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Articles 91 - 120 of 241
Full-Text Articles in Neurosciences
Neural Mechanisms Of The Rejection-Aggression Link, David S. Chester, Donald R. Lynam, Richard Milich, C. Nathan Dewall
Neural Mechanisms Of The Rejection-Aggression Link, David S. Chester, Donald R. Lynam, Richard Milich, C. Nathan Dewall
Psychology Faculty Publications
Social rejection is a painful event that often increases aggression. However, the neural mechanisms of this rejection–aggression link remain unclear. A potential clue may be that rejected people often recruit the ventrolateral prefrontal cortex’s (VLPFC) self-regulatory processes to manage the pain of rejection. Using functional MRI, we replicated previous links between rejection and activity in the brain’s mentalizing network, social pain network and VLPFC. VLPFC recruitment during rejection was associated with greater activity in the brain’s reward network (i.e. the ventral striatum) when individuals were given an opportunity to retaliate. This retaliation-related striatal response was associated with greater levels of …
Spinal Cord Trauma: An Overview Of Normal Structure And Function, Primary And Secondary Mechanisms Of Injury, And Emerging Treatment Modalities, Daniel Morin
Senior Honors Theses
The structures of the spinal cord and vertebral column are designed to provide flexibility, while still providing ample protection for the spinal cord deep within. While it does offer remarkable protection against most routine trauma, the spinal cord is still vulnerable to high-force etiologies of trauma and may become damaged as a result. These events are referred to as primary injury. Following the initial injury, the body’s own physiological responses cause a cascade of deleterious effects, known as secondary injury. Secondary injury is a major therapeutic target in mitigating the effects of spinal cord injury (SCI), and much research is …
Pituitary Adenylate Cyclase-Activating Polypeptide (Pacap) Signaling In The Prefrontal Cortex Modulates Cued Fear Learning, But Not Spatial Working Memory, In Female Rats, Adam J. Kirry, Matthew R. Herbst, Sarah E. Poirier, Michelle M. Maskeri, Amy C. Rothwell, Robert C. Twining, Marieke R. Gilmartin
Pituitary Adenylate Cyclase-Activating Polypeptide (Pacap) Signaling In The Prefrontal Cortex Modulates Cued Fear Learning, But Not Spatial Working Memory, In Female Rats, Adam J. Kirry, Matthew R. Herbst, Sarah E. Poirier, Michelle M. Maskeri, Amy C. Rothwell, Robert C. Twining, Marieke R. Gilmartin
Biomedical Sciences Faculty Research and Publications
A genetic polymorphism within the gene encoding the pituitary adenylate cyclase- activating polypeptide (PACAP) receptor type I (PAC1R) has recently been associated with hyper-reactivity to threat-related cues in women, but not men, with post-traumatic stress disorder (PTSD). PACAP is a highly conserved peptide, whose role in mediating adaptive physiological stress responses is well established. Far less is understood about the contribution of PACAP signaling in emotional learning and memory, particularly the encoding of fear to discrete cues. Moreover, a neurobiological substrate that may account for the observed link between PAC1R and PTSD in women, but not men, has yet to …
Behavior Coding Strategies: Population Coupling And The Functional Role Of Excitatory/Inhibitory Balance In Primary Motor Cortex, Patrick Aaron Kells
Behavior Coding Strategies: Population Coupling And The Functional Role Of Excitatory/Inhibitory Balance In Primary Motor Cortex, Patrick Aaron Kells
Graduate Theses and Dissertations
The complexities of an organism’s experience of- and interaction with the world are emergent phenomena produced by large populations of neurons within the cerebral cortex and other brain regions. The network dynamics of these populations have been shown to be sometimes synchronous, with many neurons firing together, and sometimes asynchronous, with neurons firing more independently, leading to a decades-old debate within the neuroscience community. This discrepancy comes from viewing the system at two different scales; at the single cell level, the spiking activity of two neurons within cortex tend to be rather independent, but when the average activity of a …
Common Ribs Of Inhibitory Synaptic Dysfunction In The Umbrella Of Neurodevelopmental Disorders, Rachel Ali Rodriguez, Christina Joya, Rochelle M. Hines
Common Ribs Of Inhibitory Synaptic Dysfunction In The Umbrella Of Neurodevelopmental Disorders, Rachel Ali Rodriguez, Christina Joya, Rochelle M. Hines
Psychology Faculty Research
The term neurodevelopmental disorder (NDD) is an umbrella term used to group together a heterogeneous class of disorders characterized by disruption in cognition, emotion, and behavior, early in the developmental timescale. These disorders are heterogeneous, yet they share common behavioral symptomatology as well as overlapping genetic contributors, including proteins involved in the formation, specialization, and function of synaptic connections. Advances may arise from bridging the current knowledge on synapse related factors indicated from both human studies in NDD populations, and in animal models. Mounting evidence has shown a link to inhibitory synapse formation, specialization, and function among Autism, Angelman, Rett …
Thalamocortical Processing Of Temporal Cues In Sounds, Kasey Smith
Thalamocortical Processing Of Temporal Cues In Sounds, Kasey Smith
Honors Scholar Theses
The ability of the brain to extract meaningful information from complex sounds is what allows mammals to understand species-specific communication as well as important environmental cues such as the sound of water or of potential predators or prey. The auditory cortex of humans and other mammals contains multiple cortical regions that unique sensitivities to both spectral and temporal sound cues. This discourse will explore three main factors proposed to determine these distinct processing capabilities in regard to temporal sound cues; the distribution of glutamate transporters in the thalamus, the architecture of afferent pathways between the thalamus and auditory cortex, and …
Bilateral Facial Spasm Following Guillain-Barré Syndrome, Zain Guduru, John Morgan, Kapil Sethi
Bilateral Facial Spasm Following Guillain-Barré Syndrome, Zain Guduru, John Morgan, Kapil Sethi
Neurology Faculty Publications
Background: We report a patient who developed lower facial muscle spasm at rest and bilateral facial synkinesis several months after treatment of Guillain–Barré syndrome (GBS); this finding, to our knowledge, is hitherto unreported.
Phenomenology Shown: Bilateral synkinesis, facial muscles spasm at rest, bilateral postparalytic facial syndrome.
Educational Value: Aberrant regeneration of nerve fibers post GBS, resulting in facial muscles spasm at rest, bilateral synkinesis.
Freedom With Responsibility: A Consensus Strategy For Preventing Injury, Death, And Disability From Firearm Violence, Ronald M. Stewart Md, Facs, Deborah A. Kuhls Md, Facs, Michael F. Rotondo Md, Facs, Eileen M. Bulger Md, Facs
Freedom With Responsibility: A Consensus Strategy For Preventing Injury, Death, And Disability From Firearm Violence, Ronald M. Stewart Md, Facs, Deborah A. Kuhls Md, Facs, Michael F. Rotondo Md, Facs, Eileen M. Bulger Md, Facs
School of Medicine Faculty Research
We are surgeons who have committed our personal and professional lives to reducing needless suffering from injury. As leaders in the American College of Surgeons Committee on Trauma (ACS COT), we have put our hearts and souls into reducing firearm violence, yet we continue to experience the senseless tragedy of mass shooting events and the daily impact of violence on our patients and our communities. Two of us (DK, RMS) personally cared for innocent victims in 2 of the largest mass shootings in modern American history: the Las Vegas, NV and Sutherland Springs, TX tragedies, which, within a little more …
Modified Origins Of Cortical Projections To The Superior Colliculus In The Deaf: Dispersion Of Auditory Efferents., Blake E Butler, Julia K Sunstrum, Stephen G Lomber
Modified Origins Of Cortical Projections To The Superior Colliculus In The Deaf: Dispersion Of Auditory Efferents., Blake E Butler, Julia K Sunstrum, Stephen G Lomber
Brain and Mind Institute Researchers' Publications
Following the loss of a sensory modality, such as deafness or blindness, crossmodal plasticity is commonly identified in regions of the cerebrum that normally process the deprived modality. It has been hypothesized that significant changes in the patterns of cortical afferent and efferent projections may underlie these functional crossmodal changes. However, studies of thalamocortical and corticocortical connections have refuted this hypothesis, instead revealing a profound resilience of cortical afferent projections following deafness and blindness. This report is the first study of cortical outputs following sensory deprivation, characterizing cortical projections to the superior colliculus in mature cats (
Transcranial Direct Current Stimulation (Tdcs) Improves Performance On Spelling And Word Detection Tasks, J. Kevin Wilson
Transcranial Direct Current Stimulation (Tdcs) Improves Performance On Spelling And Word Detection Tasks, J. Kevin Wilson
Psychology ETDs
Deficits in written language involving spelling can have negative effects on a person’s education and occupation. Conventional spelling therapy is a time consuming and cost-prohibitive option, if even available, highlighting the need for improved methods for remediation. One possible way to address this need may be through the use of transcranial direct current stimulation (tDCS). This study sought to examine the effects of tDCS on performance during spelling, word detection, and facial recognition tasks. Active or sham tDCS was randomly assigned to typically functioning adults. The anode electrode was placed over Broca’s area (F7 in the 10/20 EEG system) and …
Targeting The Hsp90/Aha1 Complex For The Treatment Of Tauopathies, Lindsey Brooke Shelton
Targeting The Hsp90/Aha1 Complex For The Treatment Of Tauopathies, Lindsey Brooke Shelton
USF Tampa Graduate Theses and Dissertations
The microtubule associated protein, tau, is involved in regulating microtubule stability and axonal transport. When tau becomes hyperphosphorylated it can disassociate from the microtubules and start to aggregate. These tau aggregates are the hallmarks of many diseases known as tauopathies. The heat shock protein 90 kDa (Hsp90) chaperone network is highly involved in modulating client proteins, including tau. However, during aging and disease the Hsp90 chaperone network becomes highly imbalanced with some Hsp90/co-chaperone complexes increasing, while others are repressed. This imbalance in Hsp90/co-chaperone complexes could result in a worsening of tau pathology in Alzheimer’s disease.
Hsp90 inhibition has been of …
Credibility, Replicability, And Reproducibility In Simulation For Biomedicine And Clinical Applications In Neuroscience., Lealem Mulugeta, Andrew Drach, Ahmet Erdemir, C A Hunt, Marc Horner, Joy P. Ku, Jerry G Myers, Rajanikanth Vadigepalli, William W. Lytton
Credibility, Replicability, And Reproducibility In Simulation For Biomedicine And Clinical Applications In Neuroscience., Lealem Mulugeta, Andrew Drach, Ahmet Erdemir, C A Hunt, Marc Horner, Joy P. Ku, Jerry G Myers, Rajanikanth Vadigepalli, William W. Lytton
Department of Pathology, Anatomy, and Cell Biology Faculty Papers
Modeling and simulation in computational neuroscience is currently a research enterprise to better understand neural systems. It is not yet directly applicable to the problems of patients with brain disease. To be used for clinical applications, there must not only be considerable progress in the field but also a concerted effort to use best practices in order to demonstrate model credibility to regulatory bodies, to clinics and hospitals, to doctors, and to patients. In doing this for neuroscience, we can learn lessons from long-standing practices in other areas of simulation (aircraft, computer chips), from software engineering, and from other biomedical …
Regulation Of Nociceptive Glutamatergic Signaling By Presynaptic Kv3.4 Channels In The Rat Spinal Dorsal Horn., Tanziyah Muqeem, Biswarup Ghosh, Vitor Pinto, Angelo C. Lepore, Manuel Covarrubias
Regulation Of Nociceptive Glutamatergic Signaling By Presynaptic Kv3.4 Channels In The Rat Spinal Dorsal Horn., Tanziyah Muqeem, Biswarup Ghosh, Vitor Pinto, Angelo C. Lepore, Manuel Covarrubias
Farber Institute for Neuroscience Faculty Papers
Presynaptic voltage-gated K+ (Kv) channels in dorsal root ganglion (DRG) neurons are thought to regulate nociceptive synaptic transmission in the spinal dorsal horn. However, the Kv channel subtypes responsible for this critical role have not been identified. The Kv3.4 channel is particularly important because it is robustly expressed in DRG nociceptors, where it regulates action potential (AP) duration. Furthermore, Kv3.4 dysfunction is implicated in the pathophysiology of neuropathic pain in multiple pain models. We hypothesized that, through their ability to modulate AP repolarization, Kv3.4 channels in DRG nociceptors help to regulate nociceptive synaptic transmission. To test this hypothesis, we …
Network Specialization During Adolescence: Hippocampal Effective Connectivity In Boys And Girls, Jeffrey D. Riley, E. Elinor Chen, Jessica Winsell, Elyssia Poggi Davis, Laura M. Glynn, Tallie Z. Baram, Curt A. Sandman, Steven L. Small, Ana Solodkin
Network Specialization During Adolescence: Hippocampal Effective Connectivity In Boys And Girls, Jeffrey D. Riley, E. Elinor Chen, Jessica Winsell, Elyssia Poggi Davis, Laura M. Glynn, Tallie Z. Baram, Curt A. Sandman, Steven L. Small, Ana Solodkin
Psychology Faculty Articles and Research
Adolescence is a complex period of concurrent mental and physical development that facilitates adult functioning at multiple levels. Despite the growing number of neuroimaging studies of cognitive development in adolescence focusing on regional activation patterns, there remains a paucity of information about the functional interactions across these participating regions that are critical for cognitive functioning, including memory. The current study used structural equation modeling (SEM) to determine how interactions among brain regions critical for memory change over the course of adolescence. We obtained functional MRI in 77 individuals aged 8–16 years old, divided into younger (ages 8–10) and older (ages …
Multiple Sclerosis Identification Based On Fractional Fourier Entropy And A Modified Jaya Algorithm, Shui-Hua Wang, Hong Cheng, Preetha Phillips, Yu-Dong Zhang
Multiple Sclerosis Identification Based On Fractional Fourier Entropy And A Modified Jaya Algorithm, Shui-Hua Wang, Hong Cheng, Preetha Phillips, Yu-Dong Zhang
Publications and Research
Aim: Currently, identifying multiple sclerosis (MS) by human experts may come across the problem of “normal-appearing white matter”, which causes a low sensitivity. Methods: In this study, we presented a computer vision based approached to identify MS in an automatic way. This proposed method first extracted the fractional Fourier entropy map from a specified brain image. Afterwards, it sent the features to a multilayer perceptron trained by a proposed improved parameter-free Jaya algorithm. We used cost-sensitivity learning to handle the imbalanced data problem. Results: The 10 × 10-fold cross validation showed our method yielded a sensitivity of 97.40 ± 0.60%, …
Effects On Recovery And Neuroplasticity In Brain Injury Patients, Rebekkah Mclellan
Effects On Recovery And Neuroplasticity In Brain Injury Patients, Rebekkah Mclellan
Student Scholar Showcase
Abstract
According to the Centers for Disease Control, approximately 1.7 million people sustain a Traumatic Brain Injury each year, making the topic of brain plasticity and patient recovery an important area of study. An added element is understanding whether biological, social, and environmental factors can impact the recovery and plasticity of the patient’s brain.The purpose of this literature review was to evaluate if the environment surrounding an individual who has sustained a brain injury affects their recovery and neuroplasticity. The databases used for the scope of this review included LC OneSearch, Medline, EBSCOhost, and Google Scholar. Keywords included brain injury, …
Effects Of The Environment On Recovery And Neuroplasticity In Brain Injury Patients, Rebekkah Mclellan
Effects Of The Environment On Recovery And Neuroplasticity In Brain Injury Patients, Rebekkah Mclellan
Student Scholar Showcase
According to the Centers for Disease Control, approximately 1.7 million people sustain a Traumatic Brain Injury each year, making the topic of brain plasticity and patient recovery an important area of study. An added element is understanding whether biological, social, and environmental factors can impact the recovery and plasticity of the patient’s brain. The purpose of this literature review was to evaluate if the environment surrounding an individual who has sustained a brain injury affects their recovery and neuroplasticity. The databases used for the scope of this review included LC OneSearch, Medline, EBSCOhost, and Google Scholar. Key words included brain …
Seeing The Forest And The Trees: Default Local Processing In Individuals With High Autistic Traits Does Not Come At The Expense Of Global Attention., Ryan A Stevenson, Sol Z Sun, Naomi Hazlett, Jonathan S Cant, Morgan D Barense, Susanne Ferber
Seeing The Forest And The Trees: Default Local Processing In Individuals With High Autistic Traits Does Not Come At The Expense Of Global Attention., Ryan A Stevenson, Sol Z Sun, Naomi Hazlett, Jonathan S Cant, Morgan D Barense, Susanne Ferber
Brain and Mind Institute Researchers' Publications
Atypical sensory perception is one of the most ubiquitous symptoms of autism, including a tendency towards a local-processing bias. We investigated whether local-processing biases were associated with global-processing impairments on a global/local attentional-scope paradigm in conjunction with a composite-face task. Behavioural results were related to individuals' levels of autistic traits, specifically the Attention to Detail subscale of the Autism Quotient, and the Sensory Profile Questionnaire. Individuals showing high rates of Attention to Detail were more susceptible to global attentional-scope manipulations, suggesting that local-processing biases associated with Attention to Detail do not come at the cost of a global-processing deficit, but …
Tdp-43 Gains Function Due To Perturbed Autoregulation In A Tardbp Knock-In Mouse Model Of Als-Ftd, Matthew A. White, Eosu Kim, Amanda Duffy, Robert Adalbert, Benjamin U. Phillips, Owen M. Peters, Jodie Stephenson, Sujeong Yang, Francesca Massenzio, Ziqiang Lin, Simon Andrews, Anne Segonds-Pichon, Jake Metterville, Lisa M. Saksida, Richard Mead, Richard R. Ribchester, Youssef Barhomi, Thomas Serre, Michael P. Coleman, Justin Fallon, Timothy J. Bussey, Robert H. Brown, Jemeen Sreedharan
Tdp-43 Gains Function Due To Perturbed Autoregulation In A Tardbp Knock-In Mouse Model Of Als-Ftd, Matthew A. White, Eosu Kim, Amanda Duffy, Robert Adalbert, Benjamin U. Phillips, Owen M. Peters, Jodie Stephenson, Sujeong Yang, Francesca Massenzio, Ziqiang Lin, Simon Andrews, Anne Segonds-Pichon, Jake Metterville, Lisa M. Saksida, Richard Mead, Richard R. Ribchester, Youssef Barhomi, Thomas Serre, Michael P. Coleman, Justin Fallon, Timothy J. Bussey, Robert H. Brown, Jemeen Sreedharan
Brain and Mind Institute Researchers' Publications
© 2018 The Author(s). Amyotrophic lateral sclerosis-frontotemporal dementia (ALS-FTD) constitutes a devastating disease spectrum characterized by 43-kDa TAR DNA-binding protein (TDP-43) pathology. Understanding how TDP-43 contributes to neurodegeneration will help direct therapeutic efforts. Here we have created a TDP-43 knock-in mouse with a human-equivalent mutation in the endogenous mouse Tardbp gene. TDP-43Q331K mice demonstrate cognitive dysfunction and a paucity of parvalbumin interneurons. Critically, TDP-43 autoregulation is perturbed, leading to a gain of TDP-43 function and altered splicing of Mapt, another pivotal dementia-associated gene. Furthermore, a new approach to stratify transcriptomic data by phenotype in differentially affected mutant mice revealed 471 …
Advances In Understanding The Development Of The Mathematical Brain, Daniel C. Hyde, Daniel Ansari
Advances In Understanding The Development Of The Mathematical Brain, Daniel C. Hyde, Daniel Ansari
Brain and Mind Institute Researchers' Publications
No abstract provided.
Neural Mechanisms Of Transcranial Magnetic Stimulation In The Treatment Of Tinnitus, Andrea S. Lowe
Neural Mechanisms Of Transcranial Magnetic Stimulation In The Treatment Of Tinnitus, Andrea S. Lowe
USF Tampa Graduate Theses and Dissertations
Millions of people suffer from tinnitus, a disorder for which there is currently no effective treatment or cure. My dissertation work provides insight into the neural correlates of this pervasive hearing disorder and examines how a newly emerging therapy, transcranial magnetic stimulation (TMS), affects the central auditory system in the generation of the tinnitus percept. This work has a multifold focus of: i) developing and modeling the function of a miniature magnetic coil that can be used for TMS in rodents, ii) establishing a reliable mouse model of tinnitus that can be used for assessing TMS treatment-induced changes, iii) measuring …
The Role Of Reactive Astrocitose In The Chronological Evolution Of Traumatic Brain Injury, Roxana M. Duncea-Borca, Vladimir Belis, Mihnea Costescu, Relu G. Calota, Reka Kutasi, Cosmin A. Moldovan
The Role Of Reactive Astrocitose In The Chronological Evolution Of Traumatic Brain Injury, Roxana M. Duncea-Borca, Vladimir Belis, Mihnea Costescu, Relu G. Calota, Reka Kutasi, Cosmin A. Moldovan
Journal of Mind and Medical Sciences
Introduction and objectives. This study aims to investigate whether the cerebral modifications of posttraumatic reactive astrocitose can be considered an objective criterion for determining the age of traumatic cranio-cerebral lesions.
Materials and methods. The present study consists of a series of 23 medico-legal cases that underwent autopsy inTeleormanCounty(Romania) Department of Forensic Medicine during 2007–2016, with full immune-histochemical microscopic examination using GFAP staining. The study consists of two groups, a series of 13 cases with cranio-cerebral trauma with different posttraumatic survival periods and 9 cases as a control group.
Results and discussions. We discovered GFAP+ reactive astrocytes even when death occurred …
The Mind-Body Problem; Three Equations And One Solution Represented By Immaterial-Material Data, Ion G. Motofei, David L. Rowland
The Mind-Body Problem; Three Equations And One Solution Represented By Immaterial-Material Data, Ion G. Motofei, David L. Rowland
Journal of Mind and Medical Sciences
Human life occurs within a complex bio-psycho-social milieu, a heterogeneous system that is integrated by multiple bidirectional interrelations existing between the abstract-intangible ideas and physical-chemical support of environment. The mind is thus placed between the abstract ideas/ concepts and neurobiological brain that is further connected to environment. In other words, the mind acts as an interface between the immaterial (abstract/ intangible) data and material (biological) support. The science is unable to conceives and explains an interaction between the immaterial and material domains (to understand nature of the mind), this question generating in literature the mind-body problem. We have published in …
Vascular Neurocognitive Disorders And The Vascular Risk Factors, Carmen V. Albu, Vlad Padureanu, Mihail V. Boldeanu, Ana M. Bumbea, Anca S. Enescu, Dana M. Albulescu, Cristian A. Silosi, Aurelia Enescu
Vascular Neurocognitive Disorders And The Vascular Risk Factors, Carmen V. Albu, Vlad Padureanu, Mihail V. Boldeanu, Ana M. Bumbea, Anca S. Enescu, Dana M. Albulescu, Cristian A. Silosi, Aurelia Enescu
Journal of Mind and Medical Sciences
Dementias are clinical neurodegenerative diseases characterized by permanent and progressive transformation of cognitive functions such as memory, learning capacity, attention, thinking, language, passing judgments, calculation or orientation. Dementias represent a relatively frequent pathology, encountered at about 10% of the population of 65-year olds and 20% of the population of 80-year olds.
This review presents the main etiological forms of dementia, which include Alzheimer form of dementia, vascular dementia, dementia associated with alpha-synucleionopathies, and mixed forms. Regarding vascular dementia, the risk factors are similar to those for an ischemic or hemorrhagic cerebrovascular accident: arterial hypertension, diabetes mellitus, dyslipidemia, smoking, obesity, age, …
Single Session Low Frequency Left Dorsolateral Prefrontal Transcranial Magnetic Stimulation Changes Neurometabolite Relationships In Healthy Humans, Matthew Sherwood, Richard A. Mckinley, Danielle Boeke, Jason G. Parrker, Lindsey K. Mcintire, Justin M. Nelson, Catherine Fletchall, Natasha Alexander, Amanda Mcconnell, Chuck Goodyear, Jeremy T. Nelson, Nathaniel R. Bridges
Single Session Low Frequency Left Dorsolateral Prefrontal Transcranial Magnetic Stimulation Changes Neurometabolite Relationships In Healthy Humans, Matthew Sherwood, Richard A. Mckinley, Danielle Boeke, Jason G. Parrker, Lindsey K. Mcintire, Justin M. Nelson, Catherine Fletchall, Natasha Alexander, Amanda Mcconnell, Chuck Goodyear, Jeremy T. Nelson, Nathaniel R. Bridges
Neuroscience, Cell Biology & Physiology Faculty Publications
Background: Dorsolateral prefrontal cortex (DLPFC) low frequency repetitive transcranial magnetic stimulation (LF-rTMS) has shown promise as a treatment and investigative tool in the medical and research communities. Researchers have made significant progress elucidating DLPFC LF-rTMS effects—primarily in individuals with psychiatric disorders. However, more efforts investigating underlying molecular changes and establishing links to functional and behavioral outcomes in healthy humans are needed. Objective: We aimed to quantify neuromolecular changes and relate these to functional changes following a single session of DLPFC LF-rTMS in healthy participants. Methods: Eleven participants received sham-controlled neuronavigated 1 Hz rTMS to the region most activated by a …
Differentiating Midbrain Structures In Parkinson’S Disease Using Magnetic Resonance Imaging, Erind Alushaj
Differentiating Midbrain Structures In Parkinson’S Disease Using Magnetic Resonance Imaging, Erind Alushaj
Western Research Forum
Background: This study aims to differentiate two midbrain structures: substantia nigra pars compacta (SNc) and ventral tegmental area (VTA) in patients with early-stage Parkinson’s Disease (PD) using magnetic resonance imaging (MRI). The SNc degenerates earlier in PD causing motor symptoms; whereas, VTA degeneration occurs later leading to non-motor symptoms. Conventionally, the SNc and VTA project to the dorsal and ventral striatum respectively. Evidence suggests this model may be overly simplistic since the dorsal striatum has uneven dopamine loss in PD. So, the dorsal striatum was segmented into six functional subregions and only the caudal motor subregion showed early changes …
Clarifying Dopaminergic Projections Of The Ventral Tegmental Area And Substantia Nigra In Humans Using Structural Magnetic Resonance Imaging, Nicholas Handfield-Jones
Clarifying Dopaminergic Projections Of The Ventral Tegmental Area And Substantia Nigra In Humans Using Structural Magnetic Resonance Imaging, Nicholas Handfield-Jones
Western Research Forum
Background
Dopaminergic (DA) pathways from the human midbrain to the striatum mediate movement, decision making, learning, and reward processing. Classically, the scientific consensus has been that there are two main DA pathways: the nigrostriatal and the mesolimbic pathways. In the nigrostriatal pathway, the substantia nigra par compacta (SNc) sends DA to the dorsal striatum (DS), and in the mesolimbic pathway, the ventral tegmental area (VTA) sends DA to the ventral striatum (VS) as well as prefrontal and limbic cortices. Recent findings, however, cast doubt on the accuracy of this model. It seems likely these DA projections are more overlapping and …
Mitochondrial Transplantation Strategies As Potential Therapeutics For Central Nervous System Trauma, Jenna L. Gollihue, Samir P. Patel, Alexander G. Rabchevsky
Mitochondrial Transplantation Strategies As Potential Therapeutics For Central Nervous System Trauma, Jenna L. Gollihue, Samir P. Patel, Alexander G. Rabchevsky
Spinal Cord and Brain Injury Research Center Faculty Publications
Mitochondria are essential cellular organelles critical for generating adenosine triphosphate for cellular homeostasis, as well as various mechanisms that can lead to both necrosis and apoptosis. The field of “mitochondrial medicine” is emerging in which injury/disease states are targeted therapeutically at the level of the mitochondrion, including specific antioxidants, bioenergetic substrate additions, and membrane uncoupling agents. Consequently, novel mitochondrial transplantation strategies represent a potentially multifactorial therapy leading to increased adenosine triphosphate production, decreased oxidative stress, mitochondrial DNA replacement, improved bioenergetics and tissue sparing. Herein, we describe briefly the history of mitochondrial transplantation and the various techniques used for both in …
Variant Intestinal-Cell Kinase In Juvenile Myoclonic Epilepsy, J. N. Bailey, L. De Nijs, D. Bai, T. Suzuki, H. Miyamoto, M. Tanaka, C. Patterson, Y.-C. Lin, M. T. Medina, M. E. Alonso, J. M. Serratosa, R. M. Durón, Viet-Hong Nguyen, J. E. Wight, I. E. Martínez‑Juárez, A. Ochoa, A. Jara-Prado, L. Guilhoto, Y. Molina, E. M. Yacubian, M. López‑Ruiz, Y. Inoue, S. Kaneko, S. Hirose, M. Osawa, H. Oguni, S. Fujimoto, T. M. Grisar, J. M. Stern, K. Yamakawa, B. Lakaye, A. V. Delgado-Escueta
Variant Intestinal-Cell Kinase In Juvenile Myoclonic Epilepsy, J. N. Bailey, L. De Nijs, D. Bai, T. Suzuki, H. Miyamoto, M. Tanaka, C. Patterson, Y.-C. Lin, M. T. Medina, M. E. Alonso, J. M. Serratosa, R. M. Durón, Viet-Hong Nguyen, J. E. Wight, I. E. Martínez‑Juárez, A. Ochoa, A. Jara-Prado, L. Guilhoto, Y. Molina, E. M. Yacubian, M. López‑Ruiz, Y. Inoue, S. Kaneko, S. Hirose, M. Osawa, H. Oguni, S. Fujimoto, T. M. Grisar, J. M. Stern, K. Yamakawa, B. Lakaye, A. V. Delgado-Escueta
Pharmacy Faculty Articles and Research
BACKGROUND
In juvenile myoclonic epilepsy, data are limited on the genetic basis of networks promoting convulsions with diffuse polyspikes on electroencephalography (EEG) and the subtle microscopic brain dysplasia called microdysgenesis.
METHODS
Using Sanger sequencing, we sequenced the exomes of six members of a large family affected with juvenile myoclonic epilepsy and confirmed cosegregation in all 37 family members. We screened an additional 310 patients with this disorder for variants on DNA melting-curve analysis and targeted real-time DNA sequencing of the gene encoding intestinal-cell kinase (ICK). We calculated Bayesian logarithm of the odds (LOD) scores for cosegregating variants, odds …
Endogenous Dopamine And Endocannabinoid Signaling Mediate Cocaine-Induced Reversal Of Ampar Synaptic Potentiation In The Nucleus Accumbens Shell, Anna E. Ingebretson, Matthew C. Hearing, Ethan D. Huffington, Mark J. Thomas
Endogenous Dopamine And Endocannabinoid Signaling Mediate Cocaine-Induced Reversal Of Ampar Synaptic Potentiation In The Nucleus Accumbens Shell, Anna E. Ingebretson, Matthew C. Hearing, Ethan D. Huffington, Mark J. Thomas
Biomedical Sciences Faculty Research and Publications
Repeated exposure to drugs of abuse alters the structure and function of neural circuits mediating reward, generating maladaptive plasticity in circuits critical for motivated behavior. Within meso-corticolimbic dopamine circuitry, repeated exposure to cocaine induces progressive alterations in AMPAR-mediated glutamatergic synaptic transmission. During a 10–14 day period of abstinence from cocaine, AMPAR signaling is potentiated at synapses on nucleus accumbens (NAc) medium spiny neurons (MSNs), promoting a state of heightened synaptic excitability. Re-exposure to cocaine during abstinence, however, rapidly reverses and depotentiates enhanced AMPAR signaling. To understand how re-exposure to cocaine alters AMPAR synaptic transmission, we investigated the roles of dopamine …