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 …
Heuristics From Statistics—Modeling The Behavior And Perception Of Non-Rigid Materials,
2017
Justus Liebig University, Giessen
Heuristics From Statistics—Modeling The Behavior And Perception Of Non-Rigid Materials, Vivian C. Paulun, Roland W. Fleming
MODVIS Workshop
No abstract provided.
Modelling Grip Point Selection In Human Precision Grip,
2017
University of Gießen
Modelling Grip Point Selection In Human Precision Grip, Guido Maiello, Lina Klein, Vivian C. Paulun, Roland W. Fleming
MODVIS Workshop
No abstract provided.
Biomaterials For Local, Controlled Drug Delivery To The Injured Spinal Cord,
2017
Missouri University of Science and Technology
Biomaterials For Local, Controlled Drug Delivery To The Injured Spinal Cord, Alexis M. Ziemba, Ryan J. Gilbert
Chemical and Biochemical Engineering Faculty Research & Creative Works
Affecting approximately 17,000 new people each year, spinal cord injury (SCI) is a devastating injury that leads to permanent paraplegia or tetraplegia. Current pharmacological approaches are limited in their ability to ameliorate this injury pathophysiology, as many are not delivered locally, for a sustained duration, or at the correct injury time point. With this review, we aim to communicate the importance of combinatorial biomaterial and pharmacological approaches that target certain aspects of the dynamically changing pathophysiology of SCI. After reviewing the pathophysiology timeline, we present experimental biomaterial approaches to provide local sustained doses of drug. In this review, we present …
Pediatric Leukemia: Diagnosis To Treatment–A Review,
2017
Harrisburg University of Science and Technology
Pediatric Leukemia: Diagnosis To Treatment–A Review, Samantha C. Bernard, Ehab H. Abdelsamad, Paisley A. Johnson, Daniel L. Chapman, Madhukiran Parvathaneni
Faculty Works
Leukemia is cancer of the blood and bone marrow, it is the most common cancer found in children and is found to be more than one fourth of pediatric cancers. It causes white blood cells to become abnormal and the body to become weak. This deficiency in the immune system reduces the body's ability to fight infection or simple airborne illnesses, causing extensive treatment of common pathogens and cancer treatment. The present review covers all topics, from diagnosis to treatment of pediatric leukemia, as well as the stages of growth and physiological changes throughout the process. As leukemia has a …
Toward Measuring Network Aesthetics Based On Symmetry,
2017
Nankai University
Toward Measuring Network Aesthetics Based On Symmetry, Zengqiang Chen, Matthias Dehmer, Frank Emmert-Streib, Abbe Mowshowitz, Yongtang Shi
Publications and Research
In this exploratory paper, we discuss quantitative graph-theoretical measures of network aesthetics. Related work in this area has typically focused on geometrical features (e.g., line crossings or edge bendiness) of drawings or visual representations of graphs which purportedly affect an observer’s perception. Here we take a very different approach, abandoning reliance on geometrical properties, and apply information-theoretic measures to abstract graphs and networks directly (rather than to their visual representaions) as a means of capturing classical appreciation of structural symmetry. Examples are used solely to motivate the approach to measurement, and to elucidate our symmetry-based mathematical theory of network aesthetics.
Mri Applications In Tissue Engineering,
2017
University of the Pacific
Mri Applications In Tissue Engineering, Shadi Othman
Science Seminar Series
Shadi Othman of the School of Engineering and Computer Science Bioengineering Program, will speak on his research on MRI applications in tissue engineering.
Effects Of Bioengineering Scaffolds Releasing Neurotrophins And Body Weight Supported Treadmill Training On H-Reflex After Spinal Cord Injury,
2017
Rowan University
Effects Of Bioengineering Scaffolds Releasing Neurotrophins And Body Weight Supported Treadmill Training On H-Reflex After Spinal Cord Injury, Jaclyn Ann Witko
Theses and Dissertations
Changes in monosynaptic reflex, often used to study spasticity, has been tested through the H-reflex in spinal cord injury (SCI) patients after rehabilitation training, such as body weight support treadmill training or cycling. The combinational effects of rehabilitation training and a bioengineered scaffold on spasticity in SCI animal model have not been studied. We used a clinically relevant animal model of spinal cord moderate contusion at T9/T10 with BWSTT and the bioengineered scaffold PNIPAAm-g-PEG loaded with the growth factors BDNF/NT-3 to measure the efficiency of the combinational bioengineered approach to treat spasticity. Five animal groups were included in the study: …
Supplemental Vibrotactile Feedback Control Of Stabilization And Reaching Actions Of The Arm Using Limb State And Position Error Encodings,
2017
Marquette University
Supplemental Vibrotactile Feedback Control Of Stabilization And Reaching Actions Of The Arm Using Limb State And Position Error Encodings, Alexis Krueger, Psiche Giannoni, Valay Shah, Maura Casadio, Robert A. Scheidt
Biomedical Engineering Faculty Research and Publications
Deficits of kinesthesia (limb position and movement sensation) commonly limit sensorimotor function and its recovery after neuromotor injury. Sensory substitution technologies providing synthetic kinesthetic feedback might re-establish or enhance closed-loop control of goal-directed behaviors in people with impaired kinesthesia.
Erratum To: Supplemental Vibrotactile Feedback Control Of Stabilization And Reaching Actions Of The Arm Using Limb State And Position Error Encodings,
2017
Marquette University
Erratum To: Supplemental Vibrotactile Feedback Control Of Stabilization And Reaching Actions Of The Arm Using Limb State And Position Error Encodings, Alexis Krueger, Psiche Giannoni, Valay Shah, Maura Casadio, Robert A. Scheidt
Biomedical Engineering Faculty Research and Publications
The original article contained omissions mistakenly carried forward by the Production department handling this journal; these omissions related to missing ‘λ’ symbols throughout the article body, thus inaccurately representing the meaning of the associated text.
The article has now been updated to include these symbols in the appropriate sections of text to accurately reflect the conveyed implications.
Ultrasonically Responsive Tissue Engineering Scaffolds For The Temporal Control Over Osteo-Inductive Growth Factor Delivery,
2017
University of Rhode Island
Ultrasonically Responsive Tissue Engineering Scaffolds For The Temporal Control Over Osteo-Inductive Growth Factor Delivery, Catherine Linh
Senior Honors Projects
In 2012, approximately 6.8 million people in the United States were diagnosed with orthopedic injuries or diseases. Over 500,000 people in the United States underwent bone grafting procedures, which cost 2.5 billion dollars per year and can result in complications. Polymer-based grafting scaffolds can facilitate 3D bone tissue growth in a localized, sustained manner. However, bone regeneration requires the orchestration of a sequence of events. Current scaffolds based on degradation and diffusion cannot provide sequential deliveries. We aimed to design a polymer scaffold that can release one payload diffusively at early time points, followed by ultrasonically triggered release of a …
Metabolic Response To Stress Differentiates Heterogeneous Cancer Cells With Varying Metastatic Potential,
2017
University of Arkansas, Fayetteville
Metabolic Response To Stress Differentiates Heterogeneous Cancer Cells With Varying Metastatic Potential, Kinan Alhallak
Biomedical Engineering Undergraduate Honors Theses
Intratumoral heterogeneity is ubiquitously present within primary tumors and contributes to intractable behaviors such as metastasis and mutability spatiotemporally. Mounting evidence has shown that heterogeneous cell populations can adversely affect cell metabolism and metastatic potential. The cell’s only fluorescent molecules within the electron transport chain, flavin adenine dinucleotide (FAD) and nicotinamide adenine dinucleotide (NADH), can allow the quantitation of cell metabolism. We demonstrate the use of the optical redox ratio (FAD/(NADH+FAD)) to determine the metabolic behaviors of a heterogeneous panel of cells with varying metastatic programs at normal conditions and following acute hypoxia. At normal conditions, we reveal an attenuation …
A Liver-Kidney Biosubsystem,
2017
University of Texas at Arlington
A Liver-Kidney Biosubsystem, Brian J. Budnik
Bioengineering Dissertations - Archive
Each year many patients die waiting for a transplant organ to become available. Increasing the available number of transplant organs would save lives. The donor pool could be expanded if organs which are considered to be of uncertain viability could be utilized for transplantation. Currently, when there is any doubt about the viability of the organ, it is discarded. This occurs because there has been no way to confirm its viability other than to transplant it and risk the life of the recipient. Thus, many organs that are in fact good are wasted. Some might not be fully viable but …
Development Of Cancer Trap For Capturing Cancer Cells That Metastasize In The Peritoneal Cavity: A Preliminary Study,
2017
University of Texas at Arlington
Development Of Cancer Trap For Capturing Cancer Cells That Metastasize In The Peritoneal Cavity: A Preliminary Study, Chuka I. Okpokwasili
Bioengineering Theses - Archive
Our laboratory has recently developed an implantable device - cancer trap that can recruit and trap circulating cancer cells inside the bloodstream. Since several types of cancer cells can metastasize inside the peritoneal cavity, this study explores the possibility of using cancer traps to recruit esophageal and prostate cancer cells inside the peritoneum. Using prostate cancer and esophageal cancer cells as model cancers, this thesis shows that cancer traps can capture cancer cells inside the peritoneal space. EPO releasing traps was also shown to reduce the spread of prostate cancer as well as esophageal cancer compared to controls. Using multiple …
T-Cell Membrane Camouflaged Nanoparticles For Treatment Of Melanoma,
2017
University of Texas at Arlington
T-Cell Membrane Camouflaged Nanoparticles For Treatment Of Melanoma, Gizem Oter
Bioengineering Theses - Archive
Melanoma is one of the most aggressive skin cancers. The American Cancer Society reports that every hour, one person dies from melanoma. While there are a number of treatments currently available for melanoma (e.g. surgery, chemotherapy, immunotherapy, radiation therapy), these therapies face several problems, including inadequate response rates, high toxicity, and severe side effects due to non-specific delivery of anti-cancer drugs. To improve therapeutic efficiency and reduce these limitations, a multifunctional nanoparticle has been developed. Specifically, poly (lactic-co-glycolic acid) (PLGA) nanoparticles (NPs) were coated with a cellular membrane derived from the T cell hybridoma, 19LF6 endowed with a melanoma-specific anti-gp100/ …
Optical Imaging Of Metabolic Adaptability As A Biomarker For Metastatic Potential In Breast Cancer Cells,
2017
University of Arkansas, Fayetteville
Optical Imaging Of Metabolic Adaptability As A Biomarker For Metastatic Potential In Breast Cancer Cells, Mason G. Harper
Biomedical Engineering Undergraduate Honors Theses
Breast cancer metastasis is the main cause for mortality in breast cancer patients. However, knowledge of metastatic recurrence is limited, and there is a need to understand metastatic recurrence in order to treat breast cancer patients more effectively. Highly invasive metastatic breast cancer has shown to exhibit metabolic adaptability, transitioning from glycolysis to oxidative phosphorylation in the presence of microenvironmental stress. NADH and FAD are naturally occurring cofactor products during glycolysis and oxidative phosphorylation, respectively, and they are of particular importance during these metabolic processes due to their endogenous fluorescence. Measuring the ratio of fluorescence intensities of these cofactors through …
Age's Effect On Regenerative Capabilities Of Myocytes Through Satellite Cell Analysis,
2017
University of Arkansas, Fayetteville
Age's Effect On Regenerative Capabilities Of Myocytes Through Satellite Cell Analysis, Karam S. Sra
Biomedical Engineering Undergraduate Honors Theses
The objective of this study was to investigate potential effects aging had on muscle fiber area and satellite cell count in myocytes. This research could help elucidate the detrimental effect age has on regenerative capabilities whether in terms of satellite cell function or satellite cell number. Satellite cells are primarily responsible for generating new muscle tissue after being activated through mechanotransduction of injury. This study utilized immunofluorescence to examine the presence of the PAX7 gene expression, a unique marker of satellite cells, within a 12 month and 18 month old population of mice. The PAX7 marker was co-stained with DAPI …
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 …
Target-Specific Capture Of Relevant Gaseous Compounds Using Natural And Synthetic Nano And Micro Materials,
2017
Clemson University
Target-Specific Capture Of Relevant Gaseous Compounds Using Natural And Synthetic Nano And Micro Materials, Fernanda Delbuque Guerra
All Dissertations
By definition, volatile organic compounds (VOCs) are organic compounds that easily become vapor or gases. Many VOCs are hazardous air pollutants and often known for their low, often unpleasant, threshold odor, which can be below parts per billion in some cases. Nanotechnology-based materials for the remediation of gaseous pollutants has been the focus of many researchers due to their unique chemical and physical properties and enhanced reactivity when compared to bulkier materials. Among the many challenges preventing the global use of nanomaterials are the high costs of fabrication, on-site recovery, limited scale-up, potential toxicity since many of them rely on …
