Open Access. Powered by Scholars. Published by Universities.®
Bioelectrical and Neuroengineering Commons™
Open Access. Powered by Scholars. Published by Universities.®
- Discipline
-
- Other Biomedical Engineering and Bioengineering (3)
- Biological and Chemical Physics (2)
- Biomedical Devices and Instrumentation (2)
- Medicine and Health Sciences (2)
- Physical Sciences and Mathematics (2)
-
- Physics (2)
- Analytical, Diagnostic and Therapeutic Techniques and Equipment (1)
- Anatomy (1)
- Artificial Intelligence and Robotics (1)
- Biochemistry, Biophysics, and Structural Biology (1)
- Bioimaging and Biomedical Optics (1)
- Biology (1)
- Biophysics (1)
- Biotechnology (1)
- Computer Sciences (1)
- Diagnosis (1)
- Disease Modeling (1)
- Diseases (1)
- Equipment and Supplies (1)
- Eye Diseases (1)
- Graphics and Human Computer Interfaces (1)
- International Public Health (1)
- Investigative Techniques (1)
- Life Sciences (1)
- Medical Biomathematics and Biometrics (1)
- Medical Neurobiology (1)
- Medical Sciences (1)
- Institution
- Publication
- Publication Type
Articles 1 - 4 of 4
Full-Text Articles in Bioelectrical and Neuroengineering
Advancing Prosthetic Design Using Neural And Mechanical Dynamics, Kacie E. Hanna
Advancing Prosthetic Design Using Neural And Mechanical Dynamics, Kacie E. Hanna
Graduate Theses, Dissertations, and Problem Reports (ETD)
Limb loss poses a significant challenge to mobility and the performance of daily activities. Currently, nearly half of the amputees using powered prosthetics abandon their device due to inadequate limb coordination and movement control abilities. In the healthy system, passive and neural dynamics facilitate the synchronized activation of muscles necessary for coordinated movement. However, in the amputee, the system is disrupted. The goal of this research is to use neural and mechanical dynamics to inform the design of prosthetic devices in order to restore intuitive control and coordinated limb movement.
The first aim of this research is to investigate neural …
Somatic Inhibition By Microscopic Magnetic Stimulation, Hui Ye
Somatic Inhibition By Microscopic Magnetic Stimulation, Hui Ye
Biology: Faculty Publications and Other Works
Electric currents can produce quick, reversible control of neural activity. Externally applied electric currents have been used in inhibiting certain ganglion cells in clinical practices. Via electromagnetic induction, a miniature-sized magnetic coil could provide focal stimulation to the ganglion neurons. Here we report that high-frequency stimulation with the miniature coil could reversibly block ganglion cell activity in marine mollusk Aplysia californica, regardless the firing frequency of the neurons, or concentration of potassium ions around the ganglion neurons. Presence of the ganglion sheath has minimal impact on the inhibitory effects of the coil. The inhibitory effect was local to the …
Seeing Eye To Eye: A Machine Learning Approach To Automated Saccade Analysis, Maigh Attre
Seeing Eye To Eye: A Machine Learning Approach To Automated Saccade Analysis, Maigh Attre
Honors Scholar Theses
Abnormal ocular motility is a common manifestation of many underlying pathologies particularly those that are neurological. Dynamics of saccades, when the eye rapidly changes its point of fixation, have been characterized for many neurological disorders including concussions, traumatic brain injuries (TBI), and Parkinson’s disease. However, widespread saccade analysis for diagnostic and research purposes requires the recognition of certain eye movement parameters. Key information such as velocity and duration must be determined from data based on a wide set of patients’ characteristics that may range in eye shapes and iris, hair and skin pigmentation [36]. Previous work on saccade analysis has …
Development Of An Astrocyte/Glioma Co-Culture System For Measuring Cellular Dynamics, Urna Kansakar
Development Of An Astrocyte/Glioma Co-Culture System For Measuring Cellular Dynamics, Urna Kansakar
Doctoral Dissertations
Gliomas are brain tumors that primarily arise from glial cells. Gliomas account for 70% of the brain tumors and they are more prevalent in older adults. About 60% of the people with gliomas experience at least one seizure. Brain tumors can grow and metastasize to neighboring areas, thereby destroying normal brain cells. In a brain tumor microenvironment, both malignant cancer cells and healthy brain cells are present. Studies have shown that astrocytes may have a role in tumor growth in the brain. Monocultures cannot evaluate interactions between two cell types and does not accurately represent in vivo conditions. Thus, a …