Targeting Antioxidant Enzyme Expression As A Therapeutic Strategy For Ischemic Stroke,
2017
University of Kentucky
Targeting Antioxidant Enzyme Expression As A Therapeutic Strategy For Ischemic Stroke, Stephanie M. Davis, Keith R. Pennypacker
Center for Advanced Translational Stroke Science Faculty Publications
During ischemic stroke, neurons and glia are subjected to damage during the acute and neuroinflammatory phases of injury. Production of reactive oxygen species (ROS) from calcium dysregulation in neural cells and the invasion of activated immune cells are responsible for stroke-induced neurodegeneration. Scientists have failed thus far to identify antioxidant-based drugs that can enhance neural cell survival and improve recovery after stroke. However, several groups have demonstrated success in protecting against stroke by increasing expression of antioxidant enzymes in neural cells. These enzymes, which include but are not limited to enzymes in the glutathione peroxidase, catalase, and superoxide dismutase families, …
The Neural Encoding Of Reward In The Striatal-Pallidal Circuitry,
2017
Marquette University
The Neural Encoding Of Reward In The Striatal-Pallidal Circuitry, Chung Lung Chan
Dissertations (1934 -)
Humans and animals are constantly exposed to external stimuli. The ability to process reward value of a stimulus is critical to guiding appropriate behavior and essential for survival. These processes are regulated by neuronal activity and neurochemical signaling in the reward circuitry, particularly in the nucleus accumbens (NAc). The NAc receives dopaminergic inputs from the midbrain ventral tegmental area (VTA) and sends GABAergic projections to the ventral pallidum (VP). Electrophysiological studies have characterized phasic neuronal responses in the NAc that differential encode appetitive and aversive taste stimuli. Exposure to an appetitive taste stimulus evoked predominantly phasic inhibitory responses in the …
Aging, Executive Function, Fronto-Parietal Network Cortical Thickness: Insights From Cognitive Reserve,
2017
Marquette University
Aging, Executive Function, Fronto-Parietal Network Cortical Thickness: Insights From Cognitive Reserve, Katherine Reiter
Dissertations (1934 -)
Cognitive reserve (CR) indexes the nonlinear relationship between neurological insult and behavioral change. CR is manifested in both static factors (e.g., childhood environment, education) and modifiable lifestyle factors, (e.g., leisure activities). Detailed investigation of the influence of CR on cortical thickness, which indexes neuropathology, and cognitive functioning could be particularly important in understanding the heterogeneity of Alzheimer’s disease (AD). While memory decline is the hallmark of AD, executive functioning (EF) decline often predates memory changes, making EF an important target for investigating CR influences. The current study examines the relationship of CR and genetic risk for AD (ε4) on EF …
Putative Adult Neurogenesis In Two Domestic Pigeon Breeds (Columba Livia Domestica): Racing Homer Versus Utility Carneau Pigeons,
2017
University of Witwatersrand, South Africa
Putative Adult Neurogenesis In Two Domestic Pigeon Breeds (Columba Livia Domestica): Racing Homer Versus Utility Carneau Pigeons, Pedzisai Mazengenya, Adhil Bhagwandin, Pilani Nkomozepi, Paul R. Manger, Amadi O. Ihunwo
Brain and Mind Institute
Generation of neurons in the brains of adult birds has been studied extensively in the telencephalon of song birds and few studies are reported on the distribution of PCNA and DCX in the telencephalon of adult non-song learning birds. We report here on adult neurogenesis throughout the brains of two breeds of adult domestic pigeons (Columba livia domestica), the racing homer and utility carneau using endogenous immunohistochemical markers proliferating cell nuclear antigen (PCNA) for proliferating cells and doublecortin (DCX) for immature and migrating neurons. The distribution of PCNA and DCX immunoreactivity was very similar in both pigeon breeds with only …
Abnormal Dendritic Maturation Of Developing Cortical Neurons Exposed To Corticotropin Releasing Hormone (Crh): Insights Into Effects Of Prenatal Adversity?,
2017
University of California Irvine
Abnormal Dendritic Maturation Of Developing Cortical Neurons Exposed To Corticotropin Releasing Hormone (Crh): Insights Into Effects Of Prenatal Adversity?, Megan M. Curran, Curt A. Sandman, Elysia Poggi Davis, Laura M. Glynn, Tallie Z. Baram
Psychology: Faculty Scholarship
Corticotropin releasing hormone (CRH) produced by the hypothalamus initiates the hypothalamic-pituitary-adrenal (HPA) axis, which regulates the body’s stress response. CRH levels typically are undetectable in human plasma, but during pregnancy the primate placenta synthesizes and releases large amounts of CRH into both maternal and fetal circulations. Notably, placental CRH synthesis increases in response to maternal stress signals. There is evidence that human fetal exposure to high concentrations of placental CRH is associated with behavioral consequences during infancy and into childhood, however the direct effects on of the peptide on the human brain are unknown. In this study, we used a …
Force Compensation And Recreation Accuracy In Humans,
2017
University of South Florida
Force Compensation And Recreation Accuracy In Humans, Benjamin Rigsby
USF Tampa Graduate Theses and Dissertations
As industry becomes increasingly reliant on robotic assistance and human-computer interfaces, the demand to understand the human sensorimotor system’s characteristics intensifies. Although this field of research has been going on for over a century, new technologies push the limits of the human motor system and our knowledge of it. With new technologies come new abilities, and, in the area of medical care and rehabilitation, the need to expand our knowledge of the sensorimotor system comes from both the patient and physician.
Two studies relating to human force interaction are presented in this thesis. The first study
focuses on humans’ ability …
An Anatomical Study Of The Hyperpallium Densocellulare In The Pigeon (Columba Livia),
2017
University of South Florida
An Anatomical Study Of The Hyperpallium Densocellulare In The Pigeon (Columba Livia), Sara Leilani Kellogg
USF Tampa Graduate Theses and Dissertations
The hyperpallium densocellulare (HD) is an avian cerebral structure, the origin of which remains unclear and considered to be critical to the understanding of the non-mammalian forebrain evolution. The main goal of this investigation was to clarify the anatomical characteristics and behavioral implications of HD, which had been assumed to be a homogeneous unitary entity. This project had three specific aims: 1) To identify possible subdivisions of HD in terms of cytoarchitecture, Substance P distribution, and connections based on unpublished (Aim 1a) as well as published data (Aim 1b); 2) To identify the unknown connections of these subdivisions by using …
The Motor Cortical Representation Of A Muscle Is Not Homogeneous In Brain Connectivity,
2017
Chapman University
The Motor Cortical Representation Of A Muscle Is Not Homogeneous In Brain Connectivity, Jo Armour Smith, Alaa Albishi, Sarine Babikian, Skulpan Asavasopon, Beth E. Fisher, Jason Kutch
Physical Therapy Faculty Articles and Research
Functional connectivity patterns of the motor cortical representational area of single muscles have not been extensively mapped in humans, particularly for the axial musculature. Functional connectivity may provide a neural substrate for adaptation of muscle activity in axial muscles that have both voluntary and postural functions. The purpose of this study was to combine brain stimulation and neuroimaging to both map the cortical representation of the external oblique (EO) in primary motor cortex (M1) and supplementary motor area (SMA), and to establish the resting-state functional connectivity associated with this representation. Motor evoked potentials were elicited from the EO muscle in …
Multi-Scale Spatial Cognition Models And Bio-Inspired Robot Navigation,
2017
University of South Florida
Multi-Scale Spatial Cognition Models And Bio-Inspired Robot Navigation, Martin I. Llofriu Alonso
USF Tampa Graduate Theses and Dissertations
The rodent navigation system has been the focus of study for over a century. Discoveries made lately have provided insight on the inner workings of this system. Since then, computational approaches have been used to test hypothesis, as well as to improve robotics navigation and learning by taking inspiration on the rodent navigation system.
This dissertation focuses on the study of the multi-scale representation of the rat’s current location found in the rat hippocampus. It first introduces a model that uses these different scales in the Morris maze task to show their advantages. The generalization power of larger scales of …
A Role For Ankyring In Maturation And Maintenance Of The Nodes Of Ranvier.,
2017
Thomas Jefferson University
A Role For Ankyring In Maturation And Maintenance Of The Nodes Of Ranvier., Benjamin Yang, Bridget M. Curran, Stephen R. Tymanskyj
Department of Neuroscience Faculty Papers
No abstract provided.
Presynaptic Lrp4 Promotes Synapse Number And Function Of Excitatory Cns Neurons.,
2017
Thomas Jefferson University
Presynaptic Lrp4 Promotes Synapse Number And Function Of Excitatory Cns Neurons., Timothy J. Mosca, David J. Luginbuhl, Irving E. Wang, Liqun Luo
Department of Neuroscience Faculty Papers
Precise coordination of synaptic connections ensures proper information flow within circuits. The activity of presynaptic organizing molecules signaling to downstream pathways is essential for such coordination, though such entities remain incompletely known. We show that LRP4, a conserved transmembrane protein known for its postsynaptic roles, functions presynaptically as an organizing molecule. In the Drosophila brain, LRP4 localizes to the nerve terminals at or near active zones. Loss of presynaptic LRP4 reduces excitatory (not inhibitory) synapse number, impairs active zone architecture, and abolishes olfactory attraction - the latter of which can be suppressed by reducing presynaptic GABAB receptors. LRP4 overexpression increases …
Selective Inhibition Of Small-Diameter Axons Using Infrared Light,
2017
Case Western Reserve University
Selective Inhibition Of Small-Diameter Axons Using Infrared Light, Emilie H. Lothet, Kendrick M. Shaw, Hui Lu, Junqi Zhuo, Yves T. Wang, Shi Gu, Hillel J. Chiel, Michael W. Jenkins
Faculty Scholarship
Novel clinical treatments to target peripheral nerves are being developed which primarily use electrical current. Recently, infrared (IR) light was shown to inhibit peripheral nerves with high spatial and temporal specificity. Here, for the first time, we demonstrate that IR can selectively and reversibly inhibit small-diameter axons at lower radiant exposures than large-diameter axons. We provide a mathematical rationale, and then demonstrate it experimentally in individual axons of identified neurons in the marine mollusk Aplysia californica, and in axons within the vagus nerve of a mammal, the musk shrew Suncus murinus. The ability to selectively, rapidly, and reversibly control small-diameter …
Mixed-Mode Oscillations In Pyramidal Neurons Under Antiepileptic Drug Conditions,
2017
Wright State University - Main Campus
Mixed-Mode Oscillations In Pyramidal Neurons Under Antiepileptic Drug Conditions, Babak V-Ghaffari, M. Kouhnavard, Sherif M. Elbasiouny
Neuroscience, Cell Biology, & Physiology Faculty Publications
Subthreshold oscillations in combination with large-amplitude oscillations generate mixedmode oscillations (MMOs), which mediate various spatial and temporal cognition and memory processes and behavioral motor tasks. Although many studies have shown that canard theory is a reliable method to investigate the properties underlying the MMOs phenomena, the relationship between the results obtained by applying canard theory and conductancebased models of neurons and their electrophysiological mechanisms are still not well understood. The goal of this study was to apply canard theory to the conductance-based model of pyramidal neurons in layer V of the Entorhinal Cortex to investigate the properties of MMOs under …
A Whole Lot Of Shakin' Going On: Movement Disorders Caused By Brain Trauma,
2017
Temple University
A Whole Lot Of Shakin' Going On: Movement Disorders Caused By Brain Trauma, Jack E. Hubbard, Samuel D. Hodge, Jr.
Cleveland State Law Review
There has been a lot of publicity directed to the consequence of brain trauma, such as headaches forgetfulness, irritability, and depression. That is only part of the sequelae. A little-known but challenging result of brain trauma is the development of or aggravation of a movement disorder such as a tremor, dystonia, a tic, or Parkinson’s Disease.
A movement disorder is an all-encompassing term that refers to a constellation of neurological issues that cause involuntary or voluntary movements or abnormal positioning of a body part. Various regions of the brain interact with each other to control movements of the body. If …
The Trial Lawyer And The Reptilian Brain: A Critique,
2017
Villanova University Charles Widger School of Law
The Trial Lawyer And The Reptilian Brain: A Critique, Louis J. Sirico, Jr.
Cleveland State Law Review
This Article brings together neuroscience, cultural symbolism, and the strategies of practicing lawyers to critique the reptile strategy, now popular among trial lawyers. The strategy directs the lawyer to trigger the reptilian brains of jurors so that they react instinctively to threats to themselves and their communities. When humans feel threatened, the reptilian brain, the most primitive part of the brain, takes charge and instinctively controls human conduct. Therefore, if a lawyer can make a juror feel threatened, the lawyer makes an appeal to the juror’s reptilian brain and virtually assures a victory. Thus, a lawyer’s argument should intensify the …
Comparative Effectiveness Research Of Disease-Modifying Therapies For The Management Of Multiple Sclerosis: Analysis Of A Large Health Insurance Claims Database., Aaron Boster, Jacqueline Nicholas, Ning Wu, Wei-Shi Yeh, Monica Fay, Michael Edwards, Ming-Yi Huang, Andrew Lee
Neuroscience Articles
INTRODUCTION: Limited data are available on the real-world effectiveness of newer oral disease-modifying therapies (DMTs) in multiple sclerosis. The purpose of this study was to retrospectively compare the real-world effectiveness of dimethyl fumarate (DMF), fingolimod, teriflunomide, and injectable DMTs in routine clinical practice based on US claims data.
METHODS: Patients newly-initiating DMF, interferon beta (IFNβ), glatiramer acetate (GA), teriflunomide, or fingolimod in 2013 were identified in the Truven MarketScan Commercial Claims Databases (N = 6372). Relapse episodes were identified based on a published claim-based algorithm and used to determine the annualized relapse rate (ARR) for the year before and after …
Risk Of Incident Clinical Diagnosis Of Alzheimer's Disease-Type Dementia Attributable To Pathology-Confirmed Vascular Disease,
2017
Oregon Health & Science University
Risk Of Incident Clinical Diagnosis Of Alzheimer's Disease-Type Dementia Attributable To Pathology-Confirmed Vascular Disease, Hiroko H. Dodge, Jian Zhu, Randy Woltjer, Peter T. Nelson, David A. Bennett, Nigel J. Cairns, David W. Fardo, Jeffrey A. Kaye, Deniz-Erten Lyons, Nora Mattek, Julie A. Schneider, Lisa C. Silbert, Chengjie Xiong, Lei Yu, Frederick A. Schmitt, Richard J. Kryscio, Erin L. Abner, Smart Data Consortium
Sanders-Brown Center on Aging Faculty Publications
INTRODUCTION: The presence of cerebrovascular pathology may increase the risk of clinical diagnosis of Alzheimer's disease (AD).
METHODS: We examined excess risk of incident clinical diagnosis of AD (probable and possible AD) posed by the presence of lacunes and large infarcts beyond AD pathology using data from the Statistical Modeling of Aging and Risk of Transition study, a consortium of longitudinal cohort studies with more than 2000 autopsies. We created six mutually exclusive pathology patterns combining three levels of AD pathology (low, moderate, or high AD pathology) and two levels of vascular pathology (without lacunes and large infarcts or with …
Source Localization Of Brain States Associated With Canonical Neuroimaging Postures,
2017
McGill University
Source Localization Of Brain States Associated With Canonical Neuroimaging Postures, Michael Lifshitz, Robert T. Thibault, Raquel R. Roth, Amir Raz
Psychology Faculty Articles and Research
Cognitive neuroscientists rarely consider the influence that body position exerts on brain activity; yet, postural variation holds important implications for the acquisition and interpretation of neuroimaging data. Whereas participants in most behavioral and EEG experiments sit upright, many prominent brain imaging techniques (e.g., fMRI) require participants to lie supine. Here we demonstrate that physical comportment profoundly alters baseline brain activity as measured by magnetoencephalography (MEG)—an imaging modality that permits multipostural acquisition. We collected resting-state MEG data from 12 healthy participants in three postures (lying supine, reclining at 45°, and sitting upright). Source-modeling analysis revealed a broadly distributed influence of posture …
Hypothesis Of K+-Recycling Defect Is Not A Primary Deafness Mechanism For Cx26 (Gjb2) Deficiency,
2017
University of Kentucky
Hypothesis Of K+-Recycling Defect Is Not A Primary Deafness Mechanism For Cx26 (Gjb2) Deficiency, Hong-Bo Zhao
Otolaryngology--Head & Neck Surgery Faculty Publications
K+-recycling defect is a long-standing hypothesis for deafness mechanism of Connexin26 (Cx26, GJB2) mutations, which cause the most common hereditary deafness and are responsible for >50% of nonsyndromic hearing loss. The hypothesis states that Cx26 deficiency may disrupt inner ear gap junctions and compromise sinking and recycling of expelled K+ ions after hair cell excitation, causing accumulation of K+-ions in the extracellular space around hair cells producing K+-toxicity, which eventually induces hair cell degeneration and hearing loss. However, this hypothesis has never been directly evidenced, even though it has been widely referred …
Mindfulness And Law Enforcement: An Effective Approach To Implementing Mindfulness For First Responders,
2017
Lesley University
Mindfulness And Law Enforcement: An Effective Approach To Implementing Mindfulness For First Responders, Gina White
Mindfulness Studies Theses
An increasing number of studies show that people employed as first responders in high trauma service jobs tend to experience a high level of stress, at work and after hours. Studies suggest that constant exposure to job related stress leads to both physical and mental dysregulation. This study looks at the effects of implementing mindfulness tools and techniques to those working in law enforcement. Other works on this topic report mindfulness as a successful tool to increase wellbeing to a broad spectrum of populations. The methodology used in this study was designed specifically for first responders. The data findings were …
