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Examination Of The Effects Of Confined Migration On Androgen Resistant Prostate Cancer And Potential Treatment Option For Drug Resistant Pc3 Cells With Calcitriol, Emily Torrey Ann Hills 2020 University of Texas at Arlington

Examination Of The Effects Of Confined Migration On Androgen Resistant Prostate Cancer And Potential Treatment Option For Drug Resistant Pc3 Cells With Calcitriol, Emily Torrey Ann Hills

Bioengineering Theses - Archive

When localized to the prostate, prostate cancer (PCa) has a near 100% 5-year survival rate, however, when prostate cancer metastasizes the survival rate drastically drops to around 30%. The low death rate of primary PCa is due to the wealth of knowledge we have of non-metastatic cancer and the sufficient treatment regimens. However, this understanding does not apply to metastatic cancer, so therapies are greatly lacking. To gain a better understanding of the invasion process for PCa we utilized microchannel technology to uncover the differences between migratory and non-migratory PCa. Specifically, the following study examines the effects of confined migration …


Design And Validation Of A Dynamic Pressure-Based Loading Device And 3d Strain Tracking Protocol For Ventral Hernia Modeling, Griffin Kivitz 2020 Washington University in St. Louis

Design And Validation Of A Dynamic Pressure-Based Loading Device And 3d Strain Tracking Protocol For Ventral Hernia Modeling, Griffin Kivitz

McKelvey School of Engineering Graduate Student Theses & Dissertations

It is estimated that 350,000-500,000 ventral hernia repair surgeries are performed each year in the United States. While the long-term recurrence rate of ventral hernia repairs is not yet known, when tissues are exposed to the trauma of surgery, there is always the chance of recurrence. Commonly used ex vivo testing methods for determining the mechanical properties of the abdominal wall and biomaterials for hernia repair consist primarily of uniaxial and biaxial testing, which are not physiologically relevant loading environments. The need for a testing device that can exert physiologically relevant loads ex vivo to an abdominal wall is crucial …


Toward Controlling Cardiac Tissue Pacing Using Modified Mrna, Yicheng Zhao 2020 Washington University in St. Louis

Toward Controlling Cardiac Tissue Pacing Using Modified Mrna, Yicheng Zhao

McKelvey School of Engineering Graduate Student Theses & Dissertations

Arrhythmia is a common heart disease that happens when the heart is beating too fast, too slow, or irregularly. To study the mechanisms and treatments of this disease, it is important to acutely control the beating rate of the model as it will help distinguish the contribution of different potassium currents and drug-induced action potential in cardiomyocytes. The current method of tissue pacing, electrical pacing, causes contamination and corrosive damage to tissues, thus the tissues fail to be used repeatedly or in future studies. In this study, red-shifted channelrhodopsin (ReaChR) is applied as a non-chemical means to control the beating …


Computational Imaging Methods For Analysis Of Datscan Spect Images, Hae Sol Moon 2020 Washington University in St. Louis

Computational Imaging Methods For Analysis Of Datscan Spect Images, Hae Sol Moon

McKelvey School of Engineering Graduate Student Theses & Dissertations

There is an important need to develop biomarkers to improve the diagnosis and assess the severity of Parkinson’s disease (PD). The potential to derive such biomarkers from quantitative dopamine transporter scan (DaT-Scan) single-photon emission computed tomography (SPECT) imaging, in particular the uptake of DaT in the caudate, putamen, and globus pallidus regions, is highly appealing as imaging is non-invasive and DaTScan is already used in the management of patients with PD. However, reliable quantification requires reliable segmentation of these regions in these images. Reliable segmentation is challenging due to the limited spatial resolution and high image noise in SPECT images …


Maximizing The Academic And Professional Success Of First-Generation College Students In Biomedical Engineering, Mona Ahmed 2020 University of Arkansas, Fayetteville

Maximizing The Academic And Professional Success Of First-Generation College Students In Biomedical Engineering, Mona Ahmed

Biomedical Engineering Undergraduate Honors Theses

Although efforts to increase the inclusion, retention, and success of first-generation college students (FGCSs) in research universities have resulted in noticeable progress, FGCSs still feel academically challenged, isolated, and show more anxiety and depression compared to non-FGCSs. Moreover, FGCSs may possess additional underrepresented identities that exacerbates the problem. There is more risk of dropping out of academic programs for FGCSs enrolling in STEM degrees, especially those of more multidisciplinary nature such as Biomedical Engineering. From the overall population of the State of Arkansas, only 23.3% have a bachelor’s degree or higher which is the third least percentage in the United …


Optical Metabolic Imaging As A Predictor Of Patient Tumor Response To Therapy And Apoptosis, Andrew Larey 2020 University of Arkansas, Fayetteville

Optical Metabolic Imaging As A Predictor Of Patient Tumor Response To Therapy And Apoptosis, Andrew Larey

Biomedical Engineering Undergraduate Honors Theses

Despite a plethora of medical advancements, malignant tumors remain difficult to treat due to complex cancer biology and interpatient heterogeneity. Phenotypically similar tumors may respond differently to a given treatment. In clinical oncology, it is paramount to quantify tumor response to therapy for predicting treatment outcome, monitoring tumor changes, identifying effective therapies, and avoiding unnecessary cost and toxicity to the patient. Current standards of monitoring tumor response to therapy include CT, MRI, PET, and histopathology; these methods either take a merely anatomical approach or are invasive and time consuming, necessitating a functional biomarker approach. MPM represents a metabolic-level method of …


Redesign And Quantitative Assessment Of An Accelerated Venous Valve Fatigue Apparatus, Megan Kueh 2020 University of Arkansas, Fayetteville

Redesign And Quantitative Assessment Of An Accelerated Venous Valve Fatigue Apparatus, Megan Kueh

Biomedical Engineering Undergraduate Honors Theses

Chronic venous insufficiency (CVI) is a form of cardiovascular disease that is caused when valves in the leg become incompetent. Current treatment methods serve to manage symptoms, but there are currently no ways to treat the underlying cause of CVI. A venous valve prosthetic made from a xenograft of a bovine jugular vein is one possible treatment method currently in the research phase. Prosthetic valves must be tested with an accelerated wear tester prior to approval for clinical testing. Although such testers exist for heart valves, physiological differences between heart and venous valves restrict the use those testers on venous …


The Utilization Of Autofluorescence To Study The Effects Of L-Buthionine-Sulfoximine On Cellular Metabolism In Vitro, Madison Belew 2020 University of Arkansas, Fayetteville

The Utilization Of Autofluorescence To Study The Effects Of L-Buthionine-Sulfoximine On Cellular Metabolism In Vitro, Madison Belew

Biomedical Engineering Undergraduate Honors Theses

Oxidative damage and stress impacts metabolic activity and has been implicated in a number of diseases . These medical conditions have been found to be associated with a lack of glutathione (GSH). There is a need to study the effects that the absence of glutathione has in order to expand knowledge of indicators that cause conditions like cataracts, cancer, or impaired wound healing. L-buthionine-sulfoximine (BSO) has been used in past studies to hinder GSH production and induce oxidative stress within a cell. This study explores the effects of BSO and induced oxidative stress on the metabolic activity and processes within …


Probing Nanoelectroporation And Resealing Of The Cell Membrane By The Entry Of Ca2+ And Ba2+ Ions, Wenfei Bo, Mantas Silkunas, Uma Mangalanathan, Vitalij Novickij, Maura Casciola, Iurii Semenov, Shu Xiao, Olga N. Pakhomova, Andrei G. Pakhomov 2020 Old Dominion University

Probing Nanoelectroporation And Resealing Of The Cell Membrane By The Entry Of Ca2+ And Ba2+ Ions, Wenfei Bo, Mantas Silkunas, Uma Mangalanathan, Vitalij Novickij, Maura Casciola, Iurii Semenov, Shu Xiao, Olga N. Pakhomova, Andrei G. Pakhomov

Bioelectrics Publications

The principal bioeffect of the nanosecond pulsed electric field (nsPEF) is a lasting cell membrane permeabilization, which is often attributed to the formation of nanometer-sized pores. Such pores may be too small for detection by the uptake of fluorescent dyes. We tested if Ca2+, Cd2+, Zn2+, and Ba2+ ions can be used as nanoporation markers. Time-lapse imaging was performed in CHO, BPAE, and HEK cells loaded with Fluo-4, Calbryte, or Fluo-8 dyes. Ca2+ and Ba2+ did not change fluorescence in intact cells, whereas their entry after nsPEF increased fluorescence within <1 ms. The threshold for one 300-ns pulse was at 1.5–2 kV/cm, much lower than >7 …


Development Of An Inertial Measurement-Based Assessment Of Disease Severity In Chronic Fatigue Syndrome, Turner Palombo, Suzanne Vernon, Shad Roundy 2020 University of Utah

Development Of An Inertial Measurement-Based Assessment Of Disease Severity In Chronic Fatigue Syndrome, Turner Palombo, Suzanne Vernon, Shad Roundy

Utah Space Grant Consortium

While myalgic encephalomyelitis/chronic fatigue syndrome (ME/CFS) is relatively new and poorly understood, a recent upsurge in research has identified the disease’s core symptoms, including post-exertional malaise and orthostatic intolerance. The FDA has yet to approve any treatments for ME/CFS, partially due to a lack of validated efficacy endpoints.

The central focus of this research is to develop ME/CFS efficacy endpoints using a non-invasive, inertial measurement-based approach. Accessible endpoints will provide a way to properly evaluate potential treatments for ME/CFS. Using a Kalman filter, inertial measurement unit (IMU) data can be converted to optimized leg angle estimates. These angle estimates can …


Improving Technologies In Anesthesia, Patrick Kolbay, Joseph Orr 2020 University of Utah

Improving Technologies In Anesthesia, Patrick Kolbay, Joseph Orr

Utah Space Grant Consortium

General anesthesia is well known to offer physicians access to a broad variety of invasive procedures otherwise deemed too risky. Anesthesia machines provides the means for anesthetizing patients safely in the hospital operating room. However, these devices are increasingly unable to meet the demands and needs outside of the hospital. Developing countries struggle to purchase and maintain these costly devices, leading to a 40-fold increase in anesthesia-related deaths compared to developed countries. Small-office practices in the United States experience significantly poorer anesthesia outcomes and increased legal claims versus their larger hospital counterparts, resulting in 60% more anesthesia-related deaths. Environmental impacts …


Mechanical Analysis Of Double Network Hydrogels To Determine Suitability As An Articular Cartilage Substitute, Casey Virginia Young 2020 Clemson University

Mechanical Analysis Of Double Network Hydrogels To Determine Suitability As An Articular Cartilage Substitute, Casey Virginia Young

All Theses

The Center for Disease Control has found that between 2013-2015, 26% of women and 19% of men reported doctor-diagnosed cartilage disease or damage. Currently, there exists a substantial population with cartilage damage or disease needing a solution to increasing pain and decreasing function and mobility. Many of these individuals are young and thus looking for a treatment to delay a total knee replacement. Many others are elderly and thus looking to avoid major surgeries, as the riskiness of these procedures increases with age. As researchers look towards a method of cartilage replacement, hydrogels show measurable potential as a synthetic substitute …


Hydrolytic Degradation Study Of Polyphosphazene-Plga Blends, Riley Blumenfield 2020 University of Connecticut

Hydrolytic Degradation Study Of Polyphosphazene-Plga Blends, Riley Blumenfield

Honors Scholar Theses

The synthesis and in vitro degradation analysis of thin films of poly[(glycineethylglycinato)75(phenylphenoxy)25phosphazene]
(PNGEG75PhPh25) and poly[(ethylphenylalanato)25(glycine-
ethylglycinato)75phosphazene] (PNEPA25GEG75) blended with poly(lactic-co-glycolic acid) (PLGA) was conducted to determine the blends’ potential for use as scaffolding materials for tissue regeneration applications. The samples were synthesized with glycylglycine ethyl ester (GEG) acting as the primary substituent side group, with cosubstitution by phenylphenol (PhPh) and phenylalanine ethyl ester (EPA) to make the final product [1]. Blends of 25% polyphosphazene, 75% PLGA and 50% polyphosphazene, 50% PLGA were …


Theoretical Applicability Of Crispr-Mediated Exon Skipping In Duchenne Muscular Dystrophy, Andrew Greek 2020 University of Arkansas, Fayetteville

Theoretical Applicability Of Crispr-Mediated Exon Skipping In Duchenne Muscular Dystrophy, Andrew Greek

Biomedical Engineering Undergraduate Honors Theses

Duchenne muscular dystrophy (DMD) affects approximately 1 in 5,000 males. DMD results from genetic mutations within the gene that interrupts the open reading frame and prematurely truncates the protein. From a non-functional dystrophin protein, DMD results in serious muscle weakening and muscle wasting ultimately leading to death around the age of 26. In some cases of muscular dystrophy, a mutation can occur in areas of the gene that are less essential. In Becker muscular dystrophy (BMD), these mutations cause less significant consequences in phenotype as the dystrophin protein is still semi-functional. With gene editing techniques, it may be possible to …


Cell Line-Specific Differences In Guided Differentiation Of Adipose-Derived Mesenchymal Stem Cells Towards Smooth Muscle Cells, Sherly Makar 2020 University of Arkansas, Fayetteville

Cell Line-Specific Differences In Guided Differentiation Of Adipose-Derived Mesenchymal Stem Cells Towards Smooth Muscle Cells, Sherly Makar

Biomedical Engineering Undergraduate Honors Theses

Mesenchymal stem cells (MSCs) are a population of stromal cells found traditionally in the bone marrow and adipose tissues. They can also be found in other tissues including fallopian tube, core blood, peripheral blood, fetal liver, and lungs. Mesenchymal stem cells have profound effects in regenerative engineering, tissue repair and drug discovery owing to the excellent properties such as proliferation, self-renewal, and multipotency generating multiple cell types including adipocytes, osteocytes, cardiomyocytes (CMs), pericytes (PCs), and chondrocytes. MSCs are used as immunomodulators in generating progenitor cells to be used for transplantation, creating engineered organs, and preventing graft vs. host disease (GVHD). …


Characterization Of Oxone Mediated Tempo-Oxidized Nano Cellulose Mixed-Matrix Membranes During Ultrafiltration And Hemodialysis, Kristyn Robling 2020 University of Arkansas, Fayetteville

Characterization Of Oxone Mediated Tempo-Oxidized Nano Cellulose Mixed-Matrix Membranes During Ultrafiltration And Hemodialysis, Kristyn Robling

Biomedical Engineering Undergraduate Honors Theses

The ninth leading cause of death in the United States is kidney disease, and hemodialysis is the process most commonly prescribed for treatment. It utilizes a selectively permeable membrane filter to remove toxins such as urea from the blood and retain necessary protein levels. However, traditional filters, such as cellulose triacetate, used during dialysis can be inefficient in terms of separation performance and reduction of fouling. Recent exploration of nanoparticles has resulted in the creation of Oxone Mediated TEMPO-Oxidized Nano Cellulose which has properties that are believed to increase hydrophilicity, increase tensile capacity, decrease membrane resistance and lower fouling, making …


Differential Patterns Of Theta Activation Underlying Various Cognitive Control Strategies, Jarrod Eisma 2020 University of Arkansas, Fayetteville

Differential Patterns Of Theta Activation Underlying Various Cognitive Control Strategies, Jarrod Eisma

Biomedical Engineering Undergraduate Honors Theses

In this study, EEG was recorded from 157 participants at the University of Arkansas as they performed three computer tasks that tested inhibitory control (Go/Nogo Task), proactive and reactive control (AX-Continuous Performance Task), and resolving response conflict (Global/Local Task- modified Flanker Task). Time-frequency analysis (ERSP) was the primary focus of this study, in order to take advantage of the temporal and frequential characteristics of EEG recordings. The ERSPs and following statistical analysis showed significantly higher midfrontal theta band (4-8 Hz) power values for target trials (those that required more cognitive control) than control trials, which indicated that the procedure was …


Comparative Genomics Of Human Mesenchymal Stem Cells And Human Mesenchymal Stem Cells Derived Vascular Smooth Muscle Cells, Samia Ismail 2020 University of Arkansas, Fayetteville

Comparative Genomics Of Human Mesenchymal Stem Cells And Human Mesenchymal Stem Cells Derived Vascular Smooth Muscle Cells, Samia Ismail

Biomedical Engineering Undergraduate Honors Theses

As of 2017, vascular diseases contributed to 23.1% of all deaths in America. To address the need for more effective and sustainable treatment options for these ailments, stem cell differentiation and implantation has emerged as a viable alternative to standard bypass and graft insertions. A completely autologous treatment can be achieved by extracting adult stem cells, differentiating them into vascular smooth muscle cells (VSMCs), and then reimplanting these cells at the affected tissue site. This study aims to investigate the efficiency of the VSMC differentiation from human mesenchymal stem cells (hMSCs) by comparing 4 cell lines of untreated hMSCs with …


Modified Stent Design For A Coronary Bifurcation Lesion, Abigail Nowell 2020 University of Arkansas, Fayetteville

Modified Stent Design For A Coronary Bifurcation Lesion, Abigail Nowell

Biological Sciences Undergraduate Honors Theses

Currently, 18.2 million adults aged 20 and older are diagnosed with Coronary Artery Disease (CAD) (Benjamin et al., 2019). Stenosis is the most common intervention. However, when a patient has a bifurcated artery, treatment becomes more difficult and is often unsuccessful. This project created a new stent and balloon complex that was tested in vitro using a gel phantom artery model. Two separate prototypes have been created and tested so far, with improvements made upon each. Testing is still underway with Prototype 2.


Quantification Of Nocturnal Blood Pressure Oscillations In Obstructive Sleep Apnea Patients, Yao Shun Chuang 2020 University of Texas at Arlington

Quantification Of Nocturnal Blood Pressure Oscillations In Obstructive Sleep Apnea Patients, Yao Shun Chuang

Bioengineering Theses - Archive

An approach to quantifying and analysis of nocturnal blood pressure (BP) variations that are elicited by sleep-disordered breathing (SDB) is presented. A sample-by-sample aggregation of the dynamic BP variations during normal breathing and BP oscillations prompted by apnea episodes is performed. This approach facilitates the visualization and analysis of BP oscillations. Nocturnal BP oscillations reflect the cardiovascular stresses that SDB mediates and may be of clinical significance. Preliminary results from an analysis of full night study of 10 SDB subjects (8 Male 2 Female, 53±5.7 yrs., Body Mass Index 34.5±7.8 kg/m2, Apnea-Hypopnea Index 63.5±28.7) are presented. Aggregate trajectory and quantitative …


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