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This report is the consolidated work of an interdisciplinary course project in CEE494/598, CON598, and SOS598, Urban Infrastructure Anatomy and Sustainable Development. In Fall 2012, the course at Arizona State University used sustainability research frameworks and life-cycle assessment methods to evaluate the comprehensive benefits and costs when transit-oriented development is

This report is the consolidated work of an interdisciplinary course project in CEE494/598, CON598, and SOS598, Urban Infrastructure Anatomy and Sustainable Development. In Fall 2012, the course at Arizona State University used sustainability research frameworks and life-cycle assessment methods to evaluate the comprehensive benefits and costs when transit-oriented development is infilled along the proposed light rail transit line expansion. In each case, and in every variation of possible future scenarios, there were distinct life-cycle benefits from both developing in more dense urban structures and reducing automobile travel in the process.

Results from the report are superseded by our publication in Environmental Science and Technology.

Created2012-12
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Background: Around 40-50% of people with Parkinson’s disease will develop anxiety or depression, the number one factors affecting their quality of life. Cognitive behavioral therapy is the most well-established intervention for anxiety and depression in people with Parkinson’s disease. Purpose: The project addresses a southwestern Parkinson-specific community center’s need for

Background: Around 40-50% of people with Parkinson’s disease will develop anxiety or depression, the number one factors affecting their quality of life. Cognitive behavioral therapy is the most well-established intervention for anxiety and depression in people with Parkinson’s disease. Purpose: The project addresses a southwestern Parkinson-specific community center’s need for mental health by incorporating a cognitive behavioral therapy-based mental health program, guided by the Cognitive Behavioral Model. Methods: Recruitment at the center took place during a virtual weekly meeting with inclusion criteria of a Parkinson’s disease diagnosis, 50 years or older, and English speaking. A four-week, virtual, nurse-led cognitive behavioral therapy-based mental health program was created to examine the effects on anxiety, depression, and quality of life in ten people with Parkinson’s disease. Pre-and post-intervention Geriatric Anxiety Inventory (Cronbach’s alpha, 0.91), Hamilton Depression Rating Scale (Cronbach’s alpha, 0.87), and Parkinson’s Disease Questionnaires (Cronbach’s alpha, 0.84) were used to assess anxiety, depression, and quality of life. Results: Using a Two-tailed paired samples t-Test, mean values and p-value were calculated with alpha value of 0.05, t(39) = -0.10, p = .922 for anxiety, Alpha value of 0.05, t(16)=3.69, p=0.002 for depression, Alpha value of 0.05, t(38)=5.07, p<0.001 for quality of life, and Alpha value of 0.05, t(5)=4.54, p=0.006 for emotional wellbeing. Conclusion: A cognitive behavioral therapy-based mental health program at a Parkinson-specific center has the potential to improve quality of life and decrease depression in people with Parkinson’s disease. Implications: Research with larger sample sizes, longer duration of therapy, and in-person format would be beneficial.
Created2021-04-28
Description

Invited paper presented at the Workshop on Aspects of Social and Socio-Environmental Dynamics, Arizona State University, January 2007.

ContributorsSarjoughian, Hessam S. (Author) / Barton, C. Michael (Author)
Created2007
Description

Hybrid system models - those devised from two or more disparate sub-system models - provide a number of benefits in terms of conceptualization, development, and assessment of dynamical systems. The decomposition approach helps to formulate complex interactions that are otherwise difficult or impractical to express. However, hybrid model development and

Hybrid system models - those devised from two or more disparate sub-system models - provide a number of benefits in terms of conceptualization, development, and assessment of dynamical systems. The decomposition approach helps to formulate complex interactions that are otherwise difficult or impractical to express. However, hybrid model development and usage can introduce complexity that emerges from the composition itself.

To improve assurance of model correctness, sub-systems using disparate modeling formalisms must be integrated above and beyond just the data and control level; their composition must have model specification and simulation execution aspects as well. Poly-formalism composition is one approach to composing models in this manner.

This dissertation describes a poly-formalism composition between a Discrete EVent System specification (DEVS) model and a Cellular Automata (CA) model types. These model specifications have been chosen for their broad applicability in important and emerging domains. An agent-environment domain exemplifies the composition approach. The inherent spatial relations within a CA make it well-suited for environmental representations. Similarly, the component-based nature of agents fits well within the hierarchical component structure of DEVS.

This composition employs the use of a third model, called an interaction model, that includes methods for integrating the two model types at a formalism level, at a systems architecture level, and at a model execution level. A prototype framework using DEVS for the agent model and GRASS for the environment has been developed and is described. Furthermore, this dissertation explains how the concepts of this composition approach are being applied to a real-world research project.

This dissertation expands the tool set modelers in computer science and other disciplines have in order to build hybrid system models, and provides an interaction model for an on-going research project. The concepts and models presented in this dissertation demonstrate the feasibility of composition between discrete-event agents and discrete-time cellular automata. Furthermore, it provides concepts and models that may be applied directly, or used by a modeler to devise compositions for other research efforts.

ContributorsMayer, Gary R. (Author)
Created2009