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Articles 3331 - 3360 of 5793
Full-Text Articles in Neuroscience and Neurobiology
Disc1 Knockout Rats Reveal Sexually Dimorphic Patterns Of Impairment Across Development, Stephanie S. Desrochers
Disc1 Knockout Rats Reveal Sexually Dimorphic Patterns Of Impairment Across Development, Stephanie S. Desrochers
Honors Theses
Schizophrenia is a chronic disorder characterized by three symptom categories: positive (hallucinations, delusions), negative (anhedonia, anxiety), and cognitive (sensory processing and memory deficits). We worked with a biallelic deletion of the Disrupted-in-schizophrenia-1 (DISC1) gene in Sprague-Dawley rats to facilitate our understanding of the biological bases of schizophrenia. Mutations of DISC1 are associated with a higher prevalence of schizophrenia. Adult DISC1 knockout, compared to wildtype, rats display features of schizophrenia-like outcomes in rodent models. The present study investigated the progression of the cognitive symptom deficits in prepulse inhibition (PPI), assessing animals at postnatal days 17 (pre-weaning), 26 (post-weaning), 39 (adolescent), and …
Regulation Of Hcn Channel Function By Direct Camp Binding And Singlet Oxygen, Vinaykumar Idikuda
Regulation Of Hcn Channel Function By Direct Camp Binding And Singlet Oxygen, Vinaykumar Idikuda
Theses and Dissertations
Hyperpolarization-activated, cyclic-nucleotide gated ion channels (HCN channels) are activated by membrane hyperpolarization and modulated by cyclic nucleotides. HCN channels are important to maintain the resting membrane potential and input resistance in neurons and have important physiological functions in the brain and heart. Four mammalian HCN isoforms, HCN1-4, and the isoform cloned from sea urchin, spHCN, have been extensively studied. Among these, only spHCN channel shows a voltage dependent inactivation. Previous studies have shown that the ligand binding in mHCN2 channel is activity dependent: cAMP binding increases along with channel opening or channels in the open state have higher binding affinity …
Galantamine's Deconstruction In The Quest Of A Pam Pharmacophore, Malaika Argade
Galantamine's Deconstruction In The Quest Of A Pam Pharmacophore, Malaika Argade
Theses and Dissertations
Alzheimer’s disease is a progressive neurodegenerative disorder generally affecting people above the age of 65 years. Even though the pathophysiological hallmarks of AD were established more than a hundred years ago, there is yet to be a drug that can stop its characteristic neuronal damage. Of the five currently FDA-approved drugs, galantamine has a unique mechanism of action. Apart from being an AChE inhibitor, galantamine can effectively potentiate (positive allosteric modulator) the effect of agonists at nAChRs at concentrations lower than those required for its action as an AChE inhibitor. Perhaps the clinical benefits observed with galantamine are associated mainly …
Molecular Brain Adaptations To Ethanol: Role Of Glycogen Synthase Kinase-3 Beta In The Transition To Excessive Consumption, Andrew D. Van Der Vaart
Molecular Brain Adaptations To Ethanol: Role Of Glycogen Synthase Kinase-3 Beta In The Transition To Excessive Consumption, Andrew D. Van Der Vaart
Theses and Dissertations
Alcoholism is a complex neuropsychiatric disease that is characterized by compulsive alcohol use and intensifying cravings and withdrawals, often culminating in physiologic dependency. Fundamental alterations in brain chemistry underlie the transition from initial ethanol exposure to repetitive excessive use. Key mediators of this adaptation include changes in gene expression and signal transduction. Here we investigated gene expression pathways in prefrontal cortex and nucleus accumbens following acute or chronic ethanol treatment, to identify genes with potentially conserved involvement in the long-term response of the corticolimbic system to repeated ethanol exposure. We investigated Gsk3b, which encodes glycogen synthase kinase 3-beta, as a …
Mechanisms Regulating Axon Initial Segment Stability, Savannah D. Benusa
Mechanisms Regulating Axon Initial Segment Stability, Savannah D. Benusa
Theses and Dissertations
Axon initial segment (AIS) disruption has been described in a number of pathological environments where neuroinflammation is a contributing factor; however, whether this disruption is reversible in unknown. To address the principle of AIS structural recovery, we employed an acute neuroinflammatory model. Acute neuroinflammation induced disruption of AIS structural and functional domains and, importantly, upon resolution of neuroinflammatory conditions, was reversed.
Consistent with other studies, we observed a close interaction of microglia with AISs, and utilized this acute neuroinflammatory model to investigate the relationship between reactive microglia and AIS integrity. Gene expression analysis of microglial transcription profiles identified reactive oxygen …
Effects Of Clove Oil (Eugenol) On Proprioceptive Neurons, Heart Rate, And Behavior In Model Crustaceans, Samuel Wycoff, Kristin Weineck, Shannon Conlin, Chinni Suryadevara, Elizabeth Grau, Alec Bradley, Danielle Cantrell, Samantha Eversole, Carolyn Grachen, Kaylee Hall, Danielle Hawthorne, Claire Kinmon, Paula Ortiz Guerrero, Bhavik Patel, Kaitlyn Samuels, Gia Valdes, Andrew J. Ray, Leo J. Fleckenstein, Elena Piana, Robin L. Cooper
Effects Of Clove Oil (Eugenol) On Proprioceptive Neurons, Heart Rate, And Behavior In Model Crustaceans, Samuel Wycoff, Kristin Weineck, Shannon Conlin, Chinni Suryadevara, Elizabeth Grau, Alec Bradley, Danielle Cantrell, Samantha Eversole, Carolyn Grachen, Kaylee Hall, Danielle Hawthorne, Claire Kinmon, Paula Ortiz Guerrero, Bhavik Patel, Kaitlyn Samuels, Gia Valdes, Andrew J. Ray, Leo J. Fleckenstein, Elena Piana, Robin L. Cooper
Biology Faculty Publications
Clove oil contains eugenol as an active ingredient and is used as a topical anesthetic in mammals to remedy pain and to anesthetize fish and other seafood for short periods; however, the exact mechanism of action of eugenol is not fully understood. We examined use of eugenol as a reversible anesthetic in crustaceans by examining its effect on sensory and motor neurons in the Red Swamp crayfish (Procambarus clarkii), Blue crab (Callinectes sapidus) and Whiteleg shrimp (Litopenaeus vannamei) with electrophysiological recordings. The neurogenic heart rate in the three species was also monitored along with …
Investigating The Effects Of Homocysteine As An Agonist On Invertebrate Glutamatergic Synapses, Elizabeth Grau, Alexandra E. Stanback, Alec Bradley, Danielle Cantrell, Samantha Eversole, Carolyn Grachen, Kaylee Hall, Danielle Hawthorne, Claire Kinmon, Paula Ortiz Guerrero, Bhavik Patel, Kaitlyn Samuels, Chinni Suryadevara, Gia Valdes, Samuel Wycoff, Robin L. Cooper
Investigating The Effects Of Homocysteine As An Agonist On Invertebrate Glutamatergic Synapses, Elizabeth Grau, Alexandra E. Stanback, Alec Bradley, Danielle Cantrell, Samantha Eversole, Carolyn Grachen, Kaylee Hall, Danielle Hawthorne, Claire Kinmon, Paula Ortiz Guerrero, Bhavik Patel, Kaitlyn Samuels, Chinni Suryadevara, Gia Valdes, Samuel Wycoff, Robin L. Cooper
Biology Faculty Publications
Hyperhomocysteinemia (HHcy) in mammals can produce neurological deficits, such as memory loss. The cause of the neurological issues is assumed to be due to homocysteine (HCY) binding to glutamatergic receptors in the central nervous system (CNS). High levels of HCY in the CNS are also associated with Amyotrophic Lateral Sclerosis (ALS) and Parkinson’s disease. Thus, understanding the detailed mechanisms of HCY in model preparations could be useful in developing potential treatments to neurodegenerative diseases with overlapping symptoms to HHcy. The aim of this study is to investigate the efficacy of HCY as an agonist at glutamatergic synapses in invertebrates. The …
Using Parent-Identified Strengths Of Autistic Children To Advance Strength-Based Intervention, Angelique Francesca Trigueros
Using Parent-Identified Strengths Of Autistic Children To Advance Strength-Based Intervention, Angelique Francesca Trigueros
Walden Dissertations and Doctoral Studies
Questions remain about the range of abilities autistic children possess and what constitutes effective treatment. Strength-based intervention contrasts with traditional autistic intervention approaches that focus on children's deficits. Studies on strength-based intervention approaches have not revealed how children's strengths are identified and have not used the insights of parents for this purpose. Neurodiversity serves as the conceptual framework because the tenets of neurodiversity align with those of strength-based approaches and hold that autism is a variation of the human condition rather than a disability. The purpose of this qualitative interpretive phenomenological study was to explore how the parent-identified strengths of …
Depressive Symptoms Are Associated With Cognitive Function In The Elderly With Type 2 Diabetes, Elizabeth Guerrero-Berroa, Ramit Ravona-Springer, James Schmeidler, Anthony Heymann, Laili Soleimani, Mary Sano, Derek Leroith, Rachel Preiss, Ruth Zukran, Jeremy M. Silverman, Michal Schnaider Beeri
Depressive Symptoms Are Associated With Cognitive Function In The Elderly With Type 2 Diabetes, Elizabeth Guerrero-Berroa, Ramit Ravona-Springer, James Schmeidler, Anthony Heymann, Laili Soleimani, Mary Sano, Derek Leroith, Rachel Preiss, Ruth Zukran, Jeremy M. Silverman, Michal Schnaider Beeri
Publications and Research
Background: Type 2 diabetes (T2D) is a metabolic condition associated with poor clinical and cognitive outcomes including vascular disease, depressive symptoms, cognitive impairment, and dementia. In the general elderly population, depression has been consistently identified as a risk factor for cognitive impairment/decline. However, the association between depression and cognitive function in T2D has been understudied.
Objective: We investigated the association between depression and cognitive function in a large sample of cognitively normal elderly with T2D.
Methods: In this cross-sectional study, we examined 738 participants, aged 65–88 years old, enrolled in the Israel Diabetes and Cognitive Decline study. For each …
Effects Of Yoga On The Motor Skills Of A Ten-Year-Old Male With Autism Spectrum Disorder, Amber Schmitt
Effects Of Yoga On The Motor Skills Of A Ten-Year-Old Male With Autism Spectrum Disorder, Amber Schmitt
Senior Honors Theses and Projects
Autism Spectrum Disorder (ASD} is a neurodevelopmental disorder that is typically diagnosed in childhood due to the presence of atypical development, social interactions, and repetitive stereotypical patterns of behavior. The purpose of the present study was to examine the effects of a yoga intervention on a ten-year-old male diagnosed with ASD. It was hypothesized that the yoga intervention on select instructed poses would increase both pose duration and pose performance and that the results would generalize to longer pose duration and better pose performance on non-instructed poses. Pre-intervention assessments of motor functioning were administered, including the Movement ABC, BOT-2, TGMD, …
Chronic Circadian Misalignment Leads To Reduced Longevity And Largescale Changes In Gene Expression In Drosophila Melanogaster, Alex Christ Boomgarden
Chronic Circadian Misalignment Leads To Reduced Longevity And Largescale Changes In Gene Expression In Drosophila Melanogaster, Alex Christ Boomgarden
Master's Theses
As a result of earth's orientation toward the sun producing day and night, organisms have evolved an endogenous circadian timing system that is responsible for the 24-hour oscillation of most physiological and behavioral processes. This timing system is constantly synchronized to the external environment to adapt to and anticipate changes in light, temperature, food, and mate availability. In modern society, social and work constraints cause people to live schedules that are out of sync with their internal circadian clocks, producing a chronic circadian misalignment (CCM). While epidemiological studies in humans point to potentially damaging metabolic and cognitive consequences of CCM, …
Control Of Striatal Activity By Neuronal Glutamate Transporters, Modhurika De
Control Of Striatal Activity By Neuronal Glutamate Transporters, Modhurika De
Legacy Theses & Dissertations (2009 - 2024)
The basal ganglia are subcortical nuclei that control the execution of learnt motor behaviors and emotions. The striatum, the main output nucleus of the basal ganglia, receives glutamatergic inputs from the cortex and thalamus and sends GABAergic inputs to the sub-thalamic nucleus via the axonal projections of D1- and D2-receptor (D1R and D2R) expressing medium spiny neurons (D1- and D2-MSNs, respectively). The dorsolateral striatum (DLS) is mainly involved in movement execution, whereas the ventromedial striatum (VMS) regulates emotions. Excitatory inputs onto D1- and D2-MSNs are mediated by post-synaptic ionotropic (GluA, GluN) and metabotropic glutamate receptors (mGluRI). The diffusion distance of …
Modulation Of Cytokine Signaling In Optic Nerve Regeneration In Xenopus Laevis, Rupa Priscilla Choudhary
Modulation Of Cytokine Signaling In Optic Nerve Regeneration In Xenopus Laevis, Rupa Priscilla Choudhary
Legacy Theses & Dissertations (2009 - 2024)
The axons of the optic nerve, like other central nervous system (CNS) axons, tend to lose their capacity to regenerate following an injury in adult amniotes, but these axons are able to regenerate throughout life in anamniotes. In mammals, optic axon regeneration is promoted by inhibiting the increased expression in retinal ganglion cells of a cytokine signaling molecule, Suppressor of Cytokine Signaling 3 (SOCS3), that accompanies injury. In animals capable of regeneration, SOCS3 mRNA expression also increases dramatically in retinal ganglion cells after optic nerve injury, but somehow this increase is insufficient to block regeneration. To gain insights into how …
Heteromeric Assemblies Of Glua3 Flip And Flop Shows Differences In Their Channel Opening Kinetics, Nicholas Karl
Heteromeric Assemblies Of Glua3 Flip And Flop Shows Differences In Their Channel Opening Kinetics, Nicholas Karl
Legacy Theses & Dissertations (2009 - 2024)
Prior studies of α-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid (AMPA) receptors, including that of GluA3 AMPA receptor subunit, have shown that alternative mRNA splicing, which generates flip and flop variants with different amino acid sequences, gives rise to functional differences between the two variants. The goal of this MS thesis is to investigate the basic gating properties of the heteromeric complex channels formed from GluA2R/GluA3 AMPA receptor subunits and the different variants between the two subunits. The hypothesis to be tested is whether different GluA3 variants affect the channel gating properties when each of the variants is in a complex with the Q/R-site edited …
Associations Of Lifestyle And Vascular Risk Factors With Alzheimer's Brain Biomarker Changes During Middle Age: A 3 Year Longitudinal Study In The Broader New York City Area, Michelle J. Walters, Joanna Sterling, Crystal Quinn, Christine Ganzer, Ricardo S. Osorio, Randolph D. Andrews, Dawn C. Matthews, Shankar Vallabhajosula, Mony J. De Leon, Richard S. Isaacson, Lisa Mosconi
Associations Of Lifestyle And Vascular Risk Factors With Alzheimer's Brain Biomarker Changes During Middle Age: A 3 Year Longitudinal Study In The Broader New York City Area, Michelle J. Walters, Joanna Sterling, Crystal Quinn, Christine Ganzer, Ricardo S. Osorio, Randolph D. Andrews, Dawn C. Matthews, Shankar Vallabhajosula, Mony J. De Leon, Richard S. Isaacson, Lisa Mosconi
Publications and Research
Objective To investigate the associations between lifestyle and vascular risk factors and changes in Alzheimer’s disease (AD) biomarkers (beta-amyloid load via 11C-PiB PET, glucose metabolism via 18F-FDG PET and neurodegeneration via structural MRI) and global cognition in middle-aged asymptomatic participants at risk for AD.
Design Prospective, longitudinal.
Setting The study was conducted at New York University Langone/Weill Cornell Medical Centres in New York City.
Participants Seventy cognitively normal participants from multiple community sources, aged 30–60 years with lifestyle measures (diet, intellectual activity and physical activity), vascular risk measures and two imaging biomarkers visits over at least 2 years, …
Investigating The Role Of The Caspase-6 Cleavage Fragment Of Mutant Huntingtin In Huntington Disease Pathogenesis, Jourdan A. Mckinnis
Investigating The Role Of The Caspase-6 Cleavage Fragment Of Mutant Huntingtin In Huntington Disease Pathogenesis, Jourdan A. Mckinnis
Honors Undergraduate Theses
Huntington disease (HD) is a devastating and fatal neurodegenerative disease. At the moment, no disease modifying therapies are available, with only symptomatic treatment offered to alleviate psychiatric and some types of motor deficits. As a result, many people will continue to suffer and die from this disease. Small molecule therapies have failed to provide benefit in HD, necessitating more complex gene therapy approaches and the identification of less traditional therapeutic targets. A previous study demonstrated that preventing cleavage of the huntingtin (HTT) protein, the protein that when mutated causes HD, by caspase 6 (C6) at amino acid 586 prevents the …
The Effect Of Sleep Quantity And Quality On Direct Current Potential In Collegiate American Football Players, Erik D. Korem
The Effect Of Sleep Quantity And Quality On Direct Current Potential In Collegiate American Football Players, Erik D. Korem
Theses and Dissertations--Kinesiology and Health Promotion
Direct current (DC) potential is an objective measure of the functional state of the human organism. It is a sensitive and accurate indicator of short- and long-term adaptations to stress, adaptive capacities, and it is an important marker of athlete readiness. Sleep is posited to be the most efficacious strategy for improving recovery to enhance sport performance, and adequate sleep is considered vital to normal psycho-physiological function. Thus, optimal sleep may enhance the functional state, in turn enhancing an athlete’s adaptability to training stress. However, little is known about the relationship between sleep and DC potential. Therefore, the purpose of …
The Prebiotic Inulin Beneficially Modulates The Gut-Brain Axis By Enhancing Metabolism In An Apoe4 Mouse Model, Jared D. Hoffman
The Prebiotic Inulin Beneficially Modulates The Gut-Brain Axis By Enhancing Metabolism In An Apoe4 Mouse Model, Jared D. Hoffman
Theses and Dissertations--Pharmacology and Nutritional Sciences
Alzheimer’s disease (AD) is the most common form of dementia and a growing disease burden that has seen pharmacological interventions primarily fail. Instead, it has been suggested that preventative measures such as a healthy diet may be the best way in preventing AD. Prebiotics are one such potential measure and are fermented into metabolites by the gut microbiota and acting as gut-brain axis components, beneficially impact the brain. However, the impact of prebiotics in AD prevention is unknown. Here we show that the prebiotic inulin increased multiple gut-brain axis components such as scyllo-inositol and short chain fatty acids in the …
Insulin-Like Growth Factor-1 Overexpression Mediates Hippocampal Remodeling And Plasticity Following Tbi, Erica Latrice Littlejohn
Insulin-Like Growth Factor-1 Overexpression Mediates Hippocampal Remodeling And Plasticity Following Tbi, Erica Latrice Littlejohn
Theses and Dissertations--Physiology
Every year over 2.5 million traumatic brain injuries (TBI) occur and are the leading cause of death and disability among adolescents. There are no approved treatments for TBI. Survivors suffer from persistent cognitive impairment due to posttraumatic tissue damage and disruption of neural networks which significantly detract from their quality of life. Posttraumatic cognitive impairment depends in part on the brain's limited ability to repair or replace damaged cells. Immature neurons in the hippocampus dentate gyrus, a brain region required for learning and memory, are particularly vulnerable to TBI. Insulin-like growth factor-1 (IGF1) is a potential therapeutic for TBI because …
Alterations In Gabaergic Nts Neuron Function In Association With Tle And Sudep, Isabel Diane Derera
Alterations In Gabaergic Nts Neuron Function In Association With Tle And Sudep, Isabel Diane Derera
Theses and Dissertations--Physiology
Epilepsy is a neurological disorder that is characterized by aberrant electrical activity in the brain resulting in at least two unprovoked seizures over a period longer than 24 hours. Approximately 60% of individuals with epilepsy are diagnosed with temporal lobe epilepsy (TLE) and about one third of those individuals do not respond well to anti-seizure medications. This places those individuals at high risk for sudden unexpected death in epilepsy (SUDEP). SUDEP is defined as when an individual with epilepsy, who is otherwise healthy, dies suddenly and unexpectedly for unknown reasons. SUDEP is one of the leading causes of death in …
Optogenetic Examination Of Salt Taste In Mice, Martin Raymond
Optogenetic Examination Of Salt Taste In Mice, Martin Raymond
Master's Theses and Doctoral Dissertations
This thesis describes a series of experiments designed to evaluate the hypothesis that Type I taste receptor cells play a critical role in the detection and transduction of sodium taste via of epithelial sodium channels (ENaCs). Experiment 1 validated the function of a simple and affordable behavioral apparatus (hardware and software) for testing taste preference and taste aversion in mice. Experiment 2 demonstrated a pharmacological method for rapid induction of salt appetite in mice. Experiment 3 showed that optogenetic stimulation of Type I taste receptor cells (TRCs) in transgenic mice could drive consumption of tap water under conditions of salt …
Can A Dog Be Jealous?, Yaoguang Jiang, Annamarie W. Huttunen, Michael L. Platt
Can A Dog Be Jealous?, Yaoguang Jiang, Annamarie W. Huttunen, Michael L. Platt
Animal Sentience
Whether humans alone experience complex emotions like jealousy or envy remains hotly debated, partly because of the difficulty of measuring them without a verbal report. Cook, Berns and colleagues use functional brain imaging to identify in dogs neural responses very similar to those evoked by jealousy in humans. When dogs see their caregiver reward a facsimile dog, their amygdala is activated and the strength of this response predicts aggressive behavior — just as jealousy leads to aggression in humans. The authors conclude that dogs feel something very similar to human jealousy. This novel and creative study tackles one of the …
Jealousy, Competition, Or A Contextual Cue For Reward?, Thomas R. Zentall
Jealousy, Competition, Or A Contextual Cue For Reward?, Thomas R. Zentall
Animal Sentience
Emotions are difficult to assess, even in humans. The attribution of jealousy in an animal like a dog is especially difficult because performance of a particular behavior in the context of another animal receiving a reward may not be easily distinguishable from intra-species competition or simply a response to a contextual cue for the availability of reward. The authors provide distinguishing evidence in the form of fMRI data to show that in the presence of a “fake” dog being fed, there is bilateral activation in the amygdala, an area associated with anxiety, anger, fear, and even jealousy in humans.
[Introduction To] Well-Grounded: The Neurobiology Of Rational Decisions, Kelly Lambert
[Introduction To] Well-Grounded: The Neurobiology Of Rational Decisions, Kelly Lambert
Bookshelf
Contingency calculations—the ability to predict the outcomes of decisions and actions—are critical for survival and success. Our amazing brains continually process past and current experiences to enable us to make the most adaptive choices. But when the brain’s information systems are compromised—by such varying conditions as drug addiction, poverty, mental illness, or even privilege—we can lose the ability to arrive at informed decisions.
In this engaging book, behavioral neuroscientist Kelly Lambert explores a variety of the modern factors that can lead to warped neural processing, or distorted realities she terms “brain bubbles.” Individuals who define success in terms of creature …
N-Terminal And Central Domains Of Apc Function To Regulate Branch Number, Length And Angle In Developing Optic Axonal Arbors In Vivo, Taegun Jin, Gregory Peng, Esther Wu, Shrey Mediratta, Tamira Elul
N-Terminal And Central Domains Of Apc Function To Regulate Branch Number, Length And Angle In Developing Optic Axonal Arbors In Vivo, Taegun Jin, Gregory Peng, Esther Wu, Shrey Mediratta, Tamira Elul
Faculty Publications & Research of the TUC College of Osteopathic Medicine
During formation of neuronal circuits, axons navigate long distances to reach their target locations in the brain. When axons arrive at their target tissues, in many cases, they extend collateral branches and/or terminal arbors that serve to increase the number of synaptic connections they make with target neurons. Here, we investigated how Adenomatous Polyposis Coli (APC) regulates terminal arborization of optic axons in living Xenopus laevis tadpoles. The N-terminal and central domains of APC that regulate the microtubule cytoskeleton and stability of β-catenin in the Wnt pathway, were co-expressed with GFP in individual optic axons, and their terminal arbors were …
The Effects Of Increased Camp Levels On Neuronal Differentiation In Murine Embryonic Stem Cells, And The Creation Of A Crispr-Induced C.1252c>T Point Mutation In The Adcy5 Gene, Elizabeth Zepeda
Cal Poly Humboldt theses and projects
ADCY5-related dyskinesia is a rare movement disorder with early onset in childhood and adolescence. Previous studies linked this disease to various point mutations in the ADCY5 gene. Recent studies show that two of the point mutations cause an increase in cyclic adenosine monophosphate (cAMP) levels. However, it remains unknown how increased levels of cAMP result in the phenotypes associated with this disease. My study examines the effects of increased cAMP levels on neuronal differentiation of mouse embryonic stem cells (mESCs). My experiments demonstrated successful differentiation of mESCs into the dopaminergic neuronal lineage, indicated by the presence of Tuj 1 (a …
Investigating The Relationship Between Sulcogyral Patterns And Structural And Functional Connectivity Metrics In The Orbitofrontal Cortex, Bethany M. Blass
Investigating The Relationship Between Sulcogyral Patterns And Structural And Functional Connectivity Metrics In The Orbitofrontal Cortex, Bethany M. Blass
Honors Theses
Located within the frontal lobe, the human orbitofrontal cortex (OFC) is widely known for its roles in sensory integration, emotion processing, decision-making, and goal-directed behaviors. Atypical structural organization of the OFC may explain atypical social or motivational behaviors displayed by individuals with brain disorders, such as bipolar disorder patients (BP).
The human brain can be imaged using magnetic resonance imaging (MRI) to reveal interesting aspects of the underlying brain architecture. This brain is composed of different tissue types, including gray and white matter, as well as various morphological features, including sulci & gyri. Within the OFC, the sulci can be …
Sentience, The Final Frontier...., Shelley Adamo
Sentience, The Final Frontier...., Shelley Adamo
Animal Sentience
Arguments for fish sentience have difficulty with the philosophical zombie problem. Progress in AI has shown that complex learning, pain behavior, and pain as a motivational drive can be emulated by robots without any internal subjective experience. Therefore, demonstrating these abilities in fish does not necessarily demonstrate that fish are sentient. Further evidence for fish sentience may come from optogenetic studies of neural networks in zebrafish. Such studies may show that zebrafish have neural network patterns similar to those that correlate with sentience in humans. Given the present uncertainty regarding sentience in fish, caution should be applied regarding the precautionary …
Functional Investigation Of A Brainstem Excitatory Connection Relevant To Sensorimotor Gating, Luis Enrique Martinetti
Functional Investigation Of A Brainstem Excitatory Connection Relevant To Sensorimotor Gating, Luis Enrique Martinetti
Open Access Theses & Dissertations
To focus attention, our brain has to "gate" or block irrelevant sensory information that could lead to brain overload. This is done by way of a neuronal pre-attentive mechanism termed sensorimotor gating (SG). Therefore, deficits in the SG mechanism prevent patients from focusing attention. SG deficits have been observed in patients suffering from various neurological disorders, and it is a hallmark of schizophrenia. Previous work has identified key brain areas, such as the pedunculopontine tegmental nucleus (PPTg), that send inputs to the brainstem to regulate SG. However, there is still a knowledge gap concerning what cell types are involved and …
On Crabs And Statistics, Jonathan Birch
On Crabs And Statistics, Jonathan Birch
Animal Sentience
I respond to commentaries by Elwood and Seth & Dienes and to a recent critique by Diggles, discussing the link between avoidance learning and sentience, the relevance of the clash between frequentist and Bayesian statistics, the risks to decapod welfare in aquaculture, and the broader concerns one may have about a “precautionary” approach to protecting invertebrates.