Custom Software For The 3d Printing Of Patient Specific Plate Bending Templates In Pelvic Fracture Repair.,
2017
University of Louisville
Custom Software For The 3d Printing Of Patient Specific Plate Bending Templates In Pelvic Fracture Repair., Gordon B Lents
Electronic Theses and Dissertations
The purpose of this work is to reduce the operative time and blood loss incurred during open reduction and internal fixation (ORIF) of traumatic pelvic injuries through the creation of patient specific bending templates for reconstruction plates. These templates are 3D printed in a resin capable of being sterilized and taken into the operating room so that bending may be performed by the surgeon before the patient is opened or by another team member in parallel with the surgeon.
A novel software extension was created in 3D modeling software to allow a surgeon to individually position screws on a pelvic …
A Multiscale Modeling Study Of The Mammary Gland,
2017
University of New Mexico
A Multiscale Modeling Study Of The Mammary Gland, Joseph D. Butner
Biomedical Engineering ETDs
Multiscale, hybrid computer modeling has emerged as a valuable tool in the fields of computational systems biology and mathematical oncology. In this work, we present an overview of the motivations for, and development and implementation of, three hybrid multiscale models of the mammary gland system and early stage ductal carcinoma in situ (DCIS) in the gland. Pubertal mammary gland development was described first using a two-dimensional, lattice-based hybrid agent-based model description of the mammary terminal end bud (TEB), and then with a three-dimensional lattice-free TEB model. Both models implement a discrete, agent-based description of the cell scale, and a continuum, …
Understanding The Surface Fouling Mechanism Of Ultrananocrystalline Diamond Microelectrodes Using Microfluidics For Neurochemical Detection,
2017
Louisiana Tech University
Understanding The Surface Fouling Mechanism Of Ultrananocrystalline Diamond Microelectrodes Using Microfluidics For Neurochemical Detection, An-Yi Chang
Doctoral Dissertations
Electrochemical methods are widely used for chronic neurochemical sensing, but thus far, the organic solution redox reactions fouled the electrodes' surface. It caused the reduction of sensitivity and the electrodes' lifetime.
Here, we present the boron-doped nanocrystalline diamond microelectrodes (BDUNCD) as the next generation electrode material for neurochemical sensor development. To aid in long-term chronic monitoring of neurochemicals, they have a wide window of electrochemical potential, extremely low background current, and excellent chemical inertness. The main research goal is to reduce the rate of electrode fouling due to the reaction by-products, and significantly extend their useful lifetime.
We systematically characterize …
A Novel Approach To Increase Upper Extremity Active Range Of Motion For Individuals With Duchenne Muscular Dystrophy Using Admittance Control,
2017
New Jersey Institute of Technology
A Novel Approach To Increase Upper Extremity Active Range Of Motion For Individuals With Duchenne Muscular Dystrophy Using Admittance Control, Madeline Catherine Corrigan
Dissertations
Duchenne muscular dystrophy (DMD), a neuromuscular disease with a prevalence of 1 in 3,500-5,000 male births, results in progressive muscle weakness causing loss of independence and imposing the demands of costly and intrusive assistive support and personal care for daily living tasks. Upper extremity function begins to decline while ambulation is still possible and gradually progresses with time, playing a prominent role in loss of independence. Importantly, upper extremity functional limitations exist despite residual muscle strength that is insufficient to lift the arms against gravity. Presently, there exist a number of commercially available assistive devices aimed at augmenting upper extremity …
A Tunable, Three-Dimensional In Vitro Culture Model Of Growth Plate Cartilage Using Alginate Hydrogel Scaffolds,
2017
University of Nebraska Medical Center
A Tunable, Three-Dimensional In Vitro Culture Model Of Growth Plate Cartilage Using Alginate Hydrogel Scaffolds, Alek G. Erickson, Taylor D. Laughlin, Sarah Romereim, Catherine Sargus-Patino, Angela K. Pannier, Andrew T. Dudley
Department of Agricultural and Biological Systems Engineering: Faculty Publications
Defining the final size and geometry of engineered tissues through precise control of the scalar and vector components of tissue growth is a necessary benchmark for regenerative medicine, but it has proved to be a significant challenge for tissue engineers. The growth plate cartilage that promotes elongation of the long bones is a good model system for studying morphogenetic mechanisms because cartilage is composed of a single cell type, the chondrocyte; chondrocytes are readily maintained in culture; and growth trajectory is predominately in a single vector. In this cartilage, growth is generated via a differentiation program that is spatially and …
Blood-Brain Barrier-On-A-Chip Systems Based On 3d Printing,
2017
University of Arkansas, Fayetteville
Blood-Brain Barrier-On-A-Chip Systems Based On 3d Printing, Cade I. Harding
Mechanical Engineering Undergraduate Honors Theses
This research focused on the design and testing of a blood-brain barrier (BBB)-on-a-chip microfluidic device produced using 3D printing. First, COMSOL simulations were used to define dimensions of the microchannel that would most accurately replicate the flow environment imposed on the blood-brain barrier, the wall shear stress being the most important characteristic. In using COMSOL, water was used as the simulated fluid and also the testing fluid in the fabricated devices. Therefore, the microsystem is designed to produce the BBB environment using water instead of blood. The numerical simulation parameters were based on theoretical calculations performed to scale up the …
Characterization Of Murine Breast Cancer Cell Lines For Anti-Cancer Vaccine,
2017
University of Arkansas, Fayetteville
Characterization Of Murine Breast Cancer Cell Lines For Anti-Cancer Vaccine, Haven N. Frazier
Biological Sciences Undergraduate Honors Theses
Breast cancer is the most commonly diagnosed cancer in women and the second leading cause of cancer death among women in the United States (1). While treatments involving radiation and chemotherapy currently exist, disease must be detected early in order for the treatments to be somewhat effective, and there is no effective treatment after metastasis occurs (2). Additionally, current therapies do not mitigate tumor immunosuppression. Decreasing the tumor-associated immunosuppressive conditions while activating antitumor immunity could prevent recurrence and metastasis, possibly leading to an effective treatment for cancer (3). Tumor cell vaccines could possibly address this issue and have become a …
Optimizing A Standard Fasting Time For 2-Nbdg Uptake Studies In Murine Breast Cancers,
2017
University of Arkansas, Fayetteville
Optimizing A Standard Fasting Time For 2-Nbdg Uptake Studies In Murine Breast Cancers, Andrew C. Briley
Biomedical Engineering Undergraduate Honors Theses
Recently, there has been a larger use of 2-NBDG, a fluorescent glucose analog, to study glucose uptake in different cell types. These cell types have ranged anywhere from bacteria to human cancer cells. However, there has yet to be a standard procedure and practice for using 2-NBDG. In this study, our goal is to create a standard fasting time for the cells before introducing 2-NBDG to them. This study uses 4T07 cells, a murine breast cancer cell line, to help optimize this fasting time. These cells were fasted at different time points in order to find the ideal fasting time. …
Design And Validation Of An In Vivo Long-Term Attachment Capsule Robot,
2017
University of Nebraska-Lincoln
Design And Validation Of An In Vivo Long-Term Attachment Capsule Robot, Wanchuan Xie
Department of Mechanical and Materials Engineering: Dissertations, Theses, and Student Research
The invention of capsule endoscopy (CE) made the non-invasive monitoring of the entire small bowel possible and became the primary means for diagnosing small bowel pathology. In the last decade, capsule robots have been transformed from diagnostic devices into a widely studied biomedical platform with the potential for active locomotion, drug delivery and therapeutic capabilities. To perform accurate on-site drug release and therapy, it is necessary for a capsule robot to be able to attach to the intestinal tissue and maintain its position long-term. Design challenges derive from the task of long-term mucosal adhesion which requires firm, quick-response attachment without …
The Agile Approach In Pharmaceutical Software Development,
2017
University of Connecticut - Storrs
The Agile Approach In Pharmaceutical Software Development, Priyal Bhargava
Honors Scholar Theses
The Agile development model is increasingly being adopted by the pharmaceutical industry for software development. Currently, there are several software projects under development by pharmaceutical companies that are using the Agile process. Other methodologies such as the Waterfall process, a traditional approach to project management, have evolved over time and been compared against the Agile method. Also there are conflicts of interest which should be taken into consideration when in a pharmaceutical setting such as abiding by FDA regulations. In addition, Agile’s sub-divisional approaches add to the versatility of how this iterative approach is applied in the pharmaceutical industry. The …
A Novel Biochamberfor Modeling Of Atherosclerotic Arteries: In Vitro Capabilities And Applications,
2017
University of Nebraska-Lincoln
A Novel Biochamberfor Modeling Of Atherosclerotic Arteries: In Vitro Capabilities And Applications, Iman Salafian, Angelos Karagiannis, Benjamin S. Terry, Yiannis S. Chatzizisis
Department of Mechanical and Materials Engineering: Dissertations, Theses, and Student Research
Atherosclerosis is a chronic disease that involves the lipid accumulation and inflammation of the arterial wall [1,2]. Despite great efforts,its pathophysiology has not been fully elucidated. Existent drugs can reduce its progression but there are no available drugs to prevent its complications [3,4]. Atherosclerosis remains the leading global cause of death[5].
The purpose of this work is to design and build a customized biochamber which can be used for the following studies:
•Study the pathophysiology of atherosclerosis in vitro & ex vivo
•Investigate the mechanisms of atherosclerotic plaque disruption
•Examine the direct effect of different anti-atherosclerotic drugs on lesions
•Use …
Chemical And Physical Priming Of Human Mesenchymal Stem
Cells To Alter Nonviral Gene Delivery Outcomes,
2017
University of Nebraska-Lincoln
Chemical And Physical Priming Of Human Mesenchymal Stem Cells To Alter Nonviral Gene Delivery Outcomes, Tyler Kozisek, Andrew Hamann, Amy Mantz, Mathias Schubert, Eva Schubert, Angela K. Pannier
Department of Agricultural and Biological Systems Engineering: Dissertations, Theses, and Student Research
Human Mesenchymal Stem Cells: Human mesenchymal stem cells (hMSCs) are a multipotent cell, meaning they are able to differentiate into a more mature cell type, such as osteocytes, chondrocytes, and adipocytes, that are found in numerous tissues in the human body, such as bone marrow, fat, and muscle. Since hMSCs can be derived from adult human tissues, they do not have the same ethical concern associated with them as other stem cells, such as embryonic stem cells. Due to hMSCs multipotency and ease of obtaining, they have become one of the most widely researched stem cell types in areas such …
Improvement Of Fluorescence-Based Microfluidic Dna Analyzers,
2017
Louisiana Tech Unviersity
Improvement Of Fluorescence-Based Microfluidic Dna Analyzers, Collin Tranter
Doctoral Dissertations
A tremendous effort continues in the development of micro-total-analysis-systems; in support of this, many chemical passivation methods have been developed to enhance the biocompatibility of such microfluidic systems. However, the suitability of these passivation techniques to many fluorescence-based assays still remains inconsistent. This part of this work is focused on the performance of a third generation intercalating DNA dye when used within microfluidic devices treated with a select variety of passivating coatings. The results of these tests indicate that passivation coatings which are intended to shed DNA based on electrostatic repulsion will in fact imbibe the fluorescent DNA intercalating dye …
Acl Reconstruction Results In Alterations For Force Control Variability During Multidirectional Force Production,
2017
University of Nebraska at Omaha
Acl Reconstruction Results In Alterations For Force Control Variability During Multidirectional Force Production, Amelia S. Lanier
UNO Student Research and Creative Activity Fair
After anterior cruciate ligament (ACL) rupture most will undergo reconstructive surgery. Within the first year after surgery 25% of patients will re-tear their ACL. Most of those injured attempt to return to sports which include running and cutting. The ability to produce appropriate ground reaction forces may be crucial for the successful return to sports without re-injury. Understanding stability of multidirectional ground reaction force (mGRF) production in healthy and ACL reconstructed (ACL-r) patients can lend insight to the high instance of re-injury. Typically, stability has been measured using linear analyses, but these analyses cannot capture the subtle time varying changes …
Application Of Argon Plasma Technology To Hydrophobic And Hydrophilic Microdroplet Generation In Pdms Microfluidic Devices,
2017
California Polytechnic State University, San Luis Obispo
Application Of Argon Plasma Technology To Hydrophobic And Hydrophilic Microdroplet Generation In Pdms Microfluidic Devices, Brennan P. Graham
Master's Theses
Abstract Application of Argon Plasma Technology to Hydrophobic and Hydrophilic Microdroplet Generation in PDMS Microfluidic Devices Brennan Graham Microfluidics has gained popularity over the last decade due to the ability to replace many large, expensive laboratory processes with small handheld chips with a higher throughput due to the small channel dimensions [1]. Droplet microfluidics is the field of fluid manipulation that takes advantage of two immiscible fluids to create droplets from the geometry of the microchannels. This project includes the design of a microfluidic device that applies the results of an argon plasma surface treatment to polydimethylsiloxane (PDMS) to successfully …
Serum Comp And The Inflammatory Environment Of The Knee Before And After Exercise-Induced Load,
2017
Brigham Young University
Serum Comp And The Inflammatory Environment Of The Knee Before And After Exercise-Induced Load, Alyssa Evans, Robert D. Hyldahl, Sarah T. Ridge, Sunku Kwon, Ty J. Hopkins, Eric R. Robinson, Matthew K. Seeley
Biomedical Engineering Western Regional Conference
The purpose of this study was to determine how accurately serum COMP represents inflammatory cytokine levels, within the knee, before and after exercise.
Cytokines included: GM-CSF, IFNa2, IL-10, IL-12p40, IL-13, IL-15, IL-1ra, IL1b, IL1a, IL-4, IL-6, IL-8, IP-10, MCP-1, MIP-1a, MIP-1b and IL-17.
Super-Hydrophobic And Anti-Microbial Surfaces Via Carbon Infiltrated-Carbon Nanotubes,
2017
Brigham Young University
Super-Hydrophobic And Anti-Microbial Surfaces Via Carbon Infiltrated-Carbon Nanotubes, Christian Dalon Esplin, Anton Bowden, Brian Jensen
Biomedical Engineering Western Regional Conference
No abstract provided.
A Nanocomposite Sensor Neck Sleeve For Tracking In Vivo Spine Kinematics In The Alpaca,
2017
Brigham Young University
A Nanocomposite Sensor Neck Sleeve For Tracking In Vivo Spine Kinematics In The Alpaca, Colton Porter Graham, Anton Bowden
Biomedical Engineering Western Regional Conference
Chronic low back pain in the US is often attributed to intervertebral disc degeneration. Camelids, particularly alpacas, pose a potential model for spinal treatment due to similarity of the spinal structure and vertical loading. Alpacas also exhibit a high rate of natural disc degeneration. To gain more understanding about how disc degeneration is caused in alpacas it is necessary to understand the loading and motion of the alpaca cervical spine. The goal of the present work was to incorporate nanocomposite sensors into a custom-designed neck sleeve to track the daily in-vivo neck motion of an alpaca in its natural environment.
Separation Of Bacteria From Blood For Rapid Sepsis Diagnosis,
2017
Brigham Young University - Provo
Separation Of Bacteria From Blood For Rapid Sepsis Diagnosis, Mahsa Alizadeh, Daniel Scott Mc Clellan, Colin Grant Bledsoe, Rae Blanco, Madison Melville, William G. Pitt
Biomedical Engineering Western Regional Conference
No abstract provided.
Mri Field Mapping Using Bssfp Elliptical Signal Model,
2017
Brigham Young University
Mri Field Mapping Using Bssfp Elliptical Signal Model, Joseph Valentine, Meredith Taylor, Steven Whitaker, Michael Hoff, Neal Bangerter
Biomedical Engineering Western Regional Conference
MRI, Field Mapping, bSSFP, ssfp, Elliptical Signal model, ellipse, phase unwrapping
