Open Access. Powered by Scholars. Published by Universities.®

Biomedical Engineering and Bioengineering Commons™

Open Access. Powered by Scholars. Published by Universities.®

11,446 Full-Text Articles 22,485 Authors 5,680,319 Downloads 211 Institutions

All Articles in Biomedical Engineering and Bioengineering

Faceted Search

11,446 full-text articles. Page 276 of 471.

Computational And Performance Analysis Of A Continuous Magnetophoretic Bioseparation Chip With Alternating Magnetic Fields, Matin Golozar, Majid Molki, Jeff Darabi 2017 Southern Illinois University Edwardsville

Computational And Performance Analysis Of A Continuous Magnetophoretic Bioseparation Chip With Alternating Magnetic Fields, Matin Golozar, Majid Molki, Jeff Darabi

SIUE Faculty Research, Scholarship, and Creative Activity

This paper presents the modeling and optimization of a magnetophoretic bioseparation chip for isolating cells, such as circulating tumor cells from the peripheral blood. The chip consists of a continuous-flow microfluidic platform that contains locally engineered magnetic field gradients. The high-gradient magnetic field produced by the magnets is spatially non-uniform and gives rise to an attractive force on magnetic particles flowing through a fluidic channel. Simulations of the particle–fluid transport and the magnetic force are performed to predict the trajectories and capture lengths of the particles within the fluidic channel. The computational model takes into account key forces, such as …


Plasmonic Stimulation Of Electrically Excitable Cells, Fnu Parveen 2017 University of South Florida

Plasmonic Stimulation Of Electrically Excitable Cells, Fnu Parveen

USF Tampa Graduate Theses and Dissertations

There is a compelling need for the development of new sensory and neural prosthetic devices which are capable of more precise point stimulation. Current prosthetic devices suffer from the limitation of low spatial resolution due to the non-specific stimulation characteristics of electrical stimulation, i.e., the spread of electric fields generated. We present a visible light stimulation method for modulating the firing patterns of electrically-excitable cells using surface plasmon resonance phenomena. In in-vitro studies using gold (Au) nanoparticle-coated nanoelectrodes, we show that this method (substrate coated with nanoparticles) has potential for incorporating the technology into neural stimulation prosthetics, such as cochlear …


Simulation Studies On Ecg Vector Dipole Extraction In Liquid Medium, Pratheek Michael 2017 University of South Florida

Simulation Studies On Ecg Vector Dipole Extraction In Liquid Medium, Pratheek Michael

USF Tampa Graduate Theses and Dissertations

To circumvent some inherent problems in the conventional ECG, this research reinvestigates an ‘unassisted’ approach which enables ECG measurement without the placement of leads on the body. Employed in this research is a widely accepted assumption that the electrical activity of the heart may be represented, largely, by a 3-D time-varying current dipole (3D-CD). From the PhysioBank database, mECG and fECG data were obtained, and Singular Value Decomposition (SVD) was performed to estimate the time-varying Vector ECG dipole. To determine the sensing matrix responsible for transforming the activity of the 3D-CD into the potential distribution on the surface of the …


Polysaccharide Fabrication Platforms And Biocompatibility Assessment As Candidate Wound Dressing Materials, Donald C. Aduba Jr., Hu Yang 2017 Missouri University of Science and Technology

Polysaccharide Fabrication Platforms And Biocompatibility Assessment As Candidate Wound Dressing Materials, Donald C. Aduba Jr., Hu Yang

Chemical and Biochemical Engineering Faculty Research & Creative Works

Wound dressings are critical for wound care because they provide a physical barrier between the injury site and outside environment, preventing further damage or infection. Wound dressings also manage and even encourage the wound healing process for proper recovery. Polysaccharide biopolymers are slowly becoming popular as modern wound dressings materials because they are naturally derived, highly abundant, inexpensive, absorbent, non-toxic and non-immunogenic. Polysaccharide biopolymers have also been processed into biomimetic platforms that offer a bioactive component in wound dressings that aid the healing process. This review primarily focuses on the fabrication and biocompatibility assessment of polysaccharide materials. Specifically, fabrication platforms …


A Novel Hybrid Imaging System To Aid In Surgical Decision Making, Lawrence Yip, Madeleine Van De Kleut, Ivan Kosik, Astrid Chamson-Reig, Jeffrey JL Carson 2017 Western University

A Novel Hybrid Imaging System To Aid In Surgical Decision Making, Lawrence Yip, Madeleine Van De Kleut, Ivan Kosik, Astrid Chamson-Reig, Jeffrey Jl Carson

Western Research Forum

Background:

Breast cancer accounts for 25% of all cancer cases among women. In breast-conserving surgery, a common treatment, the tumour is excised with a healthy tissue margin. However, detection of the margin can be difficult. Current techniques to guide excision are often insufficient, and re-excision can occur up to 25% of the time.

Methods:

Photoacoustic imaging is a hybrid imaging modality that combines the advantages of optical imaging and ultrasound while using safe non-ionizing light. This project involves the development of a novel imaging system with a new scanner design to overcome common limitations and provide images to aid in …


Validation Of Postural Sway Measurements Using Wii Balance Board, Zachary Meade 2017 University of Nebraska Omaha

Validation Of Postural Sway Measurements Using Wii Balance Board, Zachary Meade

UNO Student Research and Creative Activity Fair

Standing balance measurements, such as postural sway, are vital for determining functional ability, risk of falling and recovery of injuries. Often the need to collect data outside of the typical clinical or research setting arises. However, obtaining these measurements outside of a laboratory setting can be very difficult, as the mobility of a laboratory-grade force plate (FP) is minimal, and its cost can be upwards of $20,000. The purpose of this study is to create a cheaper alternative by validating the Wii Balance Board’s (WBB; Nintendo, Redmond, Washington, USA) ability to measure postural sway patterns. The WBB can be acquired …


On Utilizing Big Data To Assess Health Levels, Elham Rastegari 2017 University of Nebraska at Omaha

On Utilizing Big Data To Assess Health Levels, Elham Rastegari

UNO Student Research and Creative Activity Fair

The general relationship between mobility/gait patterns and health conditions, has been established by many research studies. Gait patterns have been used in predicting fall incidents, assessing the movement of people with Parkinson disease and assessing gait characteristics of patients with major depression. However, not much has been reported in terms of how to utilize mobility data along with gait patterns to assess health levels and to identify early stages of certain diseases or conditions that impact mobility/gait patterns. In this project, we propose to develop a population analysis system based on recent Big Data technologies that relies on different types …


Peak Vertical Ground Reaction Force & Stance Phase Time To Assess Post-Tka Interlimb Asymmetry, Abderrahman Ouattas 2017 University of Nebraska at Omaha

Peak Vertical Ground Reaction Force & Stance Phase Time To Assess Post-Tka Interlimb Asymmetry, Abderrahman Ouattas

UNO Student Research and Creative Activity Fair

In the US, more than 500,000 TKA surgeries are performed annually, to which 97% of those are led by OA1. Although knee pain is diminished post-TKA, unilateral efficiency and walking asymmetry is still unresolved several years after the surgery2. In fact, within a minimum of 10 years after the primary TKA, almost 50% of patients undergo a secondary TKA on the contralateral limb due to OA progression3. The purpose of this study was to determine if post-Total Knee Arthroplasty peak vertical ground reaction force (pVGRF) asymmetry could be identified using stance phase time differences …


Acl Reconstruction Results In Alterations For Force Control Variability During Multidirectional Force Production, Amelia S. Lanier 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 …


The Effects Of Walking Speed On Gait Propulsion When Wearing An Ankle-Foot Orthosis, Alli Kalina 2017 University of Nebraska at Omaha

The Effects Of Walking Speed On Gait Propulsion When Wearing An Ankle-Foot Orthosis, Alli Kalina

UNO Student Research and Creative Activity Fair

Peripheral artery disease (PAD) is a cardiovascular disease that results from blockage of one or more arteries in the lower extremity. Often, patients with PAD have reduced ability to push off with the foot at the end of the gait cycle. When walking, the ankle contributes the majority of the power to propel the body into the next step. An ankle-foot orthosis (AFO) is a device that aids in ankle propulsion by increasing the energy return, thus decreasing the ankle deficit in pathological individuals. The purpose is to investigate the effect of walking speed on ankle propulsion during walking. Subjects …


Biomechanics And Imaging, Jingfeng Jiang 2017 Michigan Technological University

Biomechanics And Imaging, Jingfeng Jiang

TechTalks

From the perspective of biomechanics, my research is multidisciplinary, bridging the gap between physiology/biology and quantitative sciences. Currently, the applications are on cancer detection and differentiation, therapeutic monitoring, staging liver fibrosis, risk assessment of aneurysm rupture, and more.


Implantable Sensors For Regenerative Medicine, Keat Ghee Ong 2017 Michigan Technological University

Implantable Sensors For Regenerative Medicine, Keat Ghee Ong

TechTalks

In vivo, real-time measurement of local environmental parameters such as strain, pressure, temperature, pH, oxygen tension and specific biomarkers can be valuable for regenerative medicine research and therapies. Wireless implantable sensors are an attractive approach for certain regenerative medicine applications due to its relative simplicity and low cost. Presented here are such two implantable sensors. The first sensor is based on a miniature wireless sensor network that can digitize physical and chemical parameters and continuously stream measurements to a nearby receiver via a 2-way communication protocol. With the incorporation of a strain gauge, this sensor platform was applied to record …


Biodegradable Zinc Vascular Implant Materials, Jeremy Goldman 2017 Michigan Technological University

Biodegradable Zinc Vascular Implant Materials, Jeremy Goldman

TechTalks

Bioabsorbable metal stents are being developed to mitigate the long-term side effects associated with corrosion-resistant stents. A decade-long research with iron (Fe)- and magnesium (Mg)-based stent materials has concluded with little success. Fe produces a voluminous, retained oxide product in the arterial wall, whereas Mg and its alloys corrode too rapidly. A breakthrough in the field of biodegradable metallic stents was made in 2013 in our research team (Drs. Goldman – Biomedical Engineering and Drelich – Materials Science and Engineering) with the introduction of zinc (Zn) and its alloys, which are free of the flaws observed for Fe- and Mg-based …


Using A Respiratory Navigator Significantly Reduces Variability When Quantifying Left Ventricular Torsion With Cardiovascular Magnetic Resonance, Sean M. Hamlet, Christopher M. Haggerty, Jonathan D. Suever, Gregory J. Wehner, Kristin N. Andres, David K. Powell, Richard J. Charnigo, Brandon K. Fornwalt 2017 University of Kentucky

Using A Respiratory Navigator Significantly Reduces Variability When Quantifying Left Ventricular Torsion With Cardiovascular Magnetic Resonance, Sean M. Hamlet, Christopher M. Haggerty, Jonathan D. Suever, Gregory J. Wehner, Kristin N. Andres, David K. Powell, Richard J. Charnigo, Brandon K. Fornwalt

Electrical and Computer Engineering Faculty Publications

Background: Left ventricular (LV) torsion is an important indicator of cardiac function that is limited by high inter-test variability (50% of the mean value). We hypothesized that this high inter-test variability is partly due to inconsistent breath-hold positions during serial image acquisitions, which could be significantly improved by using a respiratory navigator for cardiovascular magnetic resonance (CMR) based quantification of LV torsion.

Methods: We assessed respiratory-related variability in measured LV torsion with two distinct experimental protocols. First, 17 volunteers were recruited for CMR with cine displacement encoding with stimulated echoes (DENSE) in which a respiratory navigator was used to measure …


A Novel Tantalum-Containing Bioglass. Part I. Structure And Solubility, Adel MF Alhalawani, Mark R. Towler 2017 Missouri University of Science and Technology

A Novel Tantalum-Containing Bioglass. Part I. Structure And Solubility, Adel Mf Alhalawani, Mark R. Towler

Chemical and Biochemical Engineering Faculty Research & Creative Works

Bio glasses are employed for surgical augmentation in a range of hard tissue applications. Tantalum is a bioactive and biocompatible transition metal that has been used as an orthopedic medical device. It has a range of biological and physical properties that make its incorporation into ionic form into bioactive glass systems promising for various clinical applications. The work herein reports the characterization and properties of novel tantalum-containing glasses. A series of glasses based on the system 48SiO2-(36-X)ZnO-6CaO-8SrO-2P2O5-XTa2O5 with X varying from 0 mol% (TA0) to 0.5 mol% (TA2) were synthesized. The …


Fluid Flow Characterization And In Silico Validation In A Rapid Prototyped Abdominal Aortic Aneurysm Model, Dean Thomas Wampler 2017 California Polytechnic State University, San Luis Obispo

Fluid Flow Characterization And In Silico Validation In A Rapid Prototyped Abdominal Aortic Aneurysm Model, Dean Thomas Wampler

Master's Theses

Aortic aneurysms are the 14th leading cause of death in the United States. Annually, abdominal aortic aneurysm (AAA) ruptures are responsible for 4500 deaths. There are another 45,000 repair procedures performed to prevent rupture, and of these approximately 1400 lead to deaths. With proper detection, the aneurysm may be treated using endovascular aneurysm repair (EVAR). Understanding how the flow of the blood within the artery is affected by the aneurysm is important in determining the growth of the aneurysm, as well as how to properly treat the aneurysm. The goal of this project was to develop a physical construct …


Quantitative Limits On Small Molecule Transport Via The Electropermeome - Measuring And Modeling Single Nanosecond Perturbations, Esin B. Sözer, Zachary A. Levine, P. Thomas Vernier 2017 Old Dominion University

Quantitative Limits On Small Molecule Transport Via The Electropermeome - Measuring And Modeling Single Nanosecond Perturbations, Esin B. Sözer, Zachary A. Levine, P. Thomas Vernier

Bioelectrics Publications

The detailed molecular mechanisms underlying the permeabilization of cell membranes by pulsed electric fields (electroporation) remain obscure despite decades of investigative effort. To advance beyond descriptive schematics to the development of robust, predictive models, empirical parameters in existing models must be replaced with physics- and biology-based terms anchored in experimental observations. We report here absolute values for the uptake of YO-PRO-1, a small-molecule fluorescent indicator of membrane integrity, into cells after a single electric pulse lasting only 6 ns. We correlate these measured values, based on fluorescence microphotometry of hundreds of individual cells, with a diffusion-based geometric analysis of pore-mediated …


Cellular Proteomes Drive Tissue-Specific Regulation Of The Heat Shock Response, Jian Ma, Christopher E. Grant, Rosemary Nadine Plagens, Lindsey N. Barrett, Karen S. Kim Guisbert, Eric Guisbert 2017 Florida Institute of Technology

Cellular Proteomes Drive Tissue-Specific Regulation Of The Heat Shock Response, Jian Ma, Christopher E. Grant, Rosemary Nadine Plagens, Lindsey N. Barrett, Karen S. Kim Guisbert, Eric Guisbert

Biomedical Engineering and Sciences Faculty Publications

The heat shock response (HSR) is a cellular stress response that senses protein misfolding and restores protein folding homeostasis, or proteostasis. We previously identified an HSR regulatory network inCaenorhabditis elegans consisting of highly conserved genes that have important cellular roles in maintaining proteostasis. Unexpectedly, the effects of these genes on the HSR are distinctly tissue-specific. Here, we explore this apparent discrepancy and find that muscle-specific regulation of the HSR by the TRiC/CCT chaperonin is not driven by an enrichment of TRiC/CCT in muscle, but rather by the levels of one of its most abundant substrates, actin. Knockdown of actin subunits …


Toxicity Evaluation Of Magnetic Hyperthermia Induced By Remote Actuation Of Magnetic Nanoparticles In 3d Micrometastasic Tumor Tissue Analogs For Triple Negative Breast Cancer, Nathanael A. Stocke, Pallavi Sethi, Amar Jyoti, Ryan Chan, Susanne M. Arnold, J. Zach Hilt, Meenakshi Upreti 2017 University of Kentucky

Toxicity Evaluation Of Magnetic Hyperthermia Induced By Remote Actuation Of Magnetic Nanoparticles In 3d Micrometastasic Tumor Tissue Analogs For Triple Negative Breast Cancer, Nathanael A. Stocke, Pallavi Sethi, Amar Jyoti, Ryan Chan, Susanne M. Arnold, J. Zach Hilt, Meenakshi Upreti

Chemical and Materials Engineering Faculty Publications

Magnetic hyperthermia as a treatment modality is acquiring increased recognition for loco-regional therapy of primary and metastatic lung malignancies by pulmonary delivery of magnetic nanoparticles (MNP). The unique characteristic of magnetic nanoparticles to induce localized hyperthermia in the presence of an alternating magnetic field (AMF) allows for preferential killing of cells at the tumor site. In this study we demonstrate the effect of hyperthermia induced by low and high dose of MNP under the influence of an AMF using 3D tumor tissue analogs (TTA) representing the micrometastatic, perfusion independent stage of triple negative breast cancer (TNBC) that infiltrates the lungs. …


Evaluation Of Procedures To Quantify Solvent Retention In Electrospun Fibers And Facilitate Solvent Removal, Anthony R. D'Amato, Nicholas J. Schaub, Jesus M. Cardenas, Erich Franz, Deniz Rende, Alexis M. Ziemba, Ryan J. Gilbert 2017 Missouri University of Science and Technology

Evaluation Of Procedures To Quantify Solvent Retention In Electrospun Fibers And Facilitate Solvent Removal, Anthony R. D'Amato, Nicholas J. Schaub, Jesus M. Cardenas, Erich Franz, Deniz Rende, Alexis M. Ziemba, Ryan J. Gilbert

Chemical and Biochemical Engineering Faculty Research & Creative Works

Electro spun fiber scaffolds crafted from polyesters are studied extensively for potential tissue engineering applications. For translation of electro spun fibers into the clinic, the FDA requires analysis and quantification of any organic solvent that may be retained in the fibers since many organic solvents can negatively affect cells and tissues. If a significant amount of solvent is retained, then developing procedures for efficient solvent removal may enhance the clinical potential of these materials. In this study we use fourier transform infrared spectroscopy (FTIR), thermogravimetric analysis (TGA), and nuclear magnetic resonance spectroscopy (NMR) to analyze solvent retention. A correlative analysis …


Digital Commons powered by bepress