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Browsing by Subject "testing"

Now showing 1 - 8 of 8
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    Automatic Modeling and Simulation of Networked Components
    (2011) Bruce, Nathaniel William; Koskie, Sarah; Chen, Yaobin; Li, Lingxi
    Testing and verification are essential to safe and consistent products. Simulation is a widely accepted method used for verification and testing of distributed components. Generally, one of the major hurdles in using simulation is the development of detailed and accurate models. Since there are time constraints on projects, fast and effective methods of simulation model creation emerge as essential for testing. This thesis proposes to solve these issues by presenting a method to automatically generate a simulation model and run a random walk simulation using that model. The method is automated so that a modeler spends as little time as possible creating a simulation model and the errors normally associated with manual modeling are eliminated. The simulation is automated to allow a human to focus attention on the device that should be tested. The communications transactions between two nodes on a network are recorded as a trace file. This trace file is used to automatically generate a finite state machine model. The model can be adjusted by a designer to add missing information and then simulated in real-time using a software-in-the-loop approach. The innovations in this thesis include adaptation of a synthesis method for use in simulation, introduction of a random simulation method, and introduction of a practical evaluation method for two finite state machines. Test results indicate that nodes can be adequately replaced by models generated automatically by these methods. In addition, model construction time is reduced when comparing to the from scratch model creation method.
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    Convergent and discriminant validity of the ImPACT with traditional neuropsychological measures
    (Taylor & Francis, 2018) Thoma, Robert J.; Cook, Julia A.; McGrew, Christopher; King, John H.; Pulsipher, Dalin T.; Yeo, Ronald A.; Monnig, Mollie A.; Mayer, Andrew; Pommy, Jessica; Campbell, Richard A.; Surgery, School of Medicine
    Neuropsychological assessment of cognitive sequelae secondary to sports concussion is limited by lengthy administration times and lack of readily available neuropsychologists. Brief computerized test batteries are now under development to address this, but the validity of these measures is not yet established. The validity of one such computerized test battery, the Immediate Post-Concussion Assessment and Cognitive Testing (ImPACT), was administered to 93 healthy NCAA Division I athletes, aged 18–24, along with a battery of traditional, well-described neuropsychological tests. Convergent and discriminant validity between the ImPACT and traditional measures was investigated using multitrait-multimethod matrix (MTMM) analysis. As an example, the ImPACT Visual Motor Speed composite demonstrated reasonably good convergent validity secondary to moderate correlations with traditional measures of processing speed, but it demonstrated relatively poor discriminant validity as it significantly correlated with the Reaction Time composite score. MTMM results were variable across ImPACT composites and data for each are presented. The ImPACT composite’s validity was further investigated using exploratory factor analysis (EFA). Six principal components were termed processing speed, visual memory, verbal memory, attention & working memory, and verbal fluency, based upon traditional test loadings, and a sixth loaded only on the ImPACT Reaction Time composite. EFA indicated content validity of moderate strength for the Visual Motor Speed and Visual Memory composites, but revealed problems with specificity for the other composites. Based upon the present findings, validity problems render the interpretability of the ImPACT composites somewhat questionable, and more research is necessary prior to using the ImPACT for assessment of clinical populations.
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    Data Collection and Processing Methods for the Evaluation of Vehicle Road Departure Detection Systems
    (IEEE, 2018) Shen, Dan; Yi, Qiang; Li, Lingxi; Chien, Stanley; Chen, Yaobin; Sherony, Rini; Mechanical and Energy Engineering, School of Engineering and Technology
    Road departure detection systems (RDDSs) for avoiding/mitigating road departure crashes have been developed and included on some production vehicles in recent years. In order to support and provide a standardized and objective performance evaluation of RDDSs, this paper describes the development of the data acquisition and data post-processing systems for testing RDDSs. Seven parameters are used to describe road departure test scenarios. The overall structure and specific components of data collection system and data post-processing system for evaluating vehicle RDDSs is devised and presented. Experimental results showed sensing system and data post-processing system could capture all needed signals and display vehicle motion profile from the testing vehicle accurately. Test track testing under different scenarios demonstrates the effective operations of the proposed data collection system.
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    Human Epidermal Growth Factor Receptor 2 Testing in Breast Cancer: American Society of Clinical Oncology/College of American Pathologists Clinical Practice Guideline Focused Update
    (ASCO, 2018) Wolff, Antonio C.; Hammond, M. Elizabeth Hale; Allison, Kimberly H.; Harvey, Brittany E.; Mangu, Pamela B.; Bartlett, John M. S.; Bilous, Michael; Ellis, Ian O.; Fitzgibbons, Patrick; Hanna, Wedad; Jenkins, Robert B.; Press, Michael F.; Spears, Patricia A.; Vance, Gail H.; Viale, Giuseppe; McShane, Lisa M.; Dowsett, Mitchell; Medical and Molecular Genetics, School of Medicine
    Purpose To update key recommendations of the American Society of Clinical Oncology/College of American Pathologists human epidermal growth factor receptor 2 (HER2) testing in breast cancer guideline. Methods Based on the signals approach, an Expert Panel reviewed published literature and research survey results on the observed frequency of less common in situ hybridization (ISH) patterns to update the recommendations. Recommendations Two recommendations addressed via correspondence in 2015 are included. First, immunohistochemistry (IHC) 2+ is defined as invasive breast cancer with weak to moderate complete membrane staining observed in > 10% of tumor cells. Second, if the initial HER2 test result in a core needle biopsy specimen of a primary breast cancer is negative, a new HER2 test may (not “must”) be ordered on the excision specimen based on specific clinical criteria. The HER2 testing algorithm for breast cancer is updated to address the recommended work-up for less common clinical scenarios (approximately 5% of cases) observed when using a dual-probe ISH assay. These scenarios are described as ISH group 2 (HER2/chromosome enumeration probe 17 [CEP17] ratio ≥ 2.0; average HER2 copy number < 4.0 signals per cell), ISH group 3 (HER2/CEP17 ratio < 2.0; average HER2 copy number ≥ 6.0 signals per cell), and ISH group 4 (HER2/CEP17 ratio < 2.0; average HER2 copy number ≥ 4.0 and < 6.0 signals per cell). The diagnostic approach includes more rigorous interpretation criteria for ISH and requires concomitant IHC review for dual-probe ISH groups 2 to 4 to arrive at the most accurate HER2 status designation (positive or negative) based on combined interpretation of the ISH and IHC assays. The Expert Panel recommends that laboratories using single-probe ISH assays include concomitant IHC review as part of the interpretation of all single-probe ISH assay results.
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    Indianapolis Motor Speedway Display Project
    (2019-12-11) Shi, Charleston; Ibanez, Cristobal; Freije, Eliabeth; Kitchen, Jeff
    The Indianapolis Motor Speedway Museum and Xtrac want an interactive display of a racecar transmission and allows people of all ages to witness learn. Xtrac has commissioned IUPUI engineers to create a control box that correlates to other functions of a racecar and then correspond said box to a steering wheel, with additional features specified by the sponsor. Since a transmission has mostly a mechanical aspect, Mechanical Engineering Technology (MET) students are paired with a team of EET/CPET students. Any mounting and specification requirements are a part of the MET students’ project requirements. Details regarding electrical power, circuit design, and electromechanical integration will be generated by the EET students.
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    Overcoming Operator-Generated False-Negative Results in SARS-CoV-2 Testing—Reply
    (AMA, 2021) Higgins, Thomas S.; Wu, Arthur W.; Ting, Jonathan Y.; Otolaryngology -- Head and Neck Surgery, School of Medicine
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    Testing our DSpace DOI tool
    (2021) Odell, Jere
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    Young Adults' COVID-19 Testing Intentions: The Role of Health Beliefs and Anticipated Regret
    (Elsevier, 2021-03) Ravert, Russell D.; Fu, Linda Y.; Zimet, Gregory D.; Pediatrics, School of Medicine
    Purpose Young adults are at high risk for severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) infection and transmission due to their social behaviors. The purpose of this study was to determine their attitudes toward coronavirus disease 2019 (COVID-19) testing, an important approach for minimizing infection and transmission. Methods One hundred seventy eight US individuals aged 19–25 years completed an online survey measuring COVID-19 health beliefs and testing intentions. Multivariable logistic regression evaluated the association of heath belief measures (perceived COVID-19 susceptibility, COVID-19 severity, barriers and benefits to testing, and social concerns) with testing intentions. Results Most respondents (86.0%) intended to accept a COVID-19 test if recommended by a health professional. High social concern and low perceived obstacles were associated with intent to get tested. Conclusions In this sample, most young adults intended to accept COVID-19 testing. Health beliefs predicted testing intention and point to possible intervention approaches to increase willingness to accept COVID-19 testing.
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