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Articles 211 - 240 of 431
Full-Text Articles in Neuroscience and Neurobiology
Forgotten Children & Bonds That Heal: The Critical Nature Of Attachment, August Ashbaker
Forgotten Children & Bonds That Heal: The Critical Nature Of Attachment, August Ashbaker
Lesley University Community of Scholars Day
Human attachment is one of the most critical factors in proper neurological and physiological development. Attachment is built through the mutuality of emotional impact, as well as the regular reception of physical touch. Infants and children who have been deprived of these vital necessities through the lacking initiatives of their caregivers—through neglect—display visible signs of its physiological, cognitive, emotional, and behavioral impact. Research has found neglect to be the highest risk factor for permanent damage to brain development in comparison to other forms of complex trauma (i.e. chronic caregiver interpersonal trauma in childhood); it is also the most prevalent …
Effects Of Altered Gravity On The Central Nervous System Of Drosophila Melanogaster, Amber M. Paul, Siddhita Mhatre, Janani Iyer, Jhony A. Zavaleta, Ravikumar Hosamani
Effects Of Altered Gravity On The Central Nervous System Of Drosophila Melanogaster, Amber M. Paul, Siddhita Mhatre, Janani Iyer, Jhony A. Zavaleta, Ravikumar Hosamani
Publications
A comprehensive understanding of the effects of spaceflight and altered gravity on human physiology is necessary for continued human space exploration and long-term space habitation. Spaceflight includes multiple factors such as microgravity, hyper gravity, ionizing radiation, physiological stress, and disrupted circadian rhythms and these have been shown to contribute to pathophysiological responses that target immunity, bone and muscle integrity, cardiovascular and nervous systems. In terrestrial conditions, some of these factors can lead to cancer and neuroimmunological disorders. In this study, we used a well-established spaceflight model organism, Drosophila melanogaster, to assess spaceflight-associated changes in the nervous system. We hypothesize that …
Obstacle Negotiation And Dual-Tasking In People With A Unilateral Transtibial Amputation., Humberto Omana, Michael Payne, Ricardo Viana, Susan Winnifred Hunter
Obstacle Negotiation And Dual-Tasking In People With A Unilateral Transtibial Amputation., Humberto Omana, Michael Payne, Ricardo Viana, Susan Winnifred Hunter
Western Research Forum
Background: Falls in people with a lower limb amputation (PLLAs) are common and most often occur while walking, resulting in physical and psychological consequences that adversely affect quality of life. Walking is a complex motor task requiring cognitive resources. Due to walking with a prosthesis, PLLAs report focussing on every step they take, indicating greater cognitive needs. However, cognitive resources are limited, and most of our everyday activities also involve the simultaneous performance of motor and cognitive tasks, known as dual-tasking. The inter-relationship between mobility, cognition and postural stability in PLLAs using a prosthesis is just starting to be understood. …
Strengthening Relationships Between Neural Ideals And Receptive Fields, Angelique Morvant
Strengthening Relationships Between Neural Ideals And Receptive Fields, Angelique Morvant
Rose-Hulman Undergraduate Mathematics Journal
Neural codes are collections of binary vectors that represent the firing patterns of neurons. The information given by a neural code C can be represented by its neural ideal JC. In turn, the polynomials in JC can be used to determine the relationships among the receptive fields of the neurons. In a paper by Curto et al., three such relationships, known as the Type 1-3 relations, were linked to the neural ideal by three if-and-only-if statements. Later, Garcia et al. discovered the Type 4-6 relations. These new relations differed from the first three in that they were …
The Drosophila Neuroblasts: A Model System For Human Ribosomopathies, Sonu Shrestha Baral
The Drosophila Neuroblasts: A Model System For Human Ribosomopathies, Sonu Shrestha Baral
LSU Doctoral Dissertations
This dissertation describes the use of Drosophila neuroblasts (NBs) to model human ribosomopathies; the overall goal is to understand why specific stem cell and progenitor cell populations are the primary targets in nucleolar stress as seen in the ribosomopathies. Chapter 1 provides an overview of relevant literature. Chapter 2 describes nucleolar stress in Drosophila neuroblasts as a model for human ribosomopathies. For this, we induce nucleolar stress by using the UAS-GAL4 system to express RNAi that depletes Nopp140 transcripts, and we also employ homozygous, CRISPR-Cas9-generated Nopp140 gene disruptions with a systemic null phenotype (Nopp140-/-). Embryonic lethality was observed …
"Where Was I?": Linguistic Reprocessing In Distracted Reading, Katrina Hillam
"Where Was I?": Linguistic Reprocessing In Distracted Reading, Katrina Hillam
Undergraduate Honors Theses
This thesis examines the impact of repeated auditory and task-oriented distractors on linguistic processing. Impact was measured through eye tracking software recording first fixation duration, gaze duration, and total time spent on distractor words. This study found consistent significant difference only in the total time category, suggesting that the processing stage most impacted by distraction is global context—our awareness of how a word fits in to the paragraph at large. Participants were skilled at regaining reading speed after distraction, showing no overall impairment for other processing levels. This phenomenon could be dangerous for student comprehension, as reading speed will be …
The Effects Of Huntingtin-Lowering: What Do We Know So Far?, William F. Kaemmerer, Richard C. Grondin
The Effects Of Huntingtin-Lowering: What Do We Know So Far?, William F. Kaemmerer, Richard C. Grondin
Neuroscience Faculty Publications
Therapies targeting mutant huntingtin DNA, mRNA, and protein have a chance at becoming the first disease-modifying treatments for Huntington’s disease, a fatal inherited neurodegenerative disorder for which only symptom management treatments are available today. This review focuses on evidence addressing several key questions pertinent to huntingtin-lowering, ranging from the functions of wild-type huntingtin (wtHTT) that may be disrupted by huntingtin-lowering treatments through the various ways huntingtin can be lowered, the tolerability of wtHTT-lowering in mice and primates, what has been found in the Ionis Pharmaceutical safety trial of a huntingtin-lowering therapy, and to the question of how much mutant huntingtin …
The Intersection Of Neuroscience And Art, Matilde Mendes Pinto
The Intersection Of Neuroscience And Art, Matilde Mendes Pinto
UNO Student Research and Creative Activity Fair
The Interaction of Neuroscience and Art will give you an insight into how they interact with each other by analyzing visual art, musical art and theatrical art.
Neural Mechanisms Underlying Sensorimotor Synchronization With Different Forms Of Rhythms, Ryan Meidinger, Vivien Marmelat
Neural Mechanisms Underlying Sensorimotor Synchronization With Different Forms Of Rhythms, Ryan Meidinger, Vivien Marmelat
UNO Student Research and Creative Activity Fair
Introduction: Neural activity exhibits non-periodic rhythm [2] but it is unknown if neural activity synchronizes with non-periodic, as it does with periodic rhythms [1]. The purpose of this research is to determine the neural mechanisms present leading to synchronized finger tapping to varying rhythms. Methods: Twenty young healthy adults will be recruited to participate in the present study (see Figure 1 for the protocol). Electroencephalography (EEG) will be used to measure the amplitude (AE) and beats for interbeat intervals (IBIs), and a pressure sensor will be used to measure intertap intervals (ITIs). The AE will be assessed for …
Effects Of Chronic Ethanol Exposure On Stress Coping Style And Genetic States Of Zebrafish (Danio Rerio), Alexander Goodman
Effects Of Chronic Ethanol Exposure On Stress Coping Style And Genetic States Of Zebrafish (Danio Rerio), Alexander Goodman
UNO Student Research and Creative Activity Fair
Neurotransmitter systems are important in regulating the stress response. If a behavioral response is disproportional to a stressor it is characterized as anxiety-like behavior. Many anxiolytic compounds, such as ethanol, increase stressor engagement, but how these compounds interact with an organism on a neurogenetic level is less understood. In this study, I assessed the impact of chronic ethanol treatment on behavior and gene expression of GABAAreceptors subunits on two strains of zebrafish. Each strain was selectively bred to display the proactive or reactive stress coping style where proactive individuals will actively engage a stressor more than reactive individuals. …
Investigating Comt Influence On The Proactive-Reactive Stress Coping Axis In Zebrafish, Sean T. Bresnahan, Ryan Y. Wong
Investigating Comt Influence On The Proactive-Reactive Stress Coping Axis In Zebrafish, Sean T. Bresnahan, Ryan Y. Wong
UNO Student Research and Creative Activity Fair
Individuals of the same species often display differences in correlated suites of behaviors which are made conspicuous when challenges – stressful, fear-inducing, etc. – are presented. In many species, a specific suite of behaviors (risk-aversion, aggression, exploration, learning, and memory) characterize an alternative set of stress coping styles (proactive and reactive). Such behaviors are regulated in the brain by specific neurotransmitters along with proteins that regulate them. One neurotransmitter regulator protein, catechol-O-methyltransferase (COMT) shows higher baseline whole-brain expression in proactive relative to reactive animals. However, it is not known whether its expression is a cause or a consequence of the …
Pilot Study Of Empathy In Adults, Libby Moberg
Pilot Study Of Empathy In Adults, Libby Moberg
UNO Student Research and Creative Activity Fair
Empathy is of critical public health importance due to its association with relationship satisfaction and well-being (Davis & Oathout, 1987; Davis, 1983). There is growing evidence that bilingual individuals may have higher levels of empathy (Javor, 2016). One potential mechanism for this relationship is that bilingual individuals tend to have higher levels of executive functioning (Costa et al, 2008), which is linked to higher empathy because individuals are able to more easily adopt others’ perspectives. Previous studies examining this question have largely relied on self-report questionnaires assessing empathy as a general tendency (i.e., trait). No studies have examined differences in …
Spaces Between, Sara Kapadia
Spaces Between, Sara Kapadia
The Transdisciplinary STEAM+ Journal
No abstract provided.
Request For Applications: Neuroscience Summer Research Education Program, University Of Mississippi. Brain Wellness Constellation
Request For Applications: Neuroscience Summer Research Education Program, University Of Mississippi. Brain Wellness Constellation
Brain Wellness
The Brain Wellness Undergraduate Summer Research Program is an initiative of the UM-UMMC Flagship Constellations. The program will provide stipends to undergraduate students for collaborative research experiences in neuroscience related to brain wellness. In this way it will serve to develop new pipelines for pre-graduate and pre-medical students interested in neuroscience to gain research experience and develop collaborative connections between neuroscience faculty at the Oxford and Jackson campuses.
Cognition And The Brain Of Brood Parasitic Cowbirds., David F Sherry, Mélanie F Guigueno
Cognition And The Brain Of Brood Parasitic Cowbirds., David F Sherry, Mélanie F Guigueno
Psychology Publications
Cowbirds are brood parasites. Females lay their eggs in the nests of other species, which then incubate the cowbird eggs and raise the young cowbirds. Finding and returning to heterospecific nests presents cowbirds with several cognitive challenges. In some species, such as brown-headed cowbirds (Molothrus ater), females but not males search for and remember the locations of potential host nests. We describe recent research on sex differences in cognition and the hippocampus associated with this sex difference in search for host nests. Female brown-headed cowbirds perform better than males on some, but not all, tests of spatial memory and females …
Design And Actuation Of A Fabric-Based Worm-Like Robot, Akhil Kandhari, Anna Mehringer, Hillel J. Chiel, Roger D. Quinn, Kathryn A. Daltorio
Design And Actuation Of A Fabric-Based Worm-Like Robot, Akhil Kandhari, Anna Mehringer, Hillel J. Chiel, Roger D. Quinn, Kathryn A. Daltorio
Faculty Scholarship
Soft-bodied animals, such as earthworms, are capable of contorting their body to squeeze through narrow spaces, create or enlarge burrows, and move on uneven ground. In many applications such as search and rescue, inspection of pipes and medical procedures, it may be useful to have a hollow-bodied robot with skin separating inside and outside. Textiles can be key to such skins. Inspired by earthworms, we developed two new robots: FabricWorm and MiniFabricWorm. We explored the application of fabric in soft robotics and how textile can be integrated along with other structural elements, such as three-dimensional (3D) printed parts, linear springs, …
A Hindbrain Inhibitory Microcircuit Mediates Vagally-Coordinated Glucose Regulation, Carie R. Boychuk, Katalin Cs. Smith, Laura E. Peterson, Jeffery A. Boychuk, Corwin R. Butler, Isabel D. Derera, John J. Mccarthy, Bret N. Smith
A Hindbrain Inhibitory Microcircuit Mediates Vagally-Coordinated Glucose Regulation, Carie R. Boychuk, Katalin Cs. Smith, Laura E. Peterson, Jeffery A. Boychuk, Corwin R. Butler, Isabel D. Derera, John J. Mccarthy, Bret N. Smith
Physiology Faculty Publications
Neurons in the brainstem dorsal vagal complex integrate neural and humoral signals to coordinate autonomic output to viscera that regulate a variety of physiological functions, but how this circuitry regulates metabolism is murky. We tested the hypothesis that premotor, GABAergic neurons in the nucleus tractus solitarius (NTS) form a hindbrain micro-circuit with preganglionic parasympathetic motorneurons of the dorsal motor nucleus of the vagus (DMV) that is capable of modulating systemic blood glucose concentration. In vitro, neuronal activation or inhibition using either excitatory or inhibitory designer receptor exclusively activated by designer drugs (DREADDs) constructs expressed in GABAergic NTS neurons increased …
A Cross-Species Analysis Reveals A General Role For Piezo2 In Mechanosensory Specialization Of Trigeminal Ganglia From Tactile Specialist Birds, Eve R. Schneider, Evan O. Anderson, Viktor V. Feketa, Marco Mastrotto, Yury A. Nikolaev, Elena O. Gracheva, Sviatoslav N. Bagriantsev
A Cross-Species Analysis Reveals A General Role For Piezo2 In Mechanosensory Specialization Of Trigeminal Ganglia From Tactile Specialist Birds, Eve R. Schneider, Evan O. Anderson, Viktor V. Feketa, Marco Mastrotto, Yury A. Nikolaev, Elena O. Gracheva, Sviatoslav N. Bagriantsev
Biology Faculty Publications
A major challenge in biology is to link cellular and molecular variations with behavioral phenotypes. Here, we studied somatosensory neurons from a panel of bird species from the family Anatidae, known for their tactile-based foraging behavior. We found that tactile specialists exhibit a proportional expansion of neuronal mechanoreceptors in trigeminal ganglia. The expansion of mechanoreceptors occurs via neurons with intermediately and slowly inactivating mechanocurrent. Such neurons contain the mechanically gated Piezo2 ion channel whose expression positively correlates with the expression of factors responsible for the development and function of mechanoreceptors. Conversely, Piezo2 expression negatively correlates with expression of molecules mediating …
Influence Of Stimulus Intensity On Multimodal Integration In The Startle Escape System Of Goldfish, Camille Mcintyre, Thomas Preuss
Influence Of Stimulus Intensity On Multimodal Integration In The Startle Escape System Of Goldfish, Camille Mcintyre, Thomas Preuss
Publications and Research
Processing of multimodal information is essential for an organism to respond to environmental events. However, how multimodal integration in neurons translates into behavior is far from clear. Here, we investigate integration of biologically relevant visual and auditory information in the goldfish startle escape system in which paired Mauthner-cells (M-cells) initiate the behavior. Sound pips and visual looms as well as multimodal combinations of these stimuli were tested for their effectiveness of evoking the startle response. Results showed that adding a low intensity sound early during a visual loom (low visual effectiveness) produced a supralinear increase in startle responsiveness as compared …
Commentary: Sugar Metabolism Regulates Flavor Preferences And Portal Glucose Sensing, Anthony Sclafani, Karen Acroff
Commentary: Sugar Metabolism Regulates Flavor Preferences And Portal Glucose Sensing, Anthony Sclafani, Karen Acroff
Publications and Research
No abstract provided.
Cortical And Subcortical Contributions To Neuroplasticity After Repetitive Transspinal Stimulation In Humans, Lynda M. Murray, Anamul Islam Md., Maria Knikou
Cortical And Subcortical Contributions To Neuroplasticity After Repetitive Transspinal Stimulation In Humans, Lynda M. Murray, Anamul Islam Md., Maria Knikou
Publications and Research
The objectives of this study were to establish cortical and subcortical contributions to neuroplasticity induced by noninvasive repetitive transspinal stimulation in human subjects free of any neurological disorder. To meet our objectives, before and after 40 minutes of transspinal stimulation we established changes in tibialis anterior (TA) motor-evoked potentials (MEPs) in response to paired transcranial magnetic stimulation (TMS) pulses at interstimulus intervals (ISIs) consistent with I-wave periodicity. In order to establish to what extent similar actions are exerted at the spinal cord and motor axons, changes in soleus H-reflex and transspinal evoked potential (TEP) amplitude following transspinal and group Ia …
Changes In Functional Connectivity Following Treatment With Emotion Regulation Therapy, Matthew A. Scult, David M. Fresco, Faith M. Gunning, Conor Liston, Saren H. Seeley, Emmanuel Garcia, Douglas S. Mennin
Changes In Functional Connectivity Following Treatment With Emotion Regulation Therapy, Matthew A. Scult, David M. Fresco, Faith M. Gunning, Conor Liston, Saren H. Seeley, Emmanuel Garcia, Douglas S. Mennin
Publications and Research
Emotion regulation therapy (ERT) is an efficacious treatment for distress disorders (i.e., depression and anxiety), predicated on a conceptual model wherein difficult to treat distress arises from intense emotionality (e.g., neuroticism, dispositional negativity) and is prolonged by negative self-referentiality (e.g., worry, rumination). Individuals with distress disorders exhibit disruptions in two corresponding brain networks including the salience network (SN)reflecting emotion/motivation and the default mode network (DMN) reflecting self-referentiality. Using resting-state functional connectivity (rsFC) analyses, seeded with primary regions in each of these networks, we investigated whether ERT was associated with theoretically consistent changes across nodes of these networks and whether these …
The Effects Of Ocular Dominance On Visual Processing In College Students, William Alexander Holland
The Effects Of Ocular Dominance On Visual Processing In College Students, William Alexander Holland
James Madison Undergraduate Research Journal (JMURJ)
The role of ocular dominance in processing visual memory and analytic tasks is unknown. Research has variably showed both significant effects and no effect of ocular dominance on visual perception, motor control, and sports performance. The goal of this study was to determine if there is a relationship between ocular dominance and visual processing under a variety of computer gaming tasks. This was accomplished by first determining subjects’ ocular dominance through the Miles test, and then examining the subjects’ visual performance on four different Lumosity games under three conditions: left eye, right eye, and both eyes. Results suggest a relationship …
Decoding Attentional State To Faces And Scenes Using Eeg Brainwaves, Reza Abiri, Soheil Borhani, Yang Jiang, Xiaopeng Zhao
Decoding Attentional State To Faces And Scenes Using Eeg Brainwaves, Reza Abiri, Soheil Borhani, Yang Jiang, Xiaopeng Zhao
Behavioral Science Faculty Publications
Attention is the ability to facilitate processing perceptually salient information while blocking the irrelevant information to an ongoing task. For example, visual attention is a complex phenomenon of searching for a target while filtering out competing stimuli. In the present study, we developed a new Brain-Computer Interface (BCI) platform to decode brainwave patterns during sustained attention in a participant. Scalp electroencephalography (EEG) signals using a wireless headset were collected in real time during a visual attention task. In our experimental protocol, we primed participants to discriminate a sequence of composite images. Each image was a fair superimposition of a scene …
Post-Synaptic Mechanisms Of Early And Late Prepulse Inhibition In The Goldfish, Daniel Bronson
Post-Synaptic Mechanisms Of Early And Late Prepulse Inhibition In The Goldfish, Daniel Bronson
Dissertations, Theses, and Capstone Projects
Sensorimotor gating, or prepulse inhibition (PPI), attenuates the startle response during sensory processing by limiting sensory input to the startle circuit. In the goldfish startle circuit, a single action potential in the Mauthner-cell (M-cell) triggers the startle response. PPI in the M-cell is mediated by multiple post-synaptic mechanisms, including the activation of a tonic, shunting inhibition as well as a voltage-sensitive conductance, both of which briefly reduce M-cell excitability. However, the specific channels and pathways that modulate PPI are not fully known. This work further characterizes the post-synaptic conductances that mediate PPI by blocking voltage-gated and inward-rectifying potassium channels, antagonizing …
The Master Synaptic Regulator: Activity Regulated Cytoskeleton Associated Protein, Arc, In Normal Aging And Diseases With Cognitive Impairment, Amber Khan
Dissertations, Theses, and Capstone Projects
Alzheimer’s disease (AD) is a progressive neurodegenerative disease with complex underlying pathogenic mechanisms. Epidemiological studies have forecasted that in the next 3 decades, the number of AD cases will rise to epidemic proportions with enormous medical, emotional and financial burdens impacting individuals affected and society. Among many risk factors for AD, advancing age is clearly essential and necessary. Revelation of molecular changes in synaptic activities leading to the prodromal, mild cognitive impairment (MCI) stage may help illuminate the course of pathogenic progression and its cause-effect relationship with various targets thereby enabling target-driven disease-modifying therapeutic agents for AD.
Activity-regulated cytoskeleton-associated (Arc) …
Ck2 Negatively Regulates 5-Ht4 Receptor Signaling In The Prefrontal Cortex And Mediates Depression-Like Behaviors, Julia Castello Saval
Ck2 Negatively Regulates 5-Ht4 Receptor Signaling In The Prefrontal Cortex And Mediates Depression-Like Behaviors, Julia Castello Saval
Dissertations, Theses, and Capstone Projects
The serotonergic system has been the major candidate in the pathophysiology of mood related disorders such as anxiety and major depressive disorder (MDD). Unfortunately, current antidepressant drugs are ineffective in 50% of the population and require chronic administration for a period of 3-6 weeks before the onset of therapeutic response. 5-HT4 receptor (5-HT4R) agonists have emerged as potential candidates for fast antidepressant action, since an antidepressant response can be achieved after 3 days of pharmacological administration in rodents.
This dissertation aims to investigate the role of casein kinase 2 (CK2) as a regulator of 5-HT4R expression …
The Integration Of Multiple Sources Of Sonic Hedgehog In The Spinal Cord Contribute To The Production Of First-Born Oligodendrocyte Precursor Cells Which Become Critical For Synapse Remodeling In Response To Adult Motor Neuron Injury, Lev Starikov
Dissertations, Theses, and Capstone Projects
Oligodendrocyte precursor cells (OPCs) arise sequentially first from a ventral and then from a dorsal precursor domain during spinal cord development. Whether the sequential production of OPCs is of physiological significance has not been examined. Here I show that interrupting Sonic hedgehog (Shh) signaling originating from nascent ventricular zone derivatives (VZD), motor neurons and the lateral floor plate, almost completely blocks ventral but not dorsal oligodendrogenesis without noticeably affecting early tissue patterning and embryonic development. In the absence of ventral OPCs, dorsal OPCs increase proliferation and populate the entire spinal cord with increased density. In these mutant mice, dOPCs take …
Molecular Analysis Of Cone Photoreceptor Genesis From A Specific Retinal Progenitor Population, Diego F. Buenaventura
Molecular Analysis Of Cone Photoreceptor Genesis From A Specific Retinal Progenitor Population, Diego F. Buenaventura
Dissertations, Theses, and Capstone Projects
There are two types of photosensitive cells of the retina that contribute to image formation: Cone photoreceptors that mediate color discrimination and rods that provide photosensitivity in low-light conditions. Given the importance of cones in high acuity and color vision, deficiencies in this cell type that result from ailments such as retinitis pigmentosa and macular degeneration can lead to a debilitating loss of vision. Currently, one of the most pressing goals in the field of retinal development is the elucidation of the gene regulatory networks (GRN) involved in inducing an undifferentiated cell into becoming a functional cone photoreceptor.
Recently, an …
A Defense Of Pure Connectionism, Alex B. Kiefer
A Defense Of Pure Connectionism, Alex B. Kiefer
Dissertations, Theses, and Capstone Projects
Connectionism is an approach to neural-networks-based cognitive modeling that encompasses the recent deep learning movement in artificial intelligence. It came of age in the 1980s, with its roots in cybernetics and earlier attempts to model the brain as a system of simple parallel processors. Connectionist models center on statistical inference within neural networks with empirically learnable parameters, which can be represented as graphical models. More recent approaches focus on learning and inference within hierarchical generative models. Contra influential and ongoing critiques, I argue in this dissertation that the connectionist approach to cognitive science possesses in principle (and, as is becoming …