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Neuroscience and Neurobiology Commons

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2012

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Articles 151 - 170 of 170

Full-Text Articles in Neuroscience and Neurobiology

Dynamic L-Glutamate Signaling In The Prefrontal Cortex And The Effects Of Methylphenidate Treatment, Catherine Elizabeth Mattinson Jan 2012

Dynamic L-Glutamate Signaling In The Prefrontal Cortex And The Effects Of Methylphenidate Treatment, Catherine Elizabeth Mattinson

Theses and Dissertations--Neuroscience

The prefrontal cortex (PFC) is an area of the brain that is critically important for learning, memory, organization, and integration, and PFC dysfunction has been associated with pathologies including Alzheimer’s disease, schizophrenia, and drug addiction. However, there exists a paucity of information regarding neurochemical signaling in the distinct sub-regions of the PFC, particularly the medial prefrontal cortex (mPFC). The mPFC receives glutamatergic input from a number of brain areas, and functional glutamate signaling is essential for normal cognitive processes. To further understand glutamate neurotransmission, in vivo measurements of glutamate were performed in the cingulate cortex, prelimbic cortex, and infralimbic cortex …


Genetic Control Of A Central Pattern Generator: Rhythmic Oromotor Movement In Mice Is Controlled By A Major Locus Near Atp1a2, Steven J. St. John, John D. Boughter Jr, Megan K. Mulligan, Kenichi Tokita, Lu Lu, Detlef H. Heck, Robert W. Williams Jan 2012

Genetic Control Of A Central Pattern Generator: Rhythmic Oromotor Movement In Mice Is Controlled By A Major Locus Near Atp1a2, Steven J. St. John, John D. Boughter Jr, Megan K. Mulligan, Kenichi Tokita, Lu Lu, Detlef H. Heck, Robert W. Williams

Faculty Publications

calreticulin, Animals, Chromosome Mapping, Mammalian Chromosomes, Gene Expression Regulation, Genetic Linkage, Genome-Wide Association Study. Inbred C57BL Mice, Inbred DBA Mice, Quantitative Trait Loci, Sodium-Potassium-Exchanging ATPase/genetics, Atp1a2 protein, Sodium-Potassium-Exchanging ATPase, feeding behavior, drinking behavior, mice, central pattern generator, genetic control


Multimodal Imaging Evidence For Axonal And Myelin Deterioration In Amnestic Mild Cognitive Impairment, Brian T. Gold, Yang Jiang, David K. Powell, Charles D. Smith Jan 2012

Multimodal Imaging Evidence For Axonal And Myelin Deterioration In Amnestic Mild Cognitive Impairment, Brian T. Gold, Yang Jiang, David K. Powell, Charles D. Smith

Neuroscience Faculty Publications

White matter (WM) microstructural declines have been demonstrated in Alzheimer's disease and amnestic mild cognitive impairment (aMCI). However, the pattern of WM microstructural changes in aMCI after controlling for WM atrophy is unknown. Here, we address this issue through joint consideration of aMCI alterations in fractional anisotropy, mean diffusivity, axial diffusivity, and radial diffusivity, as well as macrostructural volume in WM and gray matter compartments. Participants were 18 individuals with aMCI and 24 healthy seniors. Voxelwise analyses of diffusion tensor imaging data was carried out using tract-based spatial statistics (TBSS) and voxelwise analyses of high-resolution structural data was conducted using …


Dementia And Music: Challenges And Future Directions, Andrea R. Halpern Jan 2012

Dementia And Music: Challenges And Future Directions, Andrea R. Halpern

Faculty Journal Articles

No abstract provided.


Investigation Into The Specificity Of Angiotensin Ii-Induced Behavioral Desensitization, Peter J. Vento, Kevin P. Myers, Derek Daniels Jan 2012

Investigation Into The Specificity Of Angiotensin Ii-Induced Behavioral Desensitization, Peter J. Vento, Kevin P. Myers, Derek Daniels

Faculty Journal Articles

Angiotensin II (AngII) plays a key role in maintaining body fluid homeostasis. The physiological and behavioral effects of central AngII include increased blood pressure and fluid intake. In vitro experiments demonstrate that repeated exposure to AngII reduces the efficacy of subsequent AngII, and behavioral studies indicate that prior icv AngII administration reduces the dipsogenic response to AngII administered later. Specifically, rats given a treatment regimen of three icv injections of a large dose of AngII, each separated by 20 min, drink less water in response to a test injection of AngII than do vehicle-treated controls given the same test injection. …


The Effects Of Extended Access To Methamphetamine Self-Administration On Dopaminergic Markers In The Striatum, Joe Luevano Jan 2012

The Effects Of Extended Access To Methamphetamine Self-Administration On Dopaminergic Markers In The Striatum, Joe Luevano

Open Access Theses & Dissertations

Methamphetamine (METH) abuse is a persistent problem in the U.S. and abroad. Escalation of METH use among independent users occurs for a variety of physiological and psychological reasons. Methamphetamine dependence may be attributed to the rewarding effect of this drug via the dopaminergic systems of the central nervous system (CNS). The presence of METH in the CNS increases synaptic release of dopamine. This increase in dopaminergic neurotransmission is thought to be directly attributed to the rewarding effects of METH. Following METH use, compensatory changes have been found to occur in the dopaminergic system during various periods of abstinence. It is …


Examination Of The Neurochemical Mechanisms That Mediate Nicotine Withdrawal In Adolescent And Adult Rats, Luis Alberto Natividad Jan 2012

Examination Of The Neurochemical Mechanisms That Mediate Nicotine Withdrawal In Adolescent And Adult Rats, Luis Alberto Natividad

Open Access Theses & Dissertations

Introduction: The mechanisms that mediate nicotine withdrawal are presently unclear and age group differences in the neurochemical effects of withdrawal have been largely unexplored. Previous studies in our laboratory demonstrated that adult rats display a decrease in extracellular levels of dopamine in the nucleus accumbens (NAcc) during nicotine withdrawal and this decrease is reduced in adolescent rats (Natividad et al., 2010). The goal of this dissertation was to examine whether these age group differences in dopamine during withdrawal are mediated via excitatory and inhibitory mechanisms that modulate dopamine in the cell body region of the ventral tegmental area (VTA). Methods: …


The Cellular Nucleic Acid Binding Protein Regulates The Alzheimer’S Disease Β-Secretase Protein Bace1, Christopher J. Holler Jan 2012

The Cellular Nucleic Acid Binding Protein Regulates The Alzheimer’S Disease Β-Secretase Protein Bace1, Christopher J. Holler

Theses and Dissertations--Molecular and Cellular Biochemistry

Alzheimer’s disease (AD) is the most common neurodegenerative disease affecting the elderly population and is believed to be caused by the overproduction and accumulation of the toxic amyloid beta (Aβ) peptide in the brain. Aβ is produced by two separate enzymatic cleavage events of the larger membrane bound amyloid precursor protein, APP. The first, and rate-limiting, cleavage event is made by beta-secretase, or BACE1, and is thus an attractive therapeutic target. Our lab, as well as many others, has shown that BACE1 protein and activity are increased in late-stage sporadic AD. We have extended these findings to show that BACE1 …


Hcn1 Immunoreactivity Of Α-Motoneurons Following Peripheral Nerve Injury, Saif Ahmed Jan 2012

Hcn1 Immunoreactivity Of Α-Motoneurons Following Peripheral Nerve Injury, Saif Ahmed

Browse all Theses and Dissertations

Peripheral axotomy causes significant alterations in intrinsic motoneuron activity and excitability. Despite successful reinnervation of peripheral targets after injury, the recovery of motor function is incomplete. Following axotomy in the adult cat, there is an increase in the afterhyperpolarization (AHP) of the action potential in specific motoneuron types. AHP duration can be inversely correlated with the amount of Ih or sag current and further shaped through SK (Small conductance calcium-activated potassium) channel currents (Gustafsson and Pinter, 1985; Kuno, Miyata, and Muñoz-Martinez, 1974a). Hyperpolarizing-cyclic nucleotide gated (HCN) channels underlie sag currents and are critical to neuronal function by their unique property …


Comparing Two Different Statins In A Delayed Pharmacological Treatment For Ischemic Stroke, Kailyn M. Hagerty Jan 2012

Comparing Two Different Statins In A Delayed Pharmacological Treatment For Ischemic Stroke, Kailyn M. Hagerty

Browse all Theses and Dissertations

Stroke is one of the leading causes of death and the top cause of long term disability. Currently there exists no standardized treatment of care for ischemic stroke patients during the days following stroke other than giving aspirin. A drug combination containing fluoxetine, one of two statins, and ascorbic acid was used to try and improve motor function following strokes in rats. Endothelin induced stroke survival surgery was performed on the right cortex of Long Evans and Sprague Dawley rats. Functional tests were completed pre- and post-surgery and immunohistochemistry was carried out to analyze infarct volume, angiogenesis, and the glial …


Quantitative Analysis Of Glycinergic Neurons Including Ia Inhibitory Interneurons In The Ventral Spinal Cord Using A Bac-Glyt2-Egfp Transgenic Mouse Model, Palak Rajeshkumar Painter Jan 2012

Quantitative Analysis Of Glycinergic Neurons Including Ia Inhibitory Interneurons In The Ventral Spinal Cord Using A Bac-Glyt2-Egfp Transgenic Mouse Model, Palak Rajeshkumar Painter

Browse all Theses and Dissertations

We are interested in understanding the development of reciprocal inhibition, an important sensory-motor circuit that prevents co-contraction of antagonist muscles during locomotion. This effect is mediated by a subset of glycinergic neurons termed Ia inhibitory interneurons (IaINs). Transgenic mouse models are useful in helping to identify subsets of neurons in developing animals. In this thesis we first wanted to test the BAC-GlyT2-eGFP mice model by measuring GFP expression overlap in neurons with glycine in late-stage embryos (E17.5) and early postnatal animals (P0/P1). Our results suggest more than 98% of glycinergic neurons at these stages also express GFP in GlyT2-EGFP transgenic …


The Use Of Forelimb Asymmetry Functional Tests To Determine Motor Recovery With Various Drug Treatments Following Endothelin-Induced Stroke, Kelly Rebecca Leach Jan 2012

The Use Of Forelimb Asymmetry Functional Tests To Determine Motor Recovery With Various Drug Treatments Following Endothelin-Induced Stroke, Kelly Rebecca Leach

Browse all Theses and Dissertations

Our laboratory has found increased functional recovery post-stroke with Long Evans rats that received a combination of fluoxetine, simvastatin, and vitamin C. The objectives of this study were to test that treatment and other drug combinations on Sprague Dawley rats, to determine whether Forelimb Asymmetry is a reliable behavioral measure for stroke studies, and to determine the most optimal surgical procedure on Sprague Dawley rats. There were more significant increases in functional recovery observed on the Forelimb Asymmetry than on Montoya Staircase behavioral tests, but there were no significant differences between treatment groups and control. The largest number of rats …


Expressing Human Orai3 In Insect Cells For Pharmacological Studies, Orville R. Bennett Jan 2012

Expressing Human Orai3 In Insect Cells For Pharmacological Studies, Orville R. Bennett

Browse all Theses and Dissertations

The Orai3 protein forms a Ca2+ channel with a pharmacological profile distinct from its close relative, the store-operated Ca2+ channel Orai1. Though closely related to Orai1, the function of Orai3 in humans is still unclear. This study attempts to contribute to the body of knowledge by undertaking a pharmacological analysis of Orai3 in insect cells. We describe here the creation of a vector capable of expressing the mammalian Orai3 gene on an insect background. We demonstrate the ability to induce gene expression of Orai3 in these insect cells, and then assess the effectiveness of this system by characterizing the pharmacological …


Iptakalim Preferentially Decreases Nicotine-Induced Hyperlocomotion In Phencyclidine-Sensitized Rats: A Potential Dual Action Against Nicotine Addiction And Psychosis, Nick Volf, Gang Hu, Ming Li Jan 2012

Iptakalim Preferentially Decreases Nicotine-Induced Hyperlocomotion In Phencyclidine-Sensitized Rats: A Potential Dual Action Against Nicotine Addiction And Psychosis, Nick Volf, Gang Hu, Ming Li

Department of Psychology: Faculty Publications

Objective: Iptakalim is a putative ATP-sensitive potassium (KATP) channel opener. It is also a novel nicotinic acetylcholine receptor (nAChR) blocker and can antagonize nicotine-induced increase in dopamine release in the nucleus accumbens. Our recent work also shows that iptakalim exhibits a clozapine-like atypical antipsychotic profile, indicating that iptakalim may possess a dual action against nicotine addiction and schizophrenia.

Methods: The present study examined the potential therapeutic effects of iptakalim on nicotine use in schizophrenia. We created an animal model of comorbidity of nicotine addiction and schizophrenia by injecting male Sprague-Dawley rats with nicotine (0.40 mg/kg, subcutaneously[sc]) or saline, in combination …


A Proposal To Test The Effects Of Factor Ecat1 On Pluripotency, From Reprogramming To Differentiation Of Human Somatic Cells, Vritti R. Goel Jan 2012

A Proposal To Test The Effects Of Factor Ecat1 On Pluripotency, From Reprogramming To Differentiation Of Human Somatic Cells, Vritti R. Goel

CMC Senior Theses

The field of stem cell research has been growing more because of the interest in using stem cells to cure diseases and heal injuries. Human embryonic stem cells, because of the controversy surrounding them—and subsequently the difficulties in acquiring samples of the existing aging cell lines—can only be used in limited capacities. While the development of induced pluripotent stem cells in the last decade has allowed the field to progress closer to medical treatments, the low efficiency of reprogramming a somatic cell to a pluripotent state, and the vast molecular and genomic differences between human embryonic stem cells and human …


Evolution And The Expression Of Biases: Situational Value Changes The Endowment Effect In Chimpanzees, Owen D. Jones, Sarah F. Brosnan, Molly Gardner, Susan P. Lambeth, Steven J. Schapiro Jan 2012

Evolution And The Expression Of Biases: Situational Value Changes The Endowment Effect In Chimpanzees, Owen D. Jones, Sarah F. Brosnan, Molly Gardner, Susan P. Lambeth, Steven J. Schapiro

Vanderbilt Law School Faculty Publications

Cognitive and behavioral biases, which are widespread among humans, have recently been demonstrated in other primates, suggesting a common origin. Here we examine whether the expression of one shared bias, the endowment effect, varies as a function of context. We tested whether objects lacking inherent value elicited a stronger endowment effect (or preference for keeping the object) in a context in which the objects had immediate instrumental value for obtaining valuable resources (food). Chimpanzee subjects had opportunities to trade tools when food was not present, visible but unobtainable, and obtainable using the tools. We found that the endowment effect for …


Investigations Into Modulation Of Brain Oxidative Stress By Various Interventions, Jessica Lynn Harris Jan 2012

Investigations Into Modulation Of Brain Oxidative Stress By Various Interventions, Jessica Lynn Harris

Theses and Dissertations--Chemistry

In this thesis study we examined glycogen synthase kinase-3β (GSK-3β) and its effects over Nrf2 and Pin 1 as it relates to Alzheimer’s disease (AD). AD is a neurodegenerative disease characterized by a prolonged high oxidative environment. Transcription factor Nrf2 is vital in the brain’s defense against oxidative insults through its up-regulation of over 100 antioxidants. Depletion of the brain’s antioxidant defense system results in intolerance to an oxidative environment, contributing to the progression of AD. The regulatory Pin 1 protein promotes cellular homeostasis, and when down-regulated results in increased deposits of neurofibrillary tangles (NFTs) and amyloid-β (Aβ) plaques, the …


Physiological & Cellular Mechanisms Of Ammonia Tolerance In The Goldfish (Carassius Auratus), Sanya Sidhu Jan 2012

Physiological & Cellular Mechanisms Of Ammonia Tolerance In The Goldfish (Carassius Auratus), Sanya Sidhu

Theses and Dissertations (Comprehensive)

Ammonia may increase in the blood and tissues of fishes following feeding or exposure to high concentrations of environmental ammonia arising from the degradation of organic matter in aquatic environments, sewage effluent, and run-off from landfills. Ammonia may be detoxified using the enzyme glutamine synthetase (GS), which catalyzes the conversion of ammonia to glutamine. It has been suggested, however that build-ups of glutamine within the astrocytes of the brain can cause brain swelling by increasing intracellular osmolarity and water uptake by the cells. Using in vivo and in vitro approaches, the goal of this thesis was to determine if: (i) …


Feeling At Home: Learning, Law, Cognitive Science, And Narrative, Lea B. Vaughn Jan 2012

Feeling At Home: Learning, Law, Cognitive Science, And Narrative, Lea B. Vaughn

Articles

What is the "how and why" of law's affinity for narrative? In order to explain why the use of stories is such an effective teaching and presentation strategy in the law, this paper will consider theories and accounts from cognitive as well as evolutionary psychology, neuroscience, and, briefly, cultural anthropology. This account seeks to address "how" narrative helps us learn and use the law as well as "why" we are so compelled to use stories in teaching and in practice.

Brain science, simplified here, suggests that the first task is to grab someone's attention. Emotionally charged events are more likely …


Brain-Computer Interfaces In Medicine, Jerry J. Shih, Dean J. Krusienski, Johnathan R. Wolpaw Jan 2012

Brain-Computer Interfaces In Medicine, Jerry J. Shih, Dean J. Krusienski, Johnathan R. Wolpaw

Electrical & Computer Engineering Faculty Publications

Brain-computer interfaces (BCIs) acquire brain signals, analyze them, and translate them into commands that are relayed to output devices that carry out desired actions. BCIs do not use normal neuromuscular output pathways. The main goal of BCI is to replace or restore useful function to people disabled by neuromuscular disorders such as amyotrophic lateral sclerosis, cerebral palsy, stroke, or spinal cord injury. From initial demonstrations of electroenceph-alography-based spelling and single-neuron-based device control, researchers have gone on to use electroenceph-alographic, intracortical, electrocorticographic, and other brain signals for increasingly complex control of cursors, robotic arms, prostheses, wheelchairs, and other devices. Brain-computer interfaces …