Open Access. Powered by Scholars. Published by Universities.®
- Discipline
-
- Biomedical Engineering and Bioengineering (714)
- Electrical and Computer Engineering (505)
- Civil and Environmental Engineering (440)
- Computer Engineering (412)
- Civil Engineering (266)
-
- Mechanical Engineering (254)
- Medicine and Health Sciences (36)
- Environmental Engineering (27)
- Physical Sciences and Mathematics (27)
- Biomedical Devices and Instrumentation (26)
- Electrical and Electronics (17)
- Signal Processing (16)
- Chemical Engineering (12)
- Bioelectrical and Neuroengineering (11)
- Computer Sciences (10)
- Physical Therapy (10)
- Rehabilitation and Therapy (10)
- Life Sciences (9)
- Bioimaging and Biomedical Optics (8)
- Power and Energy (8)
- Structural Engineering (8)
- Biomechanical Engineering (7)
- Communication Sciences and Disorders (7)
- Materials Science and Engineering (7)
- Medical Specialties (7)
- Construction Engineering and Management (6)
- Energy Systems (6)
- Electronic Devices and Semiconductor Manufacturing (5)
- Engineering Science and Materials (5)
- Keyword
-
- Stroke (33)
- Gait (24)
- FMRI (22)
- Rehabilitation (22)
- MEMS (19)
-
- Optimization (19)
- Biomechanics (18)
- Kinematics (18)
- Torque (16)
- Biosolids (14)
- Finite element analysis (14)
- Motor control (14)
- Anaerobic digestion (13)
- Concrete (13)
- Micro-CT (13)
- Rotors (13)
- Spinal cord injury (13)
- Computed tomography (12)
- Locomotion (12)
- Proprioception (12)
- Combustion (11)
- Design optimization (11)
- Hemodynamics (11)
- Induction motors (11)
- Kinetics (11)
- Mitochondria (11)
- Modeling (11)
- Radiation (11)
- Reliability (11)
- Wastewater (11)
- Publication
-
- Biomedical Engineering Faculty Research and Publications (595)
- Electrical and Computer Engineering Faculty Research and Publications (392)
- Master's Theses (2009 -) (336)
- Civil and Environmental Engineering Faculty Research and Publications (319)
- Dissertations (1934 -) (162)
-
- Mechanical Engineering Faculty Research and Publications (160)
- Bachelors’ Theses (46)
- Transportation Reports with the Wisconsin Department of Transportation (15)
- Transportation Research Center: Public Perception of Midwest Pavements (14)
- Dr. Dolittle Project: A Framework for Classification and Understanding of Animal Vocalizations (11)
- Speech Pathology and Audiology Faculty Research and Publications (5)
- Transportation Research Center: Noise & Texture Studies (5)
- Physical Therapy Faculty Research and Publications (4)
- Transportation Research Center: Marquette Interchange Instrumentation (4)
- Transportation Research Center: Subgrade Deflection Studies (3)
- Exercise Science Faculty Research and Publications (2)
- Master's Essays (1922 - ) (2)
- Master's Theses (1922-2009) Access restricted to Marquette Campus (2)
- Transportation Research Center: Accident Analysis of Ice Control Operations (2)
- Biological Sciences Faculty Research and Publications (1)
- Biomedical Sciences Faculty Research and Publications (1)
- Center for Teaching and Learning Technical Reports (1)
- Chemistry Faculty Research and Publications (1)
- Marketing Faculty Research and Publications (1)
- Psychology Faculty Research and Publications (1)
- Transportation Research Center: Feasible Pavement Design Alternatives (1)
- Publication Type
- File Type
Articles 301 - 330 of 2086
Full-Text Articles in Engineering
Probabilistic Prediction Model For Rc Bond Failure Mode, Ahmad Soraghi, Qindan Huang
Probabilistic Prediction Model For Rc Bond Failure Mode, Ahmad Soraghi, Qindan Huang
Civil and Environmental Engineering Faculty Research and Publications
Adequate rebar-concrete bonding is crucial to ensure the reliable performance of reinforced concrete (RC) structures. Many factors such as the concrete properties, concrete cover depth, transverse reinforcement, and the presence of corrosion will affect the bond behavior, and consequently, the structural performance. While many prior studies have focused on the influence of the aforementioned factors on the bond strength, the impact of these factors on the bond failure mode has not been thoroughly investigated. A probabilistic bond failure mode prediction model that considers various influencing factors including loading type and corrosion is developed in this study. This study uses the …
Solid-State Circuit Breaker Component Simulation, Matthew Hughes
Solid-State Circuit Breaker Component Simulation, Matthew Hughes
Master's Theses (2009 -)
The landscape of direct current (DC) solid-state circuit breakers (SSCBs) isgrowing and so too is the choice of primary components. Early on in the development of electrical technology, DC electrical distribution networks were handicapped by short transmission distances, poor network configurations, and overall lowered efficiency. These issues arose out of the relatively lower voltage transmission capabilities, which do not exist in the modern day of semiconductors. There now exists a wide range of devices capable of withstanding voltage levels conducive to electrical transmission; though steady state efficiency of these devices remains a concern. Choosing primary components out of the growing …
A Dynamic System Testbed To Facilitate Controller And Estimator Designs And Its Application To Neoclassical Controllers, Justin James Kennah
A Dynamic System Testbed To Facilitate Controller And Estimator Designs And Its Application To Neoclassical Controllers, Justin James Kennah
Master's Theses (2009 -)
This thesis proposes a testbed capable of validating experimental controller designs.Because it is undesirable to implement unvalidated controller designs on physical hardware, the need for an effective testbed arises. For the testbed to be useful, it should be easy to use and contain all the hardware and software necessary to implement a controller and analyze its response. To accomplish these goals, a testbed is created by joining the National Instruments ELVIS III board with the Quanser Controls Board. Three controllers are implemented to evaluate the usefulness of the testbed. The controllers are designed using the neoclassical design technique. The neoclassical …
Near-Nozzle Holographic Imaging Of Dispersion-Induced Reductions In Combustible Dust Particle Size Distributions, Tyler James Reaker
Near-Nozzle Holographic Imaging Of Dispersion-Induced Reductions In Combustible Dust Particle Size Distributions, Tyler James Reaker
Master's Theses (2009 -)
Dust explosibility data are a critical input to the design of equipment and strategies for reducing the risk of a combustible dust deflagration or explosion. These data, which include minimum explosible concentrations, deflagration indices, and explosion overpressures, are obtained using formally accepted, standard techniques, and are known to be sensitive to the particle size characteristics of the dust being evaluated. Published literature demonstrates that the standard techniques can alter the particle size distribution during dispersion, making interpretation of the explosibility data challenging because the particle characteristics are altered from their original, raw state. Digital in-line holography (DIH) presents a novel …
Cfd Modeling Of Aerial Dispersion Of Pollutants In Urban Environments, Alec Tauer
Cfd Modeling Of Aerial Dispersion Of Pollutants In Urban Environments, Alec Tauer
Master's Theses (2009 -)
Population growth and urbanization across the globe is contributing to anincrease in air pollution emissions. Because air pollution can negatively impact public health there is a desire to model the aerial dispersion of the pollutants in urban environments. Computational Fluid Dynamics (CFD) is becoming an increasingly common tool used to provide high spatial and temporal resolution of the wind flow and pollutant transport in urban environments. In the present study, CFD is utilized to model the aerial pollutant dispersion in three domains: a flat field, an idealized urban environment, and a real urban environment neighboring the Jones’ Island Water Reclamation …
Diffuse Reflectance Spectroscopy For The Evaluation Of Mid-Palatal Suture Maturation After Expansion, Binhuan Yuan
Diffuse Reflectance Spectroscopy For The Evaluation Of Mid-Palatal Suture Maturation After Expansion, Binhuan Yuan
Master's Theses (2009 -)
Diffuse reflectance spectroscopy (DRS) is a technique for characterizing the optical properties of biological tissues and has been extensively studied for diagnosis and therapeutic monitoring of various diseases. This thesis investigates the potential use of DRS for the evaluation of mid-palatal suture maturation after expansion. The most common evaluation technique for palatal expansion is Computed Tomography (CT). The major issue with CT is that during serial radiological scanning, patients are repeatedly exposed to ionizing radiation. DRS is a non-invasive, non-ionizing method which can be used to quantify the tissue optical properties in the visible wavelength in vivo. This study demonstrates …
Accuracy And Computational Cost Assessment Of Radiation Solvers For Combustion Simulations, Chloe David
Accuracy And Computational Cost Assessment Of Radiation Solvers For Combustion Simulations, Chloe David
Master's Theses (2009 -)
High-fidelity combustion simulations necessitate the accurate and efficient calculation of radiative heat transfer. A successful radiation calculation requires the use of a spectral model, which describes the variation of radiative properties across the entire electromagnetic spectrum, and a radiative transfer equation (RTE) solver, which solves the governing equation for radiation transport. Three primary categories of RTE solvers are the discrete ordinates method (DOM), the spherical harmonics method (SHM), and the photon Monte Carlo (PMC) method. The accuracy and computational cost of each type of RTE solver is compared in detail in this work. The PMC RTE solver is considered the …
The Development And Implementation Of A Virtual Reality-Based Radiation Therapy Education And Anxiety Mitigation Program, Sophia Shanahan
The Development And Implementation Of A Virtual Reality-Based Radiation Therapy Education And Anxiety Mitigation Program, Sophia Shanahan
Master's Theses (2009 -)
Radiation therapy (RT) is commonly used in the treatment of breast cancer. According to the literature, RT is an unknown to many patients and can be a source of anxiety and fear. Towards that end, a virtual reality (VR) education program was developed that leverages head-mounted display technology to virtually place a patient in immersive representations of a CT simulation suite, dosimetry room, and treatment room that mimic the actual clinical spaces associated with RT. A virtual model of a radiation oncologist “meets” the patient in each environment and provides verbal narration. In the treatment environment, the patient is able …
The Design Of Dynamic Probabilistic Caching With Time-Varying Content Popularity, Jie Gao, Shan Zhang, Lian Zhao, Xuemin Shen
The Design Of Dynamic Probabilistic Caching With Time-Varying Content Popularity, Jie Gao, Shan Zhang, Lian Zhao, Xuemin Shen
Electrical and Computer Engineering Faculty Research and Publications
In this paper, we design dynamic probabilistic caching for the scenario when the instantaneous content popularity may vary with time while it is possible to predict the average content popularity over a time window. Based on the average content popularity, optimal content caching probabilities can be found, e.g., from solving optimization problems, and existing results in the literature can implement the optimal caching probabilities via static content placement. The objective of this work is to design dynamic probabilistic caching that: i) converge (in distribution) to the optimal content caching probabilities under time-invariant content popularity, and ii) adapt to the time-varying …
Measurements And Analysis Of Propagation Channels In Vehicle-To-Infrastructure Scenarios, Wei Li, Xiaoya Hu, Jie Gao, Lian Zhao, Xuemin Shen
Measurements And Analysis Of Propagation Channels In Vehicle-To-Infrastructure Scenarios, Wei Li, Xiaoya Hu, Jie Gao, Lian Zhao, Xuemin Shen
Electrical and Computer Engineering Faculty Research and Publications
In this paper, we present measurements and analysis of propagation channels in vehicle-to-infrastructure (V2I) scenarios, which are the basis of designing vehicular communication systems. Firstly, we propose a deterministic geometry-based method to classify V2I links into three types, i.e., line-of-sight beneath (LOS-B), non-LOS (NLOS), and line-of-sight above (LOS-A), based on the environmental features, where roadside row of trees constitute the main obstacles. Secondly, for each link, we investigate the large-scale fading effect on V2I channels, including the path loss exponent and shadowing components. Subsequently, we validate the empirical path loss model using extensive measurements and two classical channel models. The …
In Situ Tem Characterization Of Microstructure Evolution And Mechanical Behavior Of The 3d-Printed Inconel 718 Exposed To High Temperature, Supriya Koul, Le Zhou, Omar Ahmed, Yongho Sohn, Tengfei Jiang, Akihiro Kushima
In Situ Tem Characterization Of Microstructure Evolution And Mechanical Behavior Of The 3d-Printed Inconel 718 Exposed To High Temperature, Supriya Koul, Le Zhou, Omar Ahmed, Yongho Sohn, Tengfei Jiang, Akihiro Kushima
Mechanical Engineering Faculty Research and Publications
This in situ transmission electron microscopy work presents a nanoscale characterization of the microstructural evolution in 3D-printed Inconel 718 (IN718) while exposed to elevated temperature and an associated change in the mechanical property under tensile loading. Here, we utilized a specially designed specimen shape that enables tensile testing of nano-sized thin films without off-plane deformations. Additionally, it allows a seamless transition from the in situ heating to tensile experiment using the same specimen, which enables a direct correlation of the microstructure and the mechanical property of the sample. The method was successfully used to observe the residual stress relaxation and …
Composition-Dependent Solidification Cracking Of Aluminum-Silicon Alloys During Laser Powder Bed Fusion, Holden Hyer, Le Zhou, Abhishek Mehta, Sharon Park, Thinh Huynh, Shutao Song, Yuanli Bai, Kyu Cho, Brandon Mcwilliams, Yongho Sohn
Composition-Dependent Solidification Cracking Of Aluminum-Silicon Alloys During Laser Powder Bed Fusion, Holden Hyer, Le Zhou, Abhishek Mehta, Sharon Park, Thinh Huynh, Shutao Song, Yuanli Bai, Kyu Cho, Brandon Mcwilliams, Yongho Sohn
Mechanical Engineering Faculty Research and Publications
Consistent manufacturing of volumetrically dense engineering components, free of solidification cracks by laser powder bed fusion (LPBF), has been demonstrated for Al-Si alloys such as AlSi10Mg and Al12Si. The success in LPBF of these alloys is attributed to the near eutectic composition with a small freezing range. To illuminate this observation, cracking susceptibility was examined from Scheil-Gulliver solidification modeling by calculating the hot cracking susceptibility, |dT/dfS1/2|. To validate the findings from hot cracking susceptibility calculations, six binary Al-Si alloys, whose compositions were strategically chosen at hypo-, near-, and hyper-eutectic compositions, were gas atomized into alloy powders, and …
A Comparison Of Porphyrin Photosensitizers In Photodynamic Inactivation Of Rna And Dna Bacteriophages, Joe Heffron, Matthew Bork, Brooke K. Mayer, Troy Skwor
A Comparison Of Porphyrin Photosensitizers In Photodynamic Inactivation Of Rna And Dna Bacteriophages, Joe Heffron, Matthew Bork, Brooke K. Mayer, Troy Skwor
Civil and Environmental Engineering Faculty Research and Publications
Effective broad-spectrum antiviral treatments are in dire need as disinfectants and therapeutic alternatives. One such method of disinfection is photodynamic inactivation, which involves the production of reactive oxygen species from dissolved oxygen in response to light-stimulated photosensitizers. This study evaluated the efficacy of functionalized porphyrin compounds for photodynamic inactivation of bacteriophages as human virus surrogates. A blue-light light emitting diode (LED) lamp was used to activate porphyrin compounds in aqueous solution (phosphate buffer). The DNA bacteriophages ΦX174 and P22 were more resistant to porphyrin TMPyP photodynamic inactivation than RNA bacteriophage fr, with increasing rates of inactivation in the order: ΦX174 …
A Hybrid Droplet Vaporization-Adaptive Surrogate Model Using An Optimized Continuous Thermodynamics Distribution, Simcha L. Singer, Michael Hayes, Alanna Y. Cooney
A Hybrid Droplet Vaporization-Adaptive Surrogate Model Using An Optimized Continuous Thermodynamics Distribution, Simcha L. Singer, Michael Hayes, Alanna Y. Cooney
Mechanical Engineering Faculty Research and Publications
Liquid transportation fuels are composed of hundreds of species, necessitating the use of surrogates in CFD simulations. Surrogates composed of a few species are often formulated to emulate the combustion properties targets (CPTs) of pre-vaporized fuels but fail to reproduce their vaporization behavior, implying that such surrogates cannot replicate the CPTs in the presence of preferential vaporization. The prevailing approach to this problem proposes a physical–chemical surrogate formulated to match the fuel’s distillation curve in addition to its CPTs. However, the physical–chemical surrogate approach requires more species, may not reproduce the instantaneous (distillation-resolved) CPTs, and is not well-suited to conditions …
Microstructural Development In As Built And Heat Treated In625 Component Additively Manufactured By Laser Powder Bed Fusion, Holden Hyer, Ryan Newell, Dan Matejczyk, Sinsar Hsie, Mason Anthony, Le Zhou, Cathy Kammerer, Yongho Sohn
Microstructural Development In As Built And Heat Treated In625 Component Additively Manufactured By Laser Powder Bed Fusion, Holden Hyer, Ryan Newell, Dan Matejczyk, Sinsar Hsie, Mason Anthony, Le Zhou, Cathy Kammerer, Yongho Sohn
Mechanical Engineering Faculty Research and Publications
The RL10 engine program is exploring the use of IN625 Ni-base superalloy components that are additively manufactured using laser powder bed fusion (LPBF). IN625 alloy powders are commercially available for LPBF to produce dense, complex parts/components. In this study, IN625 components, with both simple and complex geometries with overhangs, were manufactured via LPBF, and subjected to a heat-treatment consisting of a stress relief, hot isostatic pressing (HIP), and a solution anneal. The microstructure was examined with optical, scanning electron, and transmission electron microscopy. Changes in phase constituents and microstructure were documented as a function of heat treatment and component geometry …
Behavior And Modeling Of Circular Large Rupture Strain Frp-Confined Ice Under Axial Compression, Yanlei Wang, Guipeng Chen, Baolin Wan, Gaochuang Cai, Baoguo Han
Behavior And Modeling Of Circular Large Rupture Strain Frp-Confined Ice Under Axial Compression, Yanlei Wang, Guipeng Chen, Baolin Wan, Gaochuang Cai, Baoguo Han
Civil and Environmental Engineering Faculty Research and Publications
The application of concrete is severely limited in construction in cold areas. However, the local ice has functioned as a potential substitute for concrete for a long time. In order to make efficient use of ice to overcome its weaknesses of low strength and poor ductility, an innovative type of ice-filled large rupture strain (LRS) fiber-reinforced polymer (FRP) tube column was developed. The system consists of external LRS FRP tubes filled with plain ice or sawdust-reinforced ice. This paper presents an experimental investigation into the axial compressive behavior of such composite stub columns with circular sections. The test results confirmed …
Virus Isoelectric Point Estimation: Theories And Methods, Joe Heffron, Brooke K. Mayer
Virus Isoelectric Point Estimation: Theories And Methods, Joe Heffron, Brooke K. Mayer
Civil and Environmental Engineering Faculty Research and Publications
Much of virus fate, both in the environment and in physical/chemical treatment, is dependent on electrostatic interactions. Developing an accurate means of predicting virion isoelectric point (pI) would help to understand and anticipate virus fate and transport, especially for viruses that are not readily propagated in the lab. One simple approach to predicting pI estimates the pH at which the sum of charges from ionizable amino acids in capsid proteins approaches zero. However, predicted pIs based on capsid charges frequently deviate by several pH units from empirically measured pIs. Recently, the discrepancy between empirical and predicted pI was attributed to …
Multiscale Legacy Responses Of Soil Gas Concentrations To Soil Moisture And Temperature Fluctuations, Anthony J. Parolari, Joseph Sizemore, Gabriel Katul
Multiscale Legacy Responses Of Soil Gas Concentrations To Soil Moisture And Temperature Fluctuations, Anthony J. Parolari, Joseph Sizemore, Gabriel Katul
Civil and Environmental Engineering Faculty Research and Publications
The sensitivity of soil carbon dynamics to climate change is a major uncertainty in carbon cycle models. Of particular interest is the response of soil biogeochemical cycles to variability in hydroclimatic states and the related quantification of soil memory. Toward this goal, the power spectra of soil hydrologic and biogeochemical states were analyzed using measurements of soil temperature, moisture, oxygen, and carbon dioxide at two sites. Power spectra indicated multiscale power law scaling across subhourly to annual timescales. Precipitation fluctuations were most strongly expressed in the soil biogeochemical signals at monthly to annual timescales. Soil moisture and temperature fluctuations were …
Enhancing Reproductive Organ Segmentation In Pediatric Ct Via Adversarial Learning, Chi Nok Enoch Kan, Taly Gilat-Schmidt, Dong Hye Ye
Enhancing Reproductive Organ Segmentation In Pediatric Ct Via Adversarial Learning, Chi Nok Enoch Kan, Taly Gilat-Schmidt, Dong Hye Ye
Biomedical Engineering Faculty Research and Publications
Accurately segmenting organs in abdominal computed tomography (CT) scans is crucial for clinical applications such as pre-operative planning and dose estimation. With the recent advent of deep learning algorithms, many robust frameworks have been proposed for organ segmentation in abdominal CT images. However, many of these frameworks require large amounts of training data in order to achieve high segmentation accuracy. Pediatric abdominal CT images containing reproductive organs are particularly hard to obtain since these organs are extremely sensitive to ionizing radiation. Hence, it is extremely challenging to train automatic segmentation algorithms on organs such as the uterus and the prostate. …
Quantifying The Impact Of Uncertainty In Embedded Systems Mapping For Noc Based Architectures, Wenkai Guan, Milad Ghorbani Moghaddam, Cristinel Ababei
Quantifying The Impact Of Uncertainty In Embedded Systems Mapping For Noc Based Architectures, Wenkai Guan, Milad Ghorbani Moghaddam, Cristinel Ababei
Electrical and Computer Engineering Faculty Research and Publications
We describe a modeling framework to capture and account for uncertainty in design parameters in embedded systems. We then develop an uncertainty-aware solution to the problem of mapping in embedded systems that uses Network-on-Chip (NoC) based architecture platforms. The problem of mapping is formulated as a multi-objective - reliability, performance, and energy consumption - optimization problem. To solve this problem, we propose a solution based on the NSGA-II genetic algorithm and Monte Carlo simulation techniques. The solution is implemented as a computer-aid design tool that can generate robust 3D Pareto frontiers in the solution space formed by the design objectives …
Somatosensory Deafferentation Reveals Lateralized Roles Of Proprioception In Feedback And Adaptive Feedforward Control Of Movement And Posture, S.A.L. Jayasinghe, F. R. Sarlegna, Robert A. Scheidt, R. L. Sainburg
Somatosensory Deafferentation Reveals Lateralized Roles Of Proprioception In Feedback And Adaptive Feedforward Control Of Movement And Posture, S.A.L. Jayasinghe, F. R. Sarlegna, Robert A. Scheidt, R. L. Sainburg
Biomedical Engineering Faculty Research and Publications
Proprioception provides crucial information necessary for determining limb position and movement, and plausibly also for updating internal models that might underlie the control of movement and posture. Seminal studies of upper-limb movements in individuals living with chronic, large fiber deafferentation have provided evidence for the role of proprioceptive information in the hypothetical formation and maintenance of internal models to produce accurate motor commands. Vision also contributes to sensorimotor functions but cannot fully compensate for proprioceptive deficits. More recent work has shown that posture and movement control processes are lateralized in the brain, and that proprioception plays a fundamental role in …
Effects Of Alloy Composition And Solid-State Diffusion Kinetics On Powder Bed Fusion Cracking Susceptibility, Holden Hyer, Le Zhou, Abhishek Mehta, Yongho Sohn
Effects Of Alloy Composition And Solid-State Diffusion Kinetics On Powder Bed Fusion Cracking Susceptibility, Holden Hyer, Le Zhou, Abhishek Mehta, Yongho Sohn
Mechanical Engineering Faculty Research and Publications
Laser powder bed fusion (LPBF) has demonstrated its unique ability to produce customized, complex engineering components. However, processing of many commercial Al-alloys by LPBF remains challenging due to the formation of solidification cracking, although they are labelled castable or weldable. In order to elucidate this divergence, solidification cracking susceptibility from the steepness of the solidification curves, specifically |dT⁄dfs1⁄2|, as the fraction solidified nears 1 towards complete solidification, was calculated via Scheil–Gulliver model as a function of solute concentration in simple binary Al-Si, Al-Mg, and Al-Cu systems. Introduction of “diffusion in solid” into Scheil–Gulliver model resulted in a …
Addressing The Practical Limitations Of Volatile Organic Compound Sensors Through An Oscillator-Based Sensing Array, Allison K. Murray, Joseph R. Meseke, Nikhil Bajaj, Jeffrey F. Rhoads
Addressing The Practical Limitations Of Volatile Organic Compound Sensors Through An Oscillator-Based Sensing Array, Allison K. Murray, Joseph R. Meseke, Nikhil Bajaj, Jeffrey F. Rhoads
Mechanical Engineering Faculty Research and Publications
This work demonstrated the development of an array of oscillator-based sensors for the detection of volatile organic compounds (VOCs). A field-programmable gate array (FPGA) was leveraged to monitor the oscillation frequency of 16 sensing elements in parallel. It was shown that three functional chemistries can be deposited via inkjet printing to detect several analytes selectively. These unique response characteristics allowed for the creation of a linear regression model that relates the shifts in oscillation frequencies to the concentration of specific analytes. This approach utilized a single array with sufficient elements to incorporate intentional redundancies. Ultimately, this work demonstrated a low-cost …
Hygrothermal Ageing Behavior And Mechanism Of Carbon Nanofibers Modified Flax Fiber-Reinforced Epoxy Laminates, Yanlei Wang, Wanxin Zhu, Baolin Wan, Ziping Meng, Baoguo Han
Hygrothermal Ageing Behavior And Mechanism Of Carbon Nanofibers Modified Flax Fiber-Reinforced Epoxy Laminates, Yanlei Wang, Wanxin Zhu, Baolin Wan, Ziping Meng, Baoguo Han
Civil and Environmental Engineering Faculty Research and Publications
This study investigated the effects of carbon nanofibers (CNFs) content on hygrothermal ageing behaviors and mechanisms of flax fiber-reinforced epoxy (FFRE) laminates. CNFs/FFRE laminates containing 0.25–2.0 wt% CNFs were fabricated and immersed in distilled water for 180 days. Water absorption and tensile as well as thermodynamic properties were investigated. The research results showed that CNFs played a significant role in the improvement of hygrothermal properties of FFRE laminates. The water uptake of CNFs/FFRE laminates was significantly decreased because CNFs improved water barrier properties of the laminates. The improvements of tensile and thermodynamic properties of CNFs/FFRE laminates were attributed to the …
Changes In Cerebral Volume And White Matter Integrity In Adults On Hemodialysis And Relationship To Cognitive Function, W. T. Richerson, L. G. Umfleet, Brian D. Schmit, D. F. Wolfgram
Changes In Cerebral Volume And White Matter Integrity In Adults On Hemodialysis And Relationship To Cognitive Function, W. T. Richerson, L. G. Umfleet, Brian D. Schmit, D. F. Wolfgram
Biomedical Engineering Faculty Research and Publications
Introduction: Patients on hemodialysis (HD) have a significant burden of cognitive impairment. Characterizing the cerebral structural changes in HD patients compared to healthy controls and evaluating the relationship of cerebral structural integrity with cognitive performance in HD patients can help clarify the pathophysiology of the cognitive impairment in HD patients. Methods: In this cross-sectional study, in-center HD patients ≥50 years of age underwent brain structural and diffusion MRIs and cognitive assessment using the NIH Toolbox cognition battery. The cerebral imaging measures of the HD participants were compared to imaging from age-matched controls. Gray matter volume, white matter volume, and white …
Cast Iron Drinking Water Pipe Biofilms Support Diverse Microbial Communities Containing Antibiotic Resistance Genes, Metal Resistance Genes, And Class 1 Integrons, Lee K. Kimbell, Emily Lou Lamartina, Anthony D. Kappell, Jingwan Huo, Yin Wang, Ryan J. Newton, Patrick J. Mcnamara
Cast Iron Drinking Water Pipe Biofilms Support Diverse Microbial Communities Containing Antibiotic Resistance Genes, Metal Resistance Genes, And Class 1 Integrons, Lee K. Kimbell, Emily Lou Lamartina, Anthony D. Kappell, Jingwan Huo, Yin Wang, Ryan J. Newton, Patrick J. Mcnamara
Civil and Environmental Engineering Faculty Research and Publications
Antimicrobial resistance is a well-documented public health concern. The role that drinking water distribution pipes have as sources of antibiotic resistance genes (ARGs) is not well known. Metals are a known stressor for antibiotic resistance development, implying that aging metal-pipe infrastructure could be a source of ARGs. The objective of this study was to determine if ARGs, metal resistance genes (MRGs), and intI1 were pervasive across various pipe biofilm sample types (biomass surfaces, pipe surfaces, corrosion tubercles, and under corrosion tubercles) and if the resistance genes associated with particular microbial taxa. Eight sample types in triplicate (n = …
Identifying Alternate Resources And Adjusting Expectations For Senior Design Projects During The Covid-19 Pandemic Of 2020, Jay R. Goldberg
Identifying Alternate Resources And Adjusting Expectations For Senior Design Projects During The Covid-19 Pandemic Of 2020, Jay R. Goldberg
Biomedical Engineering Faculty Research and Publications
In March 2020, the COVID-19 pandemic required capstone design course instructors to transition to online learning. Student project teams were denied access to resources needed to construct and test prototypes scheduled to be delivered to project sponsors and clients at the end of the semester. Face-to-face collaboration was replaced with virtual team meetings. At Marquette University, efforts to identify (1) barriers to completing projects, (2) potential alternate prototyping resources, (3) adjustments to expectations of teams, and (4) changes to course deliverable requirements were completed. The results of these activities, the thought process used to guide students through the search for …
Prediction Of Emg Activation Profiles From Gait Kinematics And Kinetics During Multiple Terrains, Erika V. Zabre-Gonzalez, Diego Amieva-Alvarado, Scott A. Beardsley
Prediction Of Emg Activation Profiles From Gait Kinematics And Kinetics During Multiple Terrains, Erika V. Zabre-Gonzalez, Diego Amieva-Alvarado, Scott A. Beardsley
Biomedical Engineering Faculty Research and Publications
Continuous myoelectric prediction of intended limb dynamics has the ability to provide transparent control of a prosthesis by the user. However, the impact on these models of adding a human user into the control loop is less clear. Here, the ability of a User Response Model (URM) to continuously predict EMG activity from gait kinematics and kinetics collected during three mobility tasks (level-ground walking, stair ascent, and stair descent) was examined. Multiple-input, multiple-output NARX-based URMs were developed with two outputs (ankle plantarflexor and dorsiflexor) and variable inputs (ankle kinetics, and shank and/or ankle kinematics). Accuracy in predicting the tibialis anterior …
A Surrogate Weather Generator For Estimating Natural Gas Design Day Conditions, David J. Kaftan, George Corliss, Richard J. Povinelli, Ronald H. Brown
A Surrogate Weather Generator For Estimating Natural Gas Design Day Conditions, David J. Kaftan, George Corliss, Richard J. Povinelli, Ronald H. Brown
Electrical and Computer Engineering Faculty Research and Publications
Natural gas customers rely upon utilities to provide gas for heating in the coldest parts of winter. Heating capacity is expensive, so utilities and end users (represented by commissions) must agree on the coldest day on which a utility is expected to meet demand. The return period of such a day is long relative to the amount of weather data that are typically available. This paper develops a weather resampling method called the Surrogate Weather Resampler, which creates a large dataset to support analysis of extremely infrequent events. While most current methods for generating weather data are based on simulation, …
A New Line-By-Line Methodology Based On The Spectral Contributions Of The Bands, Felipe R. Coelho, Aline Ziemniczak, Somesh Roy, Francis H.R. França
A New Line-By-Line Methodology Based On The Spectral Contributions Of The Bands, Felipe R. Coelho, Aline Ziemniczak, Somesh Roy, Francis H.R. França
Mechanical Engineering Faculty Research and Publications
This study presents a new methodology to solve thermal radiation in participating gases, the spectrally reduced integration (SRI), which employs a non-uniform spectral discretization to considerably reduce the computational cost of the line-by-line (LBL) solution while still maintaining good levels of accuracy. This non-uniform spectral mesh is generated from discretization schemes based on the spectral contributions of the bands, which apply less or more refined spectral resolution depending on the importance of the bands to the radiative transfer. Based on this methodology, several schemes were initially proposed and evaluated for a homogeneous H2O-CO2 mixture test case. Results …