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Full-Text Articles in Engineering

A Comparative Study On The Functionality Of Porcine Dura As A Tissue-Engineered Dura Mater Graft For Clinical Applications, Ashma Sharma May 2022

A Comparative Study On The Functionality Of Porcine Dura As A Tissue-Engineered Dura Mater Graft For Clinical Applications, Ashma Sharma

Theses and Dissertations

Damage to dura mater may occur during intracranial or spinal surgeries, which can result in cerebrospinal fluid leakage as well as other potentially fatal physiological changes. As a result, biological scaffolds derived from xenogeneic materials are typically used to repair and regenerate dura mater post intracranial or spinal surgeries. In this study we explore the mechanics, structure, and immunological capacity of xenogeneic dura mater to be considered as a replacement for human dura. A comparative analysis is done between native porcine dura and a commercially available bovine collagen-based dura graft. Native porcine dura mater was decellularized and subjected to mechanical …


Scandy: Simulating Realistic Human Scanpaths In Dynamic Real-World Scenes, Nicolas Roth, Martin Rolfs, Klaus Obermayer May 2022

Scandy: Simulating Realistic Human Scanpaths In Dynamic Real-World Scenes, Nicolas Roth, Martin Rolfs, Klaus Obermayer

MODVIS Workshop

No abstract provided.


Molecular-Level Control Over Ionic Conduction And Ionic Current Direction By Designing Macrocycle-Based Ionomers, Shyambo Chatterjee, Ehsan Zamani, Seefat Farzin, Iman Evazzade, Oghenetega Allen Obewhere, Tyler James Johnson, Vitaly Alexandrov, Shudipto Konika Dishari May 2022

Molecular-Level Control Over Ionic Conduction And Ionic Current Direction By Designing Macrocycle-Based Ionomers, Shyambo Chatterjee, Ehsan Zamani, Seefat Farzin, Iman Evazzade, Oghenetega Allen Obewhere, Tyler James Johnson, Vitaly Alexandrov, Shudipto Konika Dishari

Department of Chemical and Biomolecular Engineering: Faculty Publications

Poor ionic conductivity of the catalyst-binding, submicrometer- thick ionomer layers in energy conversion and storage devices is a huge challenge. However, ionomers are rarely designed keeping in mind the specific issues associated with nanoconfinement. Here, we designed nature-inspired ionomers (calix-2) having hollow, macrocyclic, calix[4]arene-based repeat units with precise, sub-nanometer diameter. In ≤100 nm-thick films, the in-plane proton conductivity of calix-2 was up to 8 times higher than the current benchmark ionomer Nafion at 85% relative humidity (RH), while it was 1−2 orders of magnitude higher than Nafion at 20−25% RH. Confocal laser scanning microscopy and other synthetic techniques allowed us …


Manual Material Handling Lift-Assist System For Occupational Exoskeleton, Erik Goes, Daniel Guthrie, Trevor Ward May 2022

Manual Material Handling Lift-Assist System For Occupational Exoskeleton, Erik Goes, Daniel Guthrie, Trevor Ward

Honors Capstones

It is no secret that lifting heavy objects is one of the premier causes of workplace injury, and the modern worker needs help to remain healthy. Workers need something they always have with them that makes their work safer as well as easier; our solution is an active lift-assist exoskeleton. The proposed exoskeleton design includes a military backpack exoskeleton frame, on which two actuators pull cables attached to end effectors that the operator will be holding. This system can adjust to conform to a wide variety of operator sizes, without restricting any of their range of motion. This leads to …


The Synthesis And Characterization Of Ionic Liquids Using Nitrogen-Based Cations For Transdermal Delivery, Jo Galloway May 2022

The Synthesis And Characterization Of Ionic Liquids Using Nitrogen-Based Cations For Transdermal Delivery, Jo Galloway

Honors Theses

The purpose of this research was to explore the synthesis mechanisms of water-soluble ionic liquids with nitrogen-containing cationic bases for future use in transdermal drug delivery and forensic science applications. Ionic liquids are salts with an organic cation and either an organic or inorganic anion. They have asymmetric structures, which means that the molecules don’t pack together as neatly as other salts do, therefore, they don’t crystallize as easily, and their melting points are lower. Ionic liquids have melting points below 100°C, and many are liquid at room temperature. Mechanistic studies reveal that the potency of ILs in enhancing transdermal …


Novel Keyed Fusion Method To Improve Plate Alignment In Anterior Cervical Discectomy And Fusion Procedures, Henry Seiler May 2022

Novel Keyed Fusion Method To Improve Plate Alignment In Anterior Cervical Discectomy And Fusion Procedures, Henry Seiler

Honors Theses

Anterior cervical discectomy and fusion (ACDF) is a form of neck surgery that is performed to remove a damaged disc in the spine. Without intervention damaged discs in the spine cause a buildup of spinal cord or nerve root pressure which can lead to several unpleasant side effects. The current methods and devices through which this surgery is carried out can be potentially problematic for both the surgeon and the patient. Oftentimes surgeons have difficulty aligning the cervical plate typically used in ACDF surgeries. In many cases, these problems are unavoidable. It is for this reason that a group of …


Developing New Crutch Tip Design For Overall Increased Stability And Improved Movement On Different Terrains, Lauren Skinner May 2022

Developing New Crutch Tip Design For Overall Increased Stability And Improved Movement On Different Terrains, Lauren Skinner

Honors Theses

Crutches are a mobility assistive device that are often used in various situations, such as post- surgical rehabilitation and recovery after injury. The current crutch tip design that is used on today’s crutches are often unstable and do not provide quality movement on different terrains, such as snow, ice, mud, and wet surfaces. These problems would be solved with a new tip design that could be attached to existing crutches or manufactured with the crutch itself. The team’s solution to this problem is a crutch tip with modular parts. The tip would attach to the shaft of the crutch like …


Novel Mobility Device For Conjoined Twins, Allyson Bowgren May 2022

Novel Mobility Device For Conjoined Twins, Allyson Bowgren

Honors Capstones

This project provides a solution to a problem proposed by a pair of conjoined clients. With their desire to become fully independent, the clients need an improved mobility device. Being joined at the head, moving around was always difficult for them and their situation did not get any better after an accident left one of them immobile. Their current device was a decent and quick solution at the time it was first needed. However, since its conception the device quickly became obsolete, and they are now in need of a more effective device that allows them to travel easier. This …


Mobile, Biosensor Technology For Measuring Joint-Level Human Motion, Matthew Mcmanigal May 2022

Mobile, Biosensor Technology For Measuring Joint-Level Human Motion, Matthew Mcmanigal

Theses & Dissertations

The measurement of three-dimensional knee joint angles can predict both anterior cruciate ligament (ACL) injuries and the risk of developing early knee osteoarthritis. However, knee joint angle assessment is currently limited, due to the lack of validated wearable and untethered technologies that can be deployed in natural environments and rural or community settings. To address this challenge, this thesis project aimed to 1) develop a fully untethered, wearable electronic device to measure knee joint angles during natural human movement and 2) test the accuracy of the device to collect sagittal knee joint angles during dynamic activities of human movement. For …


Th1, Th2, And Th17 Inflammatory Pathways Predict Cardiometabolic Protein Expression In Serum Of Covid-19 Patients, James Richard Michels May 2022

Th1, Th2, And Th17 Inflammatory Pathways Predict Cardiometabolic Protein Expression In Serum Of Covid-19 Patients, James Richard Michels

Honors Theses

A predominant source of complications in SARS-CoV-2 patients arises from severe systemic inflammation contributed to by Helper T-cell associated cytokines, potentially leading to tissue damage and organ failure. The high inflammatory burden of this viral infection often results in cardiovascular comorbidities. A better understanding of the interaction between the cytokine storm and cardiovascular proteins might inform medical decisions and therapeutic approaches. We hypothesized that all major helper T-cell inflammatory pathways (Helper T 1, Helper T 2 and Helper T 17) synergistically contribute to cardiometabolic pathways in serum of COVID-19 patients, and that both of these factors correlate to COVID-19 severity. …


Increasing Accessibility To Monitoring Ammonia Levels In The Body Through Development Of A Novel Point-Of-Care Breath Ammonia Diagnostic Device, Emily C. Wright, Ashwin M. Sivalingam May 2022

Increasing Accessibility To Monitoring Ammonia Levels In The Body Through Development Of A Novel Point-Of-Care Breath Ammonia Diagnostic Device, Emily C. Wright, Ashwin M. Sivalingam

Honors Theses

Hyperammonemia is a life-threatening metabolic condition that is characterized by elevated levels of ammonia concentrations in the blood. Resulting from serious conditions such as chronic kidney disease or liver failure, the limited functions of the liver and kidney lead to an increase in blood urea nitrogen (BUN) within the body. Currently, there are a wide variety of treatments for this condition, ranging from various medications to surgical procedures such as liver transplants. However, there is a lack of variety in diagnostic testing methods to determine a patient’s ammonia levels. In most cases, patients will need to schedule a doctor’s appointment …


In-Vivo Damage Development In Vena Cava Filter: Study Of A Retrieved Device, Anne Marie Lutz, Tarun Goswami May 2022

In-Vivo Damage Development In Vena Cava Filter: Study Of A Retrieved Device, Anne Marie Lutz, Tarun Goswami

Biomedical, Industrial & Human Factors Engineering Faculty Publications

This article was prepared from a project assigned in a graduate class, BME 7371, Failure Assessment of Medical Devices, taught at Wright State University by the senior author. The device was donated for the study which was successfully retrieved after 93 days in-vivo. Even-though the mechanical integrity of the device held in-tact, the microscopic observations revealed that the damage via corrosion and scratching took place on the surface of the device. The image reconstructed in 3D using image-J software to determine device roughness and depth-of-pits. Results presented in this paper show that damage starts developing in these devices after the …


Electromechanical Fatigue Properties Of Dielectric Elastomer Stretch Sensors Under Orthopaedic Loading Conditions, Andrea Karen Persons May 2022

Electromechanical Fatigue Properties Of Dielectric Elastomer Stretch Sensors Under Orthopaedic Loading Conditions, Andrea Karen Persons

Theses and Dissertations

Fatigue testing of stretch sensors often focuses on high amplitude, low-cycle fatigue (LCF) behavior; however, when used for orthopaedic, athletic, or ergonomic assessments, stretch sensors are subjected to low amplitude, high-cycle fatigue (HCF) conditions. As an added layer of complexity, the fatigue testing of stretch sensors is not only focused on the life of the material comprising the sensor, but also on the reliability of the signal produced during the extension and relaxation of the sensor. Research into the development of a smart sock that can be used to measure the range of motion (ROM) of the ankle joint during …


Probing Myosin Ensemble Mechanics In Actin Filament Bundles Using Optical Tweezers, Omayma Al Azzam, Janie C. Watts, Justin E. Reynolds, Juliana E. Davis, Dana N. Reinemann May 2022

Probing Myosin Ensemble Mechanics In Actin Filament Bundles Using Optical Tweezers, Omayma Al Azzam, Janie C. Watts, Justin E. Reynolds, Juliana E. Davis, Dana N. Reinemann

Faculty and Student Publications

Myosins are motor proteins that hydrolyze ATP to step along actin filament (AF) tracks and are essential in cellular processes such as motility and muscle contraction. To understand their force-generating mechanisms, myosin II has been investigated both at the single-molecule (SM) level and as teams of motors in vitro using biophysical methods such as optical trapping. These studies showed that myosin force-generating behavior can differ greatly when moving from the single-molecule level in a three-bead arrangement to groups of motors working together on a rigid bead or coverslip surface in a gliding arrangement. However, these assay constructions do not permit …


Analysis Of Rule-Based And Shallow Statistical Models For Covid-19 Cough Detection For A Preliminary Diagnosis, Arshia Arif, Eisa Alanazi, Ayesha Zeb, Waqar Shahid Qureshi May 2022

Analysis Of Rule-Based And Shallow Statistical Models For Covid-19 Cough Detection For A Preliminary Diagnosis, Arshia Arif, Eisa Alanazi, Ayesha Zeb, Waqar Shahid Qureshi

Conference papers

Coronavirus pandemic that has spread all over the world, is one of its kind in the recent past, that has mobilized researchers in areas such as (not limited to) pre-screening solutions, contact tracing, vaccine developments, and crowd estimation. Pre-screening using symptoms identification, cough classification, and contact tracing mobile applications gained significant popularity during the initial outbreak of the pandemic. Audio recordings of coughing individuals are one of the sources that can help in the pre-screening of COVID-19 patients. This research focuses on quantitative analysis of covid cough classification using audio recordings of coughing individuals. For analysis, we used three different …


Designing A Self-Regulating And Portable Heating Device For A Microfluidic Based Biosensor, Riya Mahajan May 2022

Designing A Self-Regulating And Portable Heating Device For A Microfluidic Based Biosensor, Riya Mahajan

Discovery Undergraduate Interdisciplinary Research Internship

Paper-based biosensors are powerful microfluidic analytical devices that are potentially useful for a wide range of applications, ranging from medical diagnostics to agricultural and environmental monitoring. Molecular diagnostics have limitations because they need to send samples back to a centralized laboratory, which increases the cost and turnaround time of the test. This project aims to create a simple-to-use, low-cost, and portable heating system that would facilitate the creation of a field-deployable paper-based analytical device that can incubate the sample at elevated temperatures for conducting isothermal molecular assays. Our design aims to miniaturize a commercial water bath and will be fabricated …


Mechanical Properties Of Nanoparticles In The Drug Delivery Kinetics, Kaivon Assani, Amy Neidhard-Doll, Tarun Goswami May 2022

Mechanical Properties Of Nanoparticles In The Drug Delivery Kinetics, Kaivon Assani, Amy Neidhard-Doll, Tarun Goswami

Biomedical, Industrial & Human Factors Engineering Faculty Publications

Nanoparticle formulation is a recently developed drug delivery technology with enhanced targeting potential. Nanoparticles encapsulate the drug of choice and delivers it to the target via a targeting molecules (ex. antigen) located on the nanoparticle surface. Nanoparticles can even be targeted to deeply penetrating tissue and can be modeled to deliver drugs through the blood brain barrier. These advancements are providing better disease targeting such as to cancer and Alzheimer’s. Various polymers can be manufactured into nanoparticles. The polymers examined in this paper are polycaprolactone (PCL), poly(lactic acid) (PLA), poly(lactic-co-glycolic acid) (PLGA), and poly(glycolic acid) (PGA). The purpose of this …


Probing Myosin Ensemble Mechanics In Actin Filament Bundles Using Optical Tweezers, Omayma Alazzam, Janie Watts, Dana N. Reinemann May 2022

Probing Myosin Ensemble Mechanics In Actin Filament Bundles Using Optical Tweezers, Omayma Alazzam, Janie Watts, Dana N. Reinemann

Faculty and Student Publications

Myosins are motor proteins that hydrolyze ATP to step along actin filament (AF) tracks and are essential in cellular processes such as motility and muscle contraction. To understand their force-generating mechanisms, myosin II has been investigated both at the single-molecule (SM) level and as teams of motors in vitro using biophysical methods such as optical trapping. These studies showed that myosin force-generating behavior can differ greatly when moving from the single-molecule level in a three-bead arrangement to groups of motors working together on a rigid bead or coverslip surface in a gliding arrangement. However, these assay constructions do not permit …


Porous Scaffold-Hydrogel Composites Spatially Regulate 3d Cellular Mechanosensing., Matthew Dicerbo, Mohammed Mehdi Benmassaoud, Sebastián L Vega May 2022

Porous Scaffold-Hydrogel Composites Spatially Regulate 3d Cellular Mechanosensing., Matthew Dicerbo, Mohammed Mehdi Benmassaoud, Sebastián L Vega

Henry M. Rowan College of Engineering Departmental Research

Cells encapsulated in 3D hydrogels exhibit differences in cellular mechanosensing based on their ability to remodel their surrounding hydrogel environment. Although cells in tissue interfaces feature a range of mechanosensitive states, it is challenging to recreate this in 3D biomaterials. Human mesenchymal stem cells (MSCs) encapsulated in methacrylated gelatin (GelMe) hydrogels remodel their local hydrogel environment in a time-dependent manner, with a significant increase in cell volume and nuclear Yes-associated protein (YAP) localization between 3 and 5 days in culture. A finite element analysis model of compression showed spatial differences in hydrogel stress of compressed GelMe hydrogels, and MSC-laden GelMe …


Design Of An Implanted Vascular Access Device With A Mechanical Septum, Mallory Ann Moffett, Katherine Rose O'Quinn May 2022

Design Of An Implanted Vascular Access Device With A Mechanical Septum, Mallory Ann Moffett, Katherine Rose O'Quinn

Honors Theses

As populations continue to age, their need for medical care continues to rise. This is seen by the large need for implanted vascular devices (IVADs). IVADs are essential for individuals with poor venous access and patients requiring long-term venous delivered drugs. This document will explore the existing IVADs, where they fall short, and where our device, the IrisPort system, works to solve the unmet needs of patients. The IrisPort system is a needle-less port system that allows for repeated venous access without the use of a non-coring needle. Prior art searches have shown that the IrisPort is a novel solution …


A Versatile Python Package For Simulating Dna Nanostructures With Oxdna, Kira Threlfall May 2022

A Versatile Python Package For Simulating Dna Nanostructures With Oxdna, Kira Threlfall

Computer Science and Computer Engineering Undergraduate Honors Theses

The ability to synthesize custom DNA molecules has led to the feasibility of DNA nanotechnology. Synthesis is time-consuming and expensive, so simulations of proposed DNA designs are necessary. Open-source simulators, such as oxDNA, are available but often difficult to configure and interface with. Packages such as oxdna-tile-binding pro- vide an interface for oxDNA which allows for the ability to create scripts that automate the configuration process. This project works to improve the scripts in oxdna-tile-binding to improve integration with job scheduling systems commonly used in high-performance computing environments, improve ease-of-use and consistency within the scripts compos- ing oxdna-tile-binding, and move …


Developing A Semester-Long Project In A Biomechanical Engineering Course To Instill The Entrepreneurial Mindset In The Next-Generation Biomedical Engineering Students, Loren Hedgecock May 2022

Developing A Semester-Long Project In A Biomechanical Engineering Course To Instill The Entrepreneurial Mindset In The Next-Generation Biomedical Engineering Students, Loren Hedgecock

Biomedical Engineering Undergraduate Honors Theses

Entrepreneurial-Minded Learning (EML) is an emerging pedagogy progressively gaining popularity in the engineering education community. Coincided with project-based learning (PBL), EML illustrates an essential dimension to the instruction of next-generation engineers, equipping them with various perspectives and approaches to relate societal challenges with technical concepts. Nationwide initiatives, such as the Kern Entrepreneurial Engineering Network (KEEN), have developed a learning framework specifically designed to create engineers such as these. The implementation of EML aims to stimulate connections, create value, and ignite curiosity. This study introduced a semester-long project based on these EML skillsets in a sophomore-level biomechanical engineering course. To evaluate …


The Interaction Of Angiotensin I And Ii On Calcified Aortic Valve Cells, Fah Sysavanh May 2022

The Interaction Of Angiotensin I And Ii On Calcified Aortic Valve Cells, Fah Sysavanh

Biomedical Engineering Undergraduate Honors Theses

Cardiovascular diseases affect the older population with limited treatments available. Aortic valve stenosis is a cardiovascular disease in which the aortic valve narrows, causing blood flow constriction and calcification.¹ The only treatment is to replace the valve, which can be costly and lead to other health complications.

The renin-angiotensin system (RAS) is a pathway that helps with maintaining cardiovascular homeostasis. Angiotensin I (ANGI) and II (ANGII) are hormones in the RAS that cause an increase in inflammation, stress, and blood pressure by binding to the Angiotensin Type 1 Receptor (AT1R).¹ Gelatin-based valve thin film (vTF) platforms were fabricated to investigate …


Alternative Fixation Of Venous Valves For Bioprosthetic Applications, Makenzie Kapales May 2022

Alternative Fixation Of Venous Valves For Bioprosthetic Applications, Makenzie Kapales

Biomedical Engineering Undergraduate Honors Theses

Venous valve failure allows for the retrograde, or backward, flow of blood into the lower extremities, which leads to Chronic Venous Insufficiency (CVI). CVI infringes upon quality of life through ulceration and can result in death due to Deep Vein Thrombosis (DVT), or blood clots, causing pulmonary embolism. A successful treatment of CVI restores valve function and prevents retrograde blood flow; however, current bioprosthetic venous valves exhibit low patency and high calcification. To improve upon bioprosthetic venous valves and CVI treatment, the University of Arkansas’s Cardiovascular Biomechanics Lab conducts studies with the purpose of comparing the properties and performance of …


Virtual Reality As An Education Tool In Biomedical Engineering, Megan Wilkerson May 2022

Virtual Reality As An Education Tool In Biomedical Engineering, Megan Wilkerson

Biomedical Engineering Undergraduate Honors Theses

Virtual Reality (VR) has become more accessible in recent years, both to experience and to create. Various studies have shown that incorporating VR in an educational setting can yield positive results. Virtual reality videos created using course-specific content could prove to be a beneficial educational tool. VR videos were implemented in a remote biomolecular engineering laboratory course. 180° VR videos of lab procedures were recorded and viewed by students using a Google Cardboard headset and their smartphones. After viewing all the VR lab videos, students were given a survey to report their experiences. The survey contained questions used to measure …


Sequential Illumination In A Tomographic Microendoscopic Probe For Imaging Tumor Microvasculature, Zachariah Neumeier May 2022

Sequential Illumination In A Tomographic Microendoscopic Probe For Imaging Tumor Microvasculature, Zachariah Neumeier

Biomedical Engineering Undergraduate Honors Theses

Knowledge of colorectal cancer biology is improving how we approach cancer treatment. Specifically, the tumor microenvironment and abnormal angiogenesis are of particular interest. Optical methods are a prime candidate for research of the tumor microenvironment due to their ability to quantitively assess tissue structure and perfusion in real time. Particularly, the “transport scattering regime” has been identified as a method of obtaining high-resolution images and reflectance spectroscopy data; this light scattering regime has been demonstrated compatible with endoscopic imaging systems. In this study, a proof-of-concept optical imaging system is presented, capable of resolving absorbers within scattering turbid media using a …


Mapping Of Electroencephalogram (Eeg) Responses To Newsvendor Decision Model And Cerebral Hemodynamic Responses To Transcranial Photobiomodulation (Tpbm) In Humans, Cong Dung Nghi Truong May 2022

Mapping Of Electroencephalogram (Eeg) Responses To Newsvendor Decision Model And Cerebral Hemodynamic Responses To Transcranial Photobiomodulation (Tpbm) In Humans, Cong Dung Nghi Truong

Bioengineering Dissertations - Archive

Decision-making is one of the most critical activities of human beings. Various studies have investigated the brain responses to a variety of decision tasks by deploying the EEG data. The first aim of my dissertation was to investigate the neurocognitive mechanisms and correlations across multiple subjects when people make risky economic decisions. A decision-making task was designed based on the newsvendor problem (NP) with two scenarios: low-profit margins (LM) as the more challenging scenario and high-profit margins (HM) as the less difficult one. The EEG signals were acquired from healthy humans while subjects were performing the task. The Correlated Component …


Engineering Enzymatic Pathways In The Gut Microbiome To Control Dietary Isoflavone Metabolism, Lenaiya Allisen Kydd May 2022

Engineering Enzymatic Pathways In The Gut Microbiome To Control Dietary Isoflavone Metabolism, Lenaiya Allisen Kydd

Bioengineering Dissertations - Archive

ABSTRACT: Observing how plasmids persist within the gut can help us understand how newly introduced genes are transmitted within the gut microbiome. I sought to determine the persistence of genetic constructs introduced to the murine gut and then develop our own genetic system to be delivered to the gut to engineer the microbiome in its ability to convert certain dietary isoflavones. In my initial experiments, mice were given bacteria containing a genetically engineered plasmid and were examined for the persistence of the plasmid in the gut. I found long-term persistence of the plasmid in the gut for up to 2 …


Novel Nanocomposites For The Treatment Of Lung Infections, Uday Kumar Chintapula May 2022

Novel Nanocomposites For The Treatment Of Lung Infections, Uday Kumar Chintapula

Bioengineering Dissertations - Archive

Lung infections, especially lower respiratory tract infections and their associated pneumonias, are one of the leading causes of death, accounting for more than 4 million fatalities every year worldwide. Bacterial pathogens are involved in many lower respiratory tract infections including emerging antibiotic resistant respiratory pathogens such as methicillin-resistant staphylococcus aureus (MRSA). Current interventions for MRSA lung infections include systemic antibiotic treatments for an extended period leading to various side effects such as acute kidney injury, nephrotoxicity, and so on. To overcome these limitations, the goal of this dissertation research is to develop a drug delivery system, which includes pathogen-specific drug-loaded …


Development Of Algorithms To Analyze Electrogastrography (Egg) For Neonatal Gastrointestinal Development And Electroencephalography (Eeg) For Effects Of Led-Based Pre-Frontal Light Stimulation, Akhil Mahendra M Chaudhari May 2022

Development Of Algorithms To Analyze Electrogastrography (Egg) For Neonatal Gastrointestinal Development And Electroencephalography (Eeg) For Effects Of Led-Based Pre-Frontal Light Stimulation, Akhil Mahendra M Chaudhari

Bioengineering Dissertations - Archive

Algorithm development, and biological signal processing are the key components for new applications of successful medical diagnosis that can provide physiological and functional information to better understand human condition for either patients with certain diseases or healthy human beings. Neuroimaging tools, such as functional near infrared spectroscopy (fNIRS), and electrogastrography (EGG) have been used to investigate the gut maturity in diseased and healthy state; and electroencephalogram (EEG) have been used to investigate brain functions in response to neuromodulated or task-based interventions. Accordingly, my dissertation focused on algorithm development and signal processing for two major topics: (1) to outline EGG response …