Open Access. Powered by Scholars. Published by Universities.®
- Institution
-
- Marquette University (719)
- University of Nebraska - Lincoln (697)
- California Polytechnic State University, San Luis Obispo (643)
- Old Dominion University (523)
- Engineering Conferences International (510)
-
- New Jersey Institute of Technology (474)
- Utah State University (465)
- University of Arkansas, Fayetteville (432)
- Purdue University (417)
- University of Texas at Arlington (366)
- Wright State University (321)
- Virginia Commonwealth University (314)
- Clemson University (300)
- University of Kentucky (296)
- Missouri University of Science and Technology (287)
- City University of New York (CUNY) (223)
- Michigan Technological University (214)
- Washington University in St. Louis (211)
- Cleveland State University (193)
- University of South Florida (166)
- Dartmouth College (152)
- Technological University Dublin (152)
- Santa Clara University (148)
- Wayne State University (137)
- Boise State University (128)
- Rowan University (126)
- University of South Carolina (124)
- Louisiana Tech University (117)
- Al Esraa University (115)
- Florida Institute of Technology (108)
- Keyword
-
- Biomechanics (190)
- Biomedical Sciences (144)
- Tissue engineering (133)
- Biomaterials (119)
- Engineering (118)
-
- Cancer (111)
- Department of Biomedical Engineering (104)
- Machine learning (100)
- Microfluidics (98)
- Humans (93)
- Applied sciences (92)
- Biomedical Engineering (91)
- Nanoparticles (88)
- Biomedical engineering (87)
- Daniel Felix Ritchie School of Engineering and Computer Science (86)
- Bone (82)
- Drug delivery (79)
- Electrospinning (79)
- Department of Biomedical, Industrial & Human Factors Engineering (78)
- Bioengineering (75)
- Tissue Engineering (72)
- Electroporation (67)
- EEG (64)
- Hydrogel (62)
- Deep learning (58)
- Gait (57)
- Ultrasound (57)
- Imaging (56)
- Rehabilitation (54)
- Finite element analysis (53)
- Publication Year
- Publication
-
- Biomedical Engineering Faculty Research and Publications (600)
- Theses and Dissertations (530)
- Theses (386)
- Master's Theses (304)
- Department of Agricultural and Biological Systems Engineering: Faculty Publications (297)
-
- Biomedical Engineering (278)
- Chemical and Biochemical Engineering Faculty Research & Creative Works (247)
- Cell Culture Engineering XV (246)
- Electronic Theses and Dissertations (232)
- Browse all Theses and Dissertations (224)
- Bioengineering Theses - Archive (194)
- McKelvey School of Engineering Graduate Student Theses & Dissertations (190)
- Cells and Materials (166)
- USF Tampa Graduate Theses and Dissertations (162)
- Bioelectrics Publications (158)
- Biomedical Engineering Undergraduate Honors Theses (154)
- All Dissertations (148)
- Graduate Theses and Dissertations (133)
- Bioengineering Dissertations - Archive (131)
- The Summer Undergraduate Research Fellowship (SURF) Symposium (127)
- Weldon School of Biomedical Engineering Faculty Publications (127)
- Doctoral Dissertations (122)
- All Theses (120)
- ETD Archive (119)
- Al-Esraa University College Journal for Engineering Sciences (115)
- Dissertations (109)
- Dissertations and Theses (107)
- Publications and Research (103)
- Biomedical, Industrial & Human Factors Engineering Faculty Publications (95)
- All Graduate Theses and Dissertations, Spring 1920 to Summer 2023 (94)
- Publication Type
- File Type
Articles 5881 - 5910 of 11502
Full-Text Articles in Engineering
Development Of A Mathematical Model To Estimate Intra-Tumor Oxygen Concentrations Through Multi-Parametric Imaging, Chung-Wein Lee, Keith Stantz, Phd
Development Of A Mathematical Model To Estimate Intra-Tumor Oxygen Concentrations Through Multi-Parametric Imaging, Chung-Wein Lee, Keith Stantz, Phd
School of Health Sciences Faculty Publications
Background
Tumor hypoxia is involved in every stage of solid tumor development: formation, progression, metastasis, and apoptosis. Two types of hypoxia exist in tumors—chronic hypoxia and acute hypoxia. Recent studies indicate that the regional hypoxia kinetics is closely linked to metastasis and therapeutic responses, but regional hypoxia kinetics is hard to measure. We propose a novel approach to determine the local pO2 by fusing the parameters obtained from in vivo functional imaging through the use of a modified multivariate Krogh model.
Methods
To test our idea and its potential to translate into an in vivo setting through the use of …
Cortical Oscillations During A Lateral Balance Perturbation While Walking, Joseph Lee
Cortical Oscillations During A Lateral Balance Perturbation While Walking, Joseph Lee
Dissertations (1934 -)
The role of sensory systems in the cortical control of dynamic balance was examined using electroencephalography (EEG) recordings during balance perturbations while walking. Specifically, we examined the impact of sensory deficits on cortical oscillations using vibratory stimuli to suppress sensory feedback and by comparing cortical oscillations during balance perturbations while walking in people with sensory deficits associated with cervical myelopathy and neurologically intact controls. Balance during walking provides a rich framework for investigating cortical control using EEG during a functionally relevant task. While this approach is promising, substantial technical challenges remain in recording and processing EEG in the noisy, artifact …
Photoreceptor Inner Segment Morphology In Best Vitelliform Macular Dystrophy, Drew Scoles, Yusufu N. Sulai, Robert F. Cooper, Brian P. Higgins, Ryan D. Johnson, Joseph Carroll, Alfredo Dubra, Kimberly E. Stepien
Photoreceptor Inner Segment Morphology In Best Vitelliform Macular Dystrophy, Drew Scoles, Yusufu N. Sulai, Robert F. Cooper, Brian P. Higgins, Ryan D. Johnson, Joseph Carroll, Alfredo Dubra, Kimberly E. Stepien
Biomedical Engineering Faculty Research and Publications
PURPOSE
To characterize outer retina structure in best vitelliform macular dystrophy (BVMD) and to determine the effect of macular lesions on overlying and adjacent photoreceptors.
METHODS
Five individuals with BVMD were followed prospectively with spectral domain optical coherence tomography and confocal and nonconfocal split-detector adaptive optics scanning light ophthalmoscopy (AOSLO). The AOSLO cone photoreceptor mosaic images were obtained within and around retinal lesions. Cone density was measured inside and outside lesions. In 2 subjects, densities were compared with published measurements acquired ∼2.5 years before. One subject was imaged 3 times over a 5-month period.
RESULTS
The AOSLO imaging demonstrated that …
A Fourier Description Of Covariance, And Separation Of Simultaneously Encoded Slices With In-Plane Acceleration In Fmri, Mary C. Kociuba
A Fourier Description Of Covariance, And Separation Of Simultaneously Encoded Slices With In-Plane Acceleration In Fmri, Mary C. Kociuba
Dissertations (1934 -)
Functional magnetic resonance imaging (fMRI) studies aim to identify localized neural regions associated with a cognitive task performed by the subject. An indirect measure of the brain activity is the blood oxygenation level dependent (BOLD) signal fluctuations observed within the complex-valued spatial frequencies measured over time. The standard practice in fMRI is to discard the phase information after image reconstruction, even with evidence of biological task-related change in the phase time-series. In the first aim of this dissertation, a complex-valued time-series covariance is derived as a linear combination of second order temporal Fourier frequency coefficients. As opposed to magnitude-only analysis, …
Direct Measurement Of Actual Levels Of Nitric Oxide (No) In Cell Culture Conditions Using Soluble No Donors, Weilue He, Megan C. Frost
Direct Measurement Of Actual Levels Of Nitric Oxide (No) In Cell Culture Conditions Using Soluble No Donors, Weilue He, Megan C. Frost
Michigan Tech Publications, Part 1
Applying soluble nitric oxide (NO) donors is the most widely used method to expose cells of interest to exogenous NO. Because of the complex equilibria that exist between components in culture media, the donor compound and NO itself, it is very challenging to predict the dose and duration of NO cells actually experience. To determine the actual level of NO experienced by cells exposed to soluble NO donors, we developed the CellNO Trap, a device that allows continuous, real-time monitoring of the level of NO adherent cells produce and/or experience in culture without the need to alter cell culturing procedures. …
Engineering Synthetic Feedback To Promote Recovery Of Self-Feeding Skills In People With Sensory Deficits Due To Stroke, Alexis Krueger
Engineering Synthetic Feedback To Promote Recovery Of Self-Feeding Skills In People With Sensory Deficits Due To Stroke, Alexis Krueger
Master's Theses (2009 -)
Kinesthesia refers to sensations of limb position and movement, and deficits of upper limb kinesthetic feedback are common after stroke, impairing stroke survivors’ ability to perform the fundamental reaching and stabilization behaviors needed for daily functions like self-feeding. I attempt to mitigate the negative impact of post-stroke kinesthesia deficits by evaluating the utility of vibrotactile sensory substitution to restore closed-loop kinesthetic feedback of the upper limb. As a first step, this study evaluated performance in healthy individuals during fundamental reaching, stabilization, and tracking behaviors while using supplemental vibrotactile feedback encoding either limb state information or goal-aware error information. First, I …
Characterization Of Histological Changes In The Microvasculature Of Rat Skeletal Muscle After Spinal Cord Injury, Sally Lin
Master's Theses (2009 -)
The purpose of this study was to determine whether there are histological changes in the microvasculature of rat skeletal muscle following chronic spinal cord injury both above and below the level of injury. This study is important because microvascular structure likely impacts muscle performance and cardiovascular health. To the best of our knowledge, this is the only study to investigate microvascular structure within rat skeletal muscle after spinal cord injury. We hypothesized structural remodeling would occur in both the myofibers and microvasculature, which would then manifest in differences in myofiber cross sectional area and microvascular diameter, wall thickness, wall to …
Evaluation Of An Actuated Wrist Orthosis For Use In Assistive Upper Extremity Rehabilitation, Devon Holley
Evaluation Of An Actuated Wrist Orthosis For Use In Assistive Upper Extremity Rehabilitation, Devon Holley
Master's Theses (2009 -)
Cerebral palsy (CP) is a neurological condition caused by damage to motor control centers of the brain. This leads to physical and cognitive deficiencies that can reduce an individual’s quality of life. Specifically, motor deficiencies of the upper extremity can make it difficult for an individual to complete everyday tasks, including eating, drinking, getting dressed, or combing their hair. Physical therapy, involving repetitive tasks, has been shown to be effective in training normal motion of the limb by invoking the neuroplasticity of the brain and its ability to adapt in order to facilitate motor learning. Creating a device for use …
Mechanotransduction Modulates The Effect Of Mechanical Forces (Fluid Shear Stress And Cyclic Strain) On Embryonic Stem Cell Differentiation Toward Vascular Endothelial Cells, Maria Nikmanesh
Dissertations, Theses, and Capstone Projects
The isolation of human ES cells (hES) in 1998 remarkably elevated the interest in the cell therapy capability of ES cells and moved this concept one step closer to reality. Embryonic stem cells with their potential for both self-renewal and directed differentiation have received increasing attention in applications in tissue engineering and repair, cell therapy, and regenerative medicine.
The differentiation of embryonic stem cells into desired lineages depends on the chemical environment of the “niche”, and for certain lineages such as the vascular lineage that must function in a mechanical environment, the timely imposition of mechanical forces is critical. In …
Angela Akude's Thesis Defense | Biological Engineering, Usu College Of Engineering
Angela Akude's Thesis Defense | Biological Engineering, Usu College Of Engineering
College of Engineering News
The Biological Engineering Department is pleased to annouce that Angela Akude will be presenting her thesis defense on Thursday, October 6, 2016 at 9 am in the BENG Conference Room (ENGR 402C).
Engineering And Perception, Maribel Vazquez
Engineering And Perception, Maribel Vazquez
Open Educational Resources
An introductory seminar to High School and Freshman-Level Undergraduates that describes how several Biomedical Engineering innovations have been motivated by our senses of sight, sound, smell, taste and touch.
Mechanical Stimulation Increases Knee Meniscus Gene Rna-Level Expression In Adipose-Derived Stromal Cells, Elizabeth M. Meier, Bin Wu, Aamir Siddiqui, Donna G. Tepper, Michael T. Longaker, Mai T. Lam
Mechanical Stimulation Increases Knee Meniscus Gene Rna-Level Expression In Adipose-Derived Stromal Cells, Elizabeth M. Meier, Bin Wu, Aamir Siddiqui, Donna G. Tepper, Michael T. Longaker, Mai T. Lam
Biomedical Engineering Faculty Research Publications
Background: Efforts have been made to engineer knee meniscus tissue for injury repair, yet most attempts have been unsuccessful. Creating a cell source that resembles the complex, heterogeneous phenotype of the meniscus cell remains difficult. Stem cell differentiation has been investigated, mainly using bone marrow mesenchymal cells and biochemical means for differentiation, resulting in no solution. Mechanical stimulation has been investigated to an extent with no conclusion. Here, we explore the potential for and effectiveness of mechanical stimulation to induce the meniscal phenotype in adipose-derived stromal cells.
Methods: Human adipose-derived stromal cells were chosen for their fibrogenic nature and conduciveness …
Technology-Assisted Stroke Rehabilitation In Mexico: A Pilot Randomized Trial Comparing Traditional Therapy To Circuit Training In A Robot/Technology-Assisted Therapy Gym, Karla Bustamante Valles, Sandra Montes, Maria De Jesus Madrigal, Adan Burciaga, María Elena Martínez, Michelle J. Johnson
Technology-Assisted Stroke Rehabilitation In Mexico: A Pilot Randomized Trial Comparing Traditional Therapy To Circuit Training In A Robot/Technology-Assisted Therapy Gym, Karla Bustamante Valles, Sandra Montes, Maria De Jesus Madrigal, Adan Burciaga, María Elena Martínez, Michelle J. Johnson
Biomedical Engineering Faculty Research and Publications
Background
Stroke rehabilitation in low- and middle-income countries, such as Mexico, is often hampered by lack of clinical resources and funding. To provide a cost-effective solution for comprehensive post-stroke rehabilitation that can alleviate the need for one-on-one physical or occupational therapy, in lower and upper extremities, we proposed and implemented a technology-assisted rehabilitation gymnasium in Chihuahua, Mexico. The Gymnasium for Robotic Rehabilitation (Robot Gym) consisted of low- and high-tech systems for upper and lower limb rehabilitation. Our hypothesis is that the Robot Gym can provide a cost- and labor-efficient alternative for post-stroke rehabilitation, while being more or as effective as …
Microfluidic Devices In Biotechnology, Maribel Vazquez
Microfluidic Devices In Biotechnology, Maribel Vazquez
Open Educational Resources
This lecture/laboratory course focuses on the fundamentals of modern microfluidic devices with applications to biomedical measurements. Students will review fundamental properties of microfluidic systems including the effects of viscous flow, heat transfer, and electromagnetic phenomena on biological systems. Multiple laboratory modules will expose students to photolithographic and surface treatment techniques required for device development. An end of term project will require students to analyze designs of upcoming biomedical inventions and present their critiques via written report and oral presentation.
Polymeric Prodrug, David A. Puleo, Thomas D. Dziubla, Theodora Asafo-Adjei
Polymeric Prodrug, David A. Puleo, Thomas D. Dziubla, Theodora Asafo-Adjei
Biomedical Engineering Faculty Patents
The presently-disclosed subject matter includes compounds that comprise an initiator and an active agent that is covalently bonded to the initiator through a ring-opening polymerization process, an atom-transfer radical polymerization process, a Michael addition reaction, or a ring-opening metathesis polymerization process. In some embodiments the active agent includes simvastatin. The presently-disclosed subject matter also includes methods for making the compositions and methods for using the compositions to treat tissue wounds.
An Interactive Videogame Designed To Improve Respiratory Navigator Efficiency In Children Undergoing Cardiovascular Magnetic Resonance, Sean M. Hamlet, Christopher M. Haggerty, Jonathan D. Suever, Gregory J. Wehner, Jonathan D. Grabau, Kristin N. Andres, Moriel H. Vandsburger, David K. Powell, Vincent L. Sorrell, Brandon K. Fornwalt
An Interactive Videogame Designed To Improve Respiratory Navigator Efficiency In Children Undergoing Cardiovascular Magnetic Resonance, Sean M. Hamlet, Christopher M. Haggerty, Jonathan D. Suever, Gregory J. Wehner, Jonathan D. Grabau, Kristin N. Andres, Moriel H. Vandsburger, David K. Powell, Vincent L. Sorrell, Brandon K. Fornwalt
Saha Cardiovascular Research Center Faculty Publications
Background: Advanced cardiovascular magnetic resonance (CMR) acquisitions often require long scan durations that necessitate respiratory navigator gating. The tradeoff of navigator gating is reduced scan efficiency, particularly when the patient’s breathing patterns are inconsistent, as is commonly seen in children. We hypothesized that engaging pediatric participants with a navigator-controlled videogame to help control breathing patterns would improve navigator efficiency and maintain image quality.
Methods: We developed custom software that processed the Siemens respiratory navigator image in real-time during CMR and represented diaphragm position using a cartoon avatar, which was projected to the participant in the scanner as visual feedback. The …
Imaging Right Ventricular Function To Predict Outcome In Pulmonary Arterial Hypertension, Alessandro Bellofiore, Melanie Brewis, Rebecca Vanderpool, Naomi Chesler, Martin Johnson, Robert Naeije, Andrew Peacock
Imaging Right Ventricular Function To Predict Outcome In Pulmonary Arterial Hypertension, Alessandro Bellofiore, Melanie Brewis, Rebecca Vanderpool, Naomi Chesler, Martin Johnson, Robert Naeije, Andrew Peacock
Faculty Publications
Right ventricular (RV) function is a major determinant of outcome in pulmonary arterial hypertension (PAH). However, uncertainty persists about the optimal method of evaluation.MethodsWe measured RV end-systolic and end-diastolic volumes (ESV and EDV) using cardiac magnetic resonance imaging and RV pressures during right heart catheterization in 140 incident PAH patients and 22 controls. A maximum RV pressure (Pmax) was calculated from the nonlinear extrapolations of early and late systolic portions of the RV pressure curve. The gold standard measure of RV function adaptation to afterload, or RV–arterial coupling (Ees/Ea) was estimated by the stroke volume (SV)/ESV ratio (volume method) or …
Brain Encoding Of Saltatory Velocity-Scaled Somatosensory Array In Glabrous Hand Among Neurotypical Adults, Hyuntaek Oh
Brain Encoding Of Saltatory Velocity-Scaled Somatosensory Array In Glabrous Hand Among Neurotypical Adults, Hyuntaek Oh
Department of Agricultural and Biological Systems Engineering: Dissertations, Theses, and Student Research
Neurons in human somatosensory cortex are somatotopically organized, with sensation from the lower limbs mediated by neurons near the midline of the brain, whereas sensations from the upper body, hands and orofacial surfaces are mediated by neurons located more laterally in a sequential map. Neurons in Brodmann's area (BA) 3b are exquisitely sensitive to tactile stimulation of these skin surfaces. Moreover, the location, velocity and direction of tactile stimuli on the skin's surface are discriminable features of somatosensory processing, however their role in fine motor control and passive detection are poorly understood in health, and as a neurotherapeutic agent in …
Rapid Generation Of 3d Microchannels Using A Multiphoton Laser System In Blended Hydrogels To Serve As Templates For Microvascular Generation, Stephanie Renée Burtch
Rapid Generation Of 3d Microchannels Using A Multiphoton Laser System In Blended Hydrogels To Serve As Templates For Microvascular Generation, Stephanie Renée Burtch
Theses and Dissertations
Lack of scaffold microvascularization is one of the biggest problems facing graft survival and success within current tissue engineering applications. Fortunately, techniques aiming to form microchannels within three-dimensional scaffolds have shown promise in providing templates for tube-like cell formations. Unfortunately, many current patterning approaches are limited in the types of materials the technique can be applied to and lack the ability to form capillary-sized (<10 microns in diameter) networks. In this study, a multiphoton laser was used to create channels down to the micron level within an optically-clear hydrogel scaffold. Different percentages of poly (ethylene glycol) diacryate (PEGDA) and collagen were used to create different blends of hydrogels at 0%, 1%, 2%, and 3% collagen/PEGDA (w/w). Mechanical and transmittance testing were performed on all blends in order to determine which had optimal mechanical strength and optical clarity for laser subtractive printing. Swelling and degradation were measured to confirm the scaffolds served the tissue engineering requirement of eventual degradation. All gels with PEGDA incorporation showed an increase in mechanical stability and transparency when compared to pure collagen gels. Hydrogel blends showed resistance to degradation in phosphate-buffered saline, but appeared to exhibit collagen degradation in collagenase, although no statistical significance was seen. Cell viability tests within the hydrogels showed viability in cell-seeded hydrogels when compared to dead controls, although cells lacked some markers of healthy cells, such as spreading. In conclusion, results show that hydrogel blends provide a good matrix for subtractive optical micropatterning approaches, although other types of hydrogels may improve cell spreading and other cell responses.
Assessment Of The Correlation Between Memory Span Test Result And Attention Using A Wireless Eeg System, Yu Yu
Theses and Dissertations
The process to encode, retain and retrieve information is known as memory. Ever since models for short-term memory and working memory systems were proposed, the function and importance of the short-term memory and working memory systems have been explored by a number of studies which in part have examined factors which may affect memory capacity. Although there are many undetermined factors which may affect the result of these two different memory span test, recent studies have suggested a link between human mental condition and memory capacity. These studies show that the results of simple memory span tests are improved when …
Methanol And Dimethyl Ether From Renewable Hydrogen And Carbon Dioxide: Alternative Fuels Production And Life-Cycle Assessment, Michael J. Matzen, Yaşar Demirel
Methanol And Dimethyl Ether From Renewable Hydrogen And Carbon Dioxide: Alternative Fuels Production And Life-Cycle Assessment, Michael J. Matzen, Yaşar Demirel
Yaşar Demirel Publications
In this work we investigate two renewably based alternative fuels; methanol and dimethyl ether. The ultimate feedstocks for production are wind-based electrolytic hydrogen and carbon dioxide captured from an ethanol fermentation process. Dimethyl ether production was modeled in ASPEN Plus using a previously simulated methanol production facility. The facilities use 18.6 metric tons (mt) of H2 and 138.4 mt CO2 per day. Methanol is produced at a rate 96.7 mt/day (99.5 wt%) and dimethyl ether is produced at a rate of 68.5 mt/day (99.6 wt%). A full comparative life-cycle assessment (cradle-to-grave) of both fuels was conducted to investigate …
A 3-D Multiplex Paper-Microfluidic Platform, Mitchell Patrick Young
A 3-D Multiplex Paper-Microfluidic Platform, Mitchell Patrick Young
Master's Theses
3-D paper-based microfluidic devices (micoPADs) are small and portable devices made out of paper that offer a promising platform for diagnostic applications outside of a laboratory. These devices are easy to use, low cost, require no power source, and capable of detecting multiple targets simultaneously. The work in this thesis demonstrated the ability of a 3-D paper-microfluidic platform to simultaneously detect 5 targets. Rubber cord stock was used in conjunction with an acrylic housing unit to apply pressure along the edge of the channel. The indirect pressure application was successful in promoting vertical fluid flow between layers. Average channel development …
Segmental Kinematic Analysis Of Planovalgus Feet In Children With Cerebral Palsy, K. Kruger, K. Konop, Joseph Krzak, Adam Graf, Gerald F. Harris
Segmental Kinematic Analysis Of Planovalgus Feet In Children With Cerebral Palsy, K. Kruger, K. Konop, Joseph Krzak, Adam Graf, Gerald F. Harris
Biomedical Engineering Faculty Research and Publications
No abstract provided.
Monitoring Of Tissue Optical Properties During Thermal Coagulation Of Ex Vivo Tissues, Vivek K. Nagarajan, Bing Yu
Monitoring Of Tissue Optical Properties During Thermal Coagulation Of Ex Vivo Tissues, Vivek K. Nagarajan, Bing Yu
Biomedical Engineering Faculty Research and Publications
Background and Objective
Real-time monitoring of tissue status during thermal ablation of tumors is critical to ensure complete destruction of tumor mass, while avoiding tissue charring and excessive damage to normal tissues. Currently, magnetic resonance thermometry (MRT), along with magnetic resonance imaging (MRI), is the most commonly used technique for monitoring and assessing thermal ablation process in soft tissues. MRT/MRI is very expensive, bulky, and often subject to motion artifacts. On the other hand, light propagation within tissue is sensitive to changes in tissue microstructure and physiology which could be used to directly quantify the extent of tissue damage. Furthermore, …
Application Of Bioinstrumentation In Developing A Pressure Suit For Suborbital Flight, Pedro Llanos, Erik Seedhouse
Application Of Bioinstrumentation In Developing A Pressure Suit For Suborbital Flight, Pedro Llanos, Erik Seedhouse
Publications
This presentation features Embry-Riddle Aeronautical University's U-2 pressure suit. Built to be light and cost-effective, this suit is comfortable, comes in multiple sizes, operates in pressures up to 5 PSID, has an active airflow-based cooling system, and features bio-instrumentation to measure heart rate, breathing rate, skin temperature and other vitals.
Materials And Techniques Used In Cranioplasty Fixation: A Review, Basel A. Khader, Mark R. Towler
Materials And Techniques Used In Cranioplasty Fixation: A Review, Basel A. Khader, Mark R. Towler
Chemical and Biochemical Engineering Faculty Research & Creative Works
Cranioplasty is the surgical repair of a deficiency or deformity of the skull. The purpose of cranioplasty is to provide protection for the brain following cranial surgery, and to offer relief to psychological disadvantages while increasing social performance. There are several materials that had been used for cranioplasty, but an ideal product has yet to be developed, hence the ongoing research into biologic and non-biologic alternatives to the existing materials. This article critiques the products currently used for cranioplasty in order to facilitate the development of new materials, which can improve patient outcomes.
Selecting Medical Hardware Using Pairwise Comparisons: A Patient's Perspective Of Cochlear Implant Device Selection, Timothy R. Anderson, Shabnam Razeghian Jahromi
Selecting Medical Hardware Using Pairwise Comparisons: A Patient's Perspective Of Cochlear Implant Device Selection, Timothy R. Anderson, Shabnam Razeghian Jahromi
Engineering and Technology Management Faculty Publications and Presentations
Selecting medical hardware can be a difficult and permanent decision for patients that they are often unprepared for. The authors explore the use of pairwise comparison techniques to better inform medical decision making in an application of choosing between three major cochlear implant manufacturers. This paper appears to be the first study to apply a pairwise comparison decision making approach for cochlear implant device selection. Also, unlike many medical decision making studies that are developed by the healthcare professional, this model and analysis was conducted entirely by the patient for the purpose of making the real-world decision of a device. …
Microdose Fluorescence Imaging Of Aby-029 On An Operating Microscope Adapted By Custom Illumination And Imaging Modules, Jonathan T. Elliott, Alisha V. Dsouza, Kayla Marra, Brian W. Pogue, David Roberts, Keith Paulsen
Microdose Fluorescence Imaging Of Aby-029 On An Operating Microscope Adapted By Custom Illumination And Imaging Modules, Jonathan T. Elliott, Alisha V. Dsouza, Kayla Marra, Brian W. Pogue, David Roberts, Keith Paulsen
Dartmouth Scholarship
Fluorescence guided surgery has the potential to positively impact surgical oncology; current operating microscopes and stand-alone imaging systems are too insensitive or too cumbersome to maximally take advantage of new tumor-specific agents developed through the microdose pathway. To this end, a custom-built illumination and imaging module enabling picomolar-sensitive near-infrared fluorescence imaging on a commercial operating microscope is described. The limits of detection and system specifications are characterized, and in vivo efficacy of the system in detecting ABY-029 is evaluated in a rat orthotopic glioma model following microdose injections, showing the suitability of the device for microdose phase 0 clinical trials.
A Multimodal Investigation In Eye Movements, Raj Jaswal
A Multimodal Investigation In Eye Movements, Raj Jaswal
Dissertations
While functional magnetic resonance imaging (fMRI) has identified which regions of interest (ROIs) are functionally active during a vergence movement (inward or outward eye rotation), task-modulated coactivation between ROIs is less understood. This study tests the following hypotheses: (1) significant task-modulated coactivation would be observed between the frontal eye fields (FEFs), the posterior parietal cortex (PPC), and the cerebellar vermis (CV); (2) significantly more functional activity and task-modulated coactivation would be observed in binocularly normal controls (BNCs) compared with convergence insufficiency (CI) subjects; and (3) after vergence training, the functional activity and task-modulated coactivation would increase in CIs compared with …
Biomimetic And Vascularized 3-D Liver Cancer Model, Derek Yip
Biomimetic And Vascularized 3-D Liver Cancer Model, Derek Yip
Dissertations
Anti-angiogenic drugs have failed to show significant extended mortality, except when co-administered with chemotherapy drugs in clinical trials. This should be predicted by in vitro models, and yet 2D in vitro models of liver cancer co-administered with these two types of drugs show increased cell viability, contradicting clinical trials. In vitro models should mimic clinical trials in order to accurately predict drug outcomes. 2D in vitro models fail because they lack features of the cancer environment such as presence of stromal cells and a vasculature.
In order to achieve a biomimetic and vascularized in vitro model that would better recapitulate …