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Biomedical Devices and Instrumentation Commons™
Open Access. Powered by Scholars. Published by Universities.®
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- Magnetic resonance imaging (2)
- Velocity measurement (2)
- Active Na Transport (1)
- Biology; Biomedical Research; Biophysics; Cellular Biology (1)
- Biomedical Engineering (1)
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- Biosensors; Glucose sensor; Nanoparticles; Silicon nanoparticles; Nanocomposite sensing material (1)
- Blood flow (1)
- CoCl2 (1)
- Cognitive limb embodiment (1)
- Doppler blood flow (1)
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- Electrophysiology (1)
- Epithelial Tight Junction (1)
- Equivalent Current (1)
- FITC-dextran Permeability (1)
- Flow quantification (1)
- HIF (1)
- Hypoxia (1)
- In-plane velocity (1)
- K-space segmentation (1)
- Kidney Cyst (1)
- Magnetic resonance velocity mapping (1)
- Na-K-ATPase (1)
- PKD (1)
- Passive Transport (1)
- Physiological correlates of embodiment (1)
- Renal Transepithelial Transport (1)
- Rubber hand illusion (1)
- Skin surface temperature (1)
- TER (1)
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Articles 1 - 7 of 7
Full-Text Articles in Biomedical Devices and Instrumentation
The Effect Of Cognitive Limb Embodiment On Vascular Physiological Response, Hala Elsir Mustafa Osman
The Effect Of Cognitive Limb Embodiment On Vascular Physiological Response, Hala Elsir Mustafa Osman
ETD Archive
The rubber hand illusion (RHI) is a visual-tactile perceptual illusion commonly used to study body ownership. In this paradigm, a rubber hand is positioned in front of a participant, and the person’s real hand is hidden from sight behind a barrier. When the real hand and the rubber hand are stroked synchronously, individuals perceive the rubber hand as if it were their own; it becomes “embodied.” This illusory experience of body ownership is associated with multimodal integration of touch and vision. From these visual-tactile-cognitive mechanisms, we establish that our hands belong to us when what we see matches what we …
Stabilization Of Hypoxia Inducible Factor By Cobalt Chloride Can Alter Renal Transepithelial, Subhra Sankar Nag
Stabilization Of Hypoxia Inducible Factor By Cobalt Chloride Can Alter Renal Transepithelial, Subhra Sankar Nag
ETD Archive
Kidney cyst expansion, stagnant fluid accumulation, and insufficient vascular supply can result in localized chronic ischemia-hypoxia in kidney cysts, as well as in normal renal epithelia adjacent to a cyst. We hypothesize that in normal epithelia near a cyst, the stabilization of Hypoxia Inducible Factor 1a (HIF1a), a major regulator of cellular response to hypoxia, can cause altered paracellular and transcellular transport, transforming a normal absorptive phenotype to a secretory and paracellularly leaky phenotype, leading to cyst expansion. Using 100 µmol/L cobalt chloride (CoCl2), HIF1a was stabilized in cellular nucleus of a mouse cortical collecting duct cell line (mCCD 1296 …
Comparison Of Electronic And Mechanical Handgrip Devices In Lowering Blood Pressure, Katie Webb, Brandon Musarra, Megan O’Keefe, Shana Strunk, Courtney Perkins, Kenneth E. Sparks, Emily Kullman, Eddie T.C. Lam
Comparison Of Electronic And Mechanical Handgrip Devices In Lowering Blood Pressure, Katie Webb, Brandon Musarra, Megan O’Keefe, Shana Strunk, Courtney Perkins, Kenneth E. Sparks, Emily Kullman, Eddie T.C. Lam
Undergraduate Research Posters 2014
Hypertension causes billions of deaths per year (Millar et al., 2013). The Zona PlusTM is an expensive tool designed to lower blood pressure (BP) using isometric exercise. This exercise may be achieved using a less expensive Handgrip Dynamometer. PURPOSE: The purpose of this research is to determine if the Zona or Handgrip Dynamometer is more efficient at lowering BP and most cost effective for patients. METHODS: Twenty subjects used the Zona and twenty subjects used the dynamometer three times per week for six weeks. BP was taken once per week prior to the treatment. A maximum voluntary contraction (MVC) was …
A Low Cost Motion Analysis System Based On Kinect, Jonathan Michael Cardinale, Tracy N. Jennemann, Vitaliy Sinyuk, Sam Kenji Yokoyama
A Low Cost Motion Analysis System Based On Kinect, Jonathan Michael Cardinale, Tracy N. Jennemann, Vitaliy Sinyuk, Sam Kenji Yokoyama
Undergraduate Research Posters 2012
The project focused on the validation of using the Kinect sensor to build a low cost motion analysis system for physical therapy and rehabilitation, and the identification of the types of the motions that cannot be captured well by the Kinect sensor and are in need of inertial sensors.
A Silicon Nanoparticle-Based Polymeric Nano-Composite Material For Glucose Sensing, Qiang Liu, Munir H. Nayfeh, Siu-Tung Yau
A Silicon Nanoparticle-Based Polymeric Nano-Composite Material For Glucose Sensing, Qiang Liu, Munir H. Nayfeh, Siu-Tung Yau
Electrical and Computer Engineering Faculty Publications
A novel non-enzyme glucose sensing material has been prepared by incorporating ultrasmall (1–3 nm) silicon nanoparticles in polyaniline, a conducting polymer, as a nano-composite material (NCM). When deposited on electrodes, the composite material with three-dimensional loading of the nanoparticles showed a significantly enhanced amperometric response to glucose, compared to the nanoparticles deposited on bare electrodes and electrodes immobilized with the enzyme, glucose oxidase. The linear range of the glucose response of NCM electrodes covered both the hypo- and hyper-glycaemic glucose levels. The sensitivity of the NCM electrodes was 2.5 μA cm−2 mM−1. The NCM electrodes’ selectivity for …
Reliable In-Plane Velocity Measurements With Magnetic Resonance Velocity Imaging, Haosen Zhang, Sandra S. Halliburton, Andan K. Venkatachari, Randolph M. Setser, Richard D. White, George P. Chatzimavroudis
Reliable In-Plane Velocity Measurements With Magnetic Resonance Velocity Imaging, Haosen Zhang, Sandra S. Halliburton, Andan K. Venkatachari, Randolph M. Setser, Richard D. White, George P. Chatzimavroudis
Chemical & Biomedical Engineering Faculty Publications
Magnetic resonance (MR) imaging is a well-known diagnostic imaging modality. In addition to its high-quality imaging capabilities, hydrogen-based MR can also provide non-invasively the velocity of water-based fluids in all three spatial directions (through-plane and in-plane) in an image. Many previous studies showed that MR velocity imaging can accurately measure the through-plane velocity. The aim of this study was to evaluate how reliable are the in-plane velocity measurements in an image. The axial velocity of water in horizontal tubes (inner diameter: 14.7–26.2 mm) was measured with segmented (fast) and non-segmented (slow) k-space MR velocity …
Blood Flow Measurements With Magnetic Resonance Phase Velocity Mapping, George P. Chatzimavroudis
Blood Flow Measurements With Magnetic Resonance Phase Velocity Mapping, George P. Chatzimavroudis
Chemical & Biomedical Engineering Faculty Publications
Magnetic resonance (MR) phase velocity mapping (PVM) is a non-invasive technique that can measure the flow velocity in any spatial direction in an imaging slice. This technique has wide application in the clinical field in quantifying blood flow, as well as in non-biomedical areas. This review describes the value and/or potential of MR PVM as a diagnostic/monitoring technique in heart valve regurgitation and in the total cavo-pulmonary connection. A single slice placed in the aortic root can accurately quantify the aortic regurgitant volume. A multi-slice control volume method has high potential for the quantification of the mitral regurgitant volume. …