation (INR) systems represent promising technological solutions that can provide an array of sensing, feedback and analysis tools which hold the potential to maximize clinical therapy as well as extend therapy to the home. Currently, there are a variety of approaches to INR design, which coupled with minimal large-scale clinical data, has led to a lack of cohesion in INR design. INR design presents an inherently complex space as these systems have multiple users including stroke survivors, therapists and designers, each with their own user experience needs. This dissertation proposes that comprehensive INR design, which can address this complex user space, requires and benefits from the application of interdisciplinary research that spans motor learning and interactive learning. A methodology for integrated and iterative design approaches to INR task experience, assessment, hardware, software and interactive training protocol design is proposed within the comprehensive example of design and implementation of a mixed reality rehabilitation system for minimally supervised environments. This system was tested with eight stroke survivors who showed promising results in both functional and movement quality improvement. The results of testing the system with stroke survivors as well as observing user experiences will be presented along with suggested improvements to the proposed design methodology. This integrative design methodology is proposed to have benefit for not only comprehensive INR design but also complex interactive system design in general.
ContributorsBaran, Michael (Author) / Rikakis, Thanassis (Thesis advisor) / Olson, Loren (Thesis advisor) / Wolf, Steven L. (Committee member) / Ingalls, Todd (Committee member) / Arizona State University (Publisher)
Created2014
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ABSTRACT



This Master's Thesis gives positive testament to the idea that high school students are able to develop creative choice making skills. During a yearlong study of a beginning foundational visual arts class, a pretest and a posttest self-portrait performance assessment was given to 34 students and scored

ABSTRACT



This Master's Thesis gives positive testament to the idea that high school students are able to develop creative choice making skills. During a yearlong study of a beginning foundational visual arts class, a pretest and a posttest self-portrait performance assessment was given to 34 students and scored by three visual art teachers from the same school. The performance results were then analyzed to ascertain evidence of the evolution of an idea and the logistic validity of assessing growth of a student's creative choice making process. Construction of an appropriate rubric to measure student growth was imperative in the process of training visual art teachers for scoring. Findings show overwhelming evidence that students’ creative choice making abilities were developed in the three weeks of instruction between pretest and posttest. Findings also suggest that with appropriate training, groups of visual art teachers can be trained to score student art performance assessments accurately and validly within the context of state required testing.
ContributorsHeineman, Richard Lee (Author) / Young, Benard (Thesis advisor) / Erickson, Mary (Committee member) / Stokrocki, Mary (Committee member) / Arizona State University (Publisher)
Created2015