Spring 2016 Biomedical Engineering Newsletter,
2016
Michigan Technological University
Spring 2016 Biomedical Engineering Newsletter, Department Of Biomedical Engineering, Michigan Technological University
Department of Biomedical Engineering Newsletters
Table of Contents
- Focus on Cardiovascular Research
- BMES Rising Star Feng Zhao
- Magnetoelastic: Sensing more with less
- Portage Health/Michigan Tech Partnership
- Remembering Dr. Michael Neuman
Hand Control Of Bipedal Balance In Quiet Standing: Implementations For Lower Extremity Exoskeleton,
2016
New Jersey Institute of Technology
Hand Control Of Bipedal Balance In Quiet Standing: Implementations For Lower Extremity Exoskeleton, Ala’A Al-Rashdan
Dissertations
Maintaining stable posture is important for humans, even though it is challenging because of our bipedal structure. One of the main balance related disorders is paraplegia due to spinal cord injury. People with a complete spinal cord injury have motor and sensory impairment that greatly reduces the ability to move their lower extremities. In recent years, lower extremity exoskeletons that apply torques generated by motors to the joints of the person have helped to them stand and walk.
This research is a part of an extended project to build a new exoskeleton for use by individuals with paraplegia due to …
Department Of Biological Systems Engineering Newsletter, Spring 2016,
2016
University of Nebraska - Lincoln
Department Of Biological Systems Engineering Newsletter, Spring 2016
BSE Department Magazine
No abstract provided.
Optimization-Based Interactive Segmentation Interface For Multiregion Problems.,
2016
Robarts Research Institute
Optimization-Based Interactive Segmentation Interface For Multiregion Problems., John S H Baxter, Martin Rajchl, Terry M Peters, Elvis C S Chen
Robarts Imaging Publications
Interactive segmentation is becoming of increasing interest to the medical imaging community in that it combines the positive aspects of both manual and automated segmentation. However, general-purpose tools have been lacking in terms of segmenting multiple regions simultaneously with a high degree of coupling between groups of labels. Hierarchical max-flow segmentation has taken advantage of this coupling for individual applications, but until recently, these algorithms were constrained to a particular hierarchy and could not be considered general-purpose. In a generalized form, the hierarchy for any given segmentation problem is specified in run-time, allowing different hierarchies to be quickly explored. We …
Detecting And Screening Of The Prostate Cancer By Using An Optical Nanoporous Thin-Film Sensor,
2016
Louisiana Tech Universitycics
Detecting And Screening Of The Prostate Cancer By Using An Optical Nanoporous Thin-Film Sensor, Salah Eldeen Mofleh Alzghoul
Doctoral Dissertations
Prostate cancer (PC) affects elderly men more than young men. The currently used cancer biomarker, prostate-specific antigen (PSA), highly overestimates PC population. Men with high PSA levels often have to go through unnecessary, but physically painful, and expensive prosesses, such as prostate biopsies. Finding a prostate cancer marker that is produced selectively by cancer, but not by normal prostate cells will increase the reliability of PC test. In 2006, our collaborator (Dr. Girish Shah) discovered a novel protein, referred as neuroendocrine marker (NEM), secreted only by malignant prostate cells and released in blood circulation.
To examine whether the combined NEM-PSA …
Hyaluronic Acid-Conjugated Liposome Nanoparticles For Targeted Delivery To Cd44 Overexpressing Glioblastoma Cells,
2016
University of Nebraska-Lincoln
Hyaluronic Acid-Conjugated Liposome Nanoparticles For Targeted Delivery To Cd44 Overexpressing Glioblastoma Cells, Stephen L. Hayward, Christina L. Wilson, Srivatsan Kidambi
Department of Chemical and Biomolecular Engineering: Faculty Publications
Glioblastoma Multiforme (GBM) is a highly prevalent and deadly brain malignancy characterized by poor prognosis and restricted disease management potential. Despite the success of nanocarrier systems to improve drug/gene therapy for cancer, active targeting specificity remains a major hurdle for GBM. Additionally, since the brain is a multi-cell type organ, there is a critical need to develop an approach to distinguish between GBM cells and healthy brain cells for safe and successful treatment. In this report, we have incorporated hyaluronic acid (HA) as an active targeting ligand for GBM. To do so, we employed HA conjugated liposomes (HALNPs) to study …
Enhanced Bioactive Scaffolds For Bone Tissue Regeneration,
2016
Louisiana Tech University
Enhanced Bioactive Scaffolds For Bone Tissue Regeneration, Sonali Karnik
Doctoral Dissertations
Bone injuries are commonly termed as fractures and they vary in their severity and causes. If the fracture is severe and there is loss of bone, implant surgery is prescribed. The response to the implant depends on the patient's physiology and implant material. Sometimes, the compromised physiology and undesired implant reactions lead to post-surgical complications. [4, 5, 20, 28] Efforts have been directed towards the development of efficient implant materials to tackle the problem of post-surgical implant failure. [ 15, 19, 24, 28, 32]
The field of tissue engineering and regenerative medicine involves the use of cells to form a …
Brain Tumor In A Dish: Glioma/Astrocyte Co-Cultures As A Model For In Vitro Studies,
2016
University of Nebraska-Lincoln
Brain Tumor In A Dish: Glioma/Astrocyte Co-Cultures As A Model For In Vitro Studies, Erin Eickman, Christina Wilson, Srivatsan Kidambi
UCARE: Research Products
This study seeks to engineer an in vitro co-culture model to elucidate the role of glioma-astrocyte interactions on molecular changes in the tumor microenvironment. The use of patterned co-cultures created with polyelectrolyte multilayers and micromolding in capillaries will allow tthe investigation of cell-cell communication. This study will lead to better understanding of the role of healthy cells in cancer progression and potential treatment options.
Patterned Alginate Hydrogels To Induce Chondrocyte Alignment,
2016
University of Nebraska-Lincoln
Patterned Alginate Hydrogels To Induce Chondrocyte Alignment, Jordan Catherine Verplank, Taylor D. Laughlin, Angela K. Pannier
UCARE: Research Products
The growth plate has an intricate architecture, and this architecture is necessary for directional growth of bones. Specifically, the cells align in longitudinal columns. As the growth plate expands with this pattern, the bone elongates with the same alignment pattern. The purpose of this research is to mimic this single celled, columnar alignment in vitro. In developing this alignment in vitro, this research will contribute to the overall study of growing growth for the development of improved therapeutic treatments and engineered tissues for transplants.
Cerebrovascular Reactivity Change With Increased Intracranial Pressure,
2016
University of Nebraska-Lincoln
Cerebrovascular Reactivity Change With Increased Intracranial Pressure, Madison Burger, M. Alwatban, Allison Porter, Ben Hage, Greg Bashford
UCARE: Research Products
Cerebrovascular reactivity (CVR) is an important regulatory factor of the brain. The parameter controls the dilation and constriction of blood vessels in the brain in response to certain stimuli, such as carbon dioxide. Abnormal CVR values could potentially be indicators of poorly functioning regulatory systems. Testing of CVR is one method of assessing the brain's regulatory capabilities. The purpose of this study was to test for a relationship between CVR and intracranial pressure (ICP).
In this study, increased intracranial pressure was created in 4 female subjects through head down tilt, using an inversion table. Subjects were lowered in the table …
Analysis Of Breath-Holding Index As An Assessment Of Cerebrovascular Reactivity,
2016
University of Nebraska-Lincoln
Analysis Of Breath-Holding Index As An Assessment Of Cerebrovascular Reactivity, Allison P. Porter, Madison Burger, Mohammed Alwatban, Benjamin Hage, Greg Bashford
UCARE: Research Products
Cerebrovascular reactivity (CVR) is a key factor in regulating blood flow into the brain, and a marker for vascular disease. If the brain's regulatory system is not working, a patient may be in serious trouble. Testing of CVR is one method of assessing the brain's regulatory capabilities. Transcranial Doppler ultrasound (TCD) is one tool to measure CVR. In this method, carbon dioxide in the blood is transiently increased (such as with the holding of breath), and the resulting blood flow in the brain is measured. In this study, we are going to measure the variability of the breathholding index.
Within …
Mutlifunctional Platforms For Gene And Drug Delivery For Cancer Therapy,
2016
Louisiana Tech University
Mutlifunctional Platforms For Gene And Drug Delivery For Cancer Therapy, Jeffery J. Ambrose Jr.
Doctoral Dissertations
The National Cancer Institute and the American Cancer Society estimate that 1.6 million new cancer incidences and over half a million cancer related deaths occur annually [1][2]. Cancer the second most common cause of death in the United States [1], [2]. Although the causes of cancer can vary depending on cell type, all or almost all instances of cancer arise from a mutation or from an abnormal activation of the cellular genes that control cell growth and mitosis [3].
Treatment of a given cancer type depends on the subtype, stage and progression of the cancer. Varieties of cancer therapy include …
Section Abstracts: Biomedical And General Engineering,
2016
Old Dominion University
Section Abstracts: Biomedical And General Engineering
Virginia Journal of Science
Abstracts of the Biomedical and General Engineering Section for the 94th Annual Virginia Academy of Science Meeting, May 18-20, 2016, at University of Mary Washington, Fredericksburg, VA.
Membrane Channel Gene Expression In Human Costal And Articular Chondrocytes,
2016
Old Dominion University
Membrane Channel Gene Expression In Human Costal And Articular Chondrocytes, A. Asmar, R. Barrett-Jolley, A. Werner, R. Kelly Jr., M. Stacey
Bioelectrics Publications
Chondrocytes are the uniquely resident cells found in all types of cartilage and key to their function is the ability to respond to mechanical loads with changes of metabolic activity. This mechanotransduction property is, in part, mediated through the activity of a range of expressed transmembrane channels; ion channels, gap junction proteins, and porins. Appropriate expression of ion channels has been shown essential for production of extracellular matrix and differential expression of transmembrane channels is correlated to musculoskeletal diseases such as osteoarthritis and Albers-Sch€onberg. In this study we analyzed the consistency of gene expression between channelomes of chondrocytes from human …
Consonant Discrimination In The Inferior Colliculus Of Young And Aged Rats,
2016
Purdue University
Consonant Discrimination In The Inferior Colliculus Of Young And Aged Rats, Christopher S. Soverns
Open Access Theses
Complex acoustic stimuli are thoroughly encoded and processed along the primary auditory pathway to give reliable and relevant information about the environment, and elucidating the neural coding mechanisms is essential to informing clinical attempts to combat auditory dysfuntion. Receiving a uniquely diverse set of ascending and descending inputs, the inferior colliculus (IC) is a site of intricate temporal processing. In this work, natural and modified human speech is used to investigate discrimination of voice onset time (VOT) in the spiking output of IC neurons. A template-matching classification model is proposed in which single stimulus presentation responses are correlated with aggregate …
Optimization Of Wireless Power Networks For Biomedical Applications,
2016
Purdue University
Optimization Of Wireless Power Networks For Biomedical Applications, Kyle A. Thackston
Open Access Theses
Successful physiological integration of electronics will open the doors to new methods of treatment and diagnoses. One of the key challenges of this integration is designing devices as small as possible while still maintaining high functionality, such as bio-signal recording, processing, telemetry, and stimulation. Wireless power transfer (WPT) can help shrink a device’s footprint by removing the need for bulky batteries. While many modalities of WPT exist for biomedical applications, the optimal power transfer efficiency (PTE) is seldom achieved due to improper impedance matching. Existing methods for determining the optimal impedance matching conditions tend to be application specific and make …
Densified Collagen-Fibril Biomaterials For Bone Tissue Engineering,
2016
Purdue University
Densified Collagen-Fibril Biomaterials For Bone Tissue Engineering, Lauren E. Watkins
Open Access Theses
Millions of craniofacial bone defects occur annually as a result of trauma, congenital defects, disease, or tooth extraction. When present in the oral cavity, these defects are associated with adverse impacts on speech, mastication, and aesthetics. Thus, there is a clinical need for interventional strategies to restore and preserve alveolar bone mass to improve the success of future treatment options intended to reestablish functionality and aesthetics. Guided bone regeneration using bone grafts and a membrane represent the current standard of care for repairing alveolar bone defects, but face a number of limitations related to resorption time and structural integrity. Improvements …
Improving The Mechanistic Study Of Neuromuscular Diseases Through The Development Of A Fully Wireless And Implantable Recording Device,
2016
Purdue University
Improving The Mechanistic Study Of Neuromuscular Diseases Through The Development Of A Fully Wireless And Implantable Recording Device, Rebecca A. Bercich
Open Access Dissertations
Neuromuscular diseases manifest by a handful of known phenotypes affecting the peripheral nerves, skeletal muscle fibers, and neuromuscular junction. Common signs of these diseases include demyelination, myasthenia, atrophy, and aberrant muscle activity—all of which may be tracked over time using one or more electrophysiological markers. Mice, which are the predominant mammalian model for most human diseases, have been used to study congenital neuromuscular diseases for decades. However, our understanding of the mechanisms underlying these pathologies is still incomplete. This is in part due to the lack of instrumentation available to easily collect longitudinal, in vivo electrophysiological activity from mice. There …
Influence Of The 3d Microenvironment On Glioblastoma Migration And Drug Response,
2016
Purdue University
Influence Of The 3d Microenvironment On Glioblastoma Migration And Drug Response, Ruth Marisol Herrera Perez
Open Access Dissertations
Glioblastoma (GBM) is a highly invasive brain cancer characterized by poor prognosis. Despite significant efforts by the basic and clinical research community our understanding of GBM progression and recurrence has been incremental. Improvements in therapeutic response have been dismal, and GBM continues to be the deadliest tumor of the central nervous system, with patient average survival rate of 12 months. Synergistic relationships that the tumor cells establish with the brain microenvironment have been proven fundamental for successful tumor progression and maintenance. Yet, many in vitro GBM studies are performed in formats that fail to recapitulate the most essential component of …
Coupled Resonator Based Wireless Power Transfer For Bioelectronics,
2016
Purdue University
Coupled Resonator Based Wireless Power Transfer For Bioelectronics, Henry Mei
Open Access Dissertations
Implantable and wearable bioelectronics provide the ability to monitor and modulate physiological processes. They represent a promising set of technologies that can provide new treatment for patients or new tools for scientific discovery, such as in long-term studies involving small animals. As these technologies advance, two trends are clear, miniaturization and increased sophistication i.e. multiple channels, wireless bi-directional communication, and responsiveness (closed-loop devices). One primary challenge in realizing miniaturized and sophisticated bioelectronics is powering. Integration and development of wireless power transfer (WPT) technology, however, can overcome this challenge.
In this dissertation, I propose the use of coupled resonator WPT for …
