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Articles 1 - 30 of 183
Full-Text Articles in Neurosciences
Efficient In Vivo Pharmacological Inhibition Of Δfosb, An Ap-1 Transcription Factor, In The Brain, Sean Mcneme, Anil Kumar, Yun Young Yim, Brandon W Hughes, Corey St Romain, Yi Li, Ashwani Kumar, Qichao Bao, Molly Estill, Shanghua Fan, Nadeen Takatka, Earnest P Chen, Matthew Rivera, Haiying Chen, Alfred J Robison, Mischa Machius, Stephen J Haggarty, Jeannie Chin, Eric J Nestler, Jia Zhou, Gabby Rudenko
Efficient In Vivo Pharmacological Inhibition Of Δfosb, An Ap-1 Transcription Factor, In The Brain, Sean Mcneme, Anil Kumar, Yun Young Yim, Brandon W Hughes, Corey St Romain, Yi Li, Ashwani Kumar, Qichao Bao, Molly Estill, Shanghua Fan, Nadeen Takatka, Earnest P Chen, Matthew Rivera, Haiying Chen, Alfred J Robison, Mischa Machius, Stephen J Haggarty, Jeannie Chin, Eric J Nestler, Jia Zhou, Gabby Rudenko
Faculty, Staff and Students Publications
ΔFOSB, an unusually stable member of the AP-1 family of transcription factors, mediates long-term maladaptations that play a key role in the pathogenesis of drug addiction, cognitive decline, dyskinesia, and several other chronic neurological and psychiatric conditions. We have recently identified that 2-phenoxybenzenesulfonic acid-containing compounds disrupt the binding of ΔFOSB to DNA in vitro in cell-based assays, and one such compound, JPC0661, disrupts ΔFOSB binding to genomic DNA in vivo in the mouse brain with partial efficiency. JPC0661 binds to a groove outside of the DNA-binding cleft of the ΔFOSB/JUND bZIP heterodimer in a cocrystal structure. Here, we generated a …
Leveraging Clinical Sleep Data Across Multiple Pediatric Cohorts For Insights Into Neurodevelopment: The Retrospective Analysis Of Sleep In Pediatric (Rasp) Cohorts Study, Naihua N Gong, Aditya Mahat, Samya Ahmad, Daniel Glaze, Mirjana Maletic-Savatic, Matthew Mcginley, Anne Marie Morse, Alcibiades J Rodriguez, Audrey Thurm, Susan Redline, Kiran Maski, Peter Davis, Shaun Purcell, Ashura Buckley
Leveraging Clinical Sleep Data Across Multiple Pediatric Cohorts For Insights Into Neurodevelopment: The Retrospective Analysis Of Sleep In Pediatric (Rasp) Cohorts Study, Naihua N Gong, Aditya Mahat, Samya Ahmad, Daniel Glaze, Mirjana Maletic-Savatic, Matthew Mcginley, Anne Marie Morse, Alcibiades J Rodriguez, Audrey Thurm, Susan Redline, Kiran Maski, Peter Davis, Shaun Purcell, Ashura Buckley
Faculty, Staff and Students Publications
Sleep disturbances are prominent across neurodevelopmental disorders (NDDs) and may reflect specific abnormalities in brain development and function. Overnight polysomnography (PSG) allows for detailed investigation of sleep architecture, offering a unique window into neurocircuit function. Analysis of existing pediatric PSGs from clinical studies could enhance the availability of sleep studies in pediatric patients with NDDs towards a better understanding of mechanisms underlying abnormal development in NDDs. Here, we introduce and characterize a retrospective collection of 1527 clinical pediatric overnight PSGs across five different sites. We first developed an automated stager trained on independent pediatric sleep data, which yielded better performance …
Noradrenergic Innervation Across Brain Regions Is Altered By Aging And By Disease Progression In A Mouse Model Of Alzheimer’S Disease Neuropathology, Nicole M Hernandez, Manuel Silva-Pérez, Jeannie Chin
Noradrenergic Innervation Across Brain Regions Is Altered By Aging And By Disease Progression In A Mouse Model Of Alzheimer’S Disease Neuropathology, Nicole M Hernandez, Manuel Silva-Pérez, Jeannie Chin
Faculty, Staff and Students Publications
Norepinephrine plays critical roles in modulating arousal and attention, is highly dynamic in awake, behaving individuals, and has anti-inflammatory and neuroprotective actions. Notably, the locus coeruleus (LC), the primary source of norepinephrine in the central nervous system, is among the first brain regions to show pathological alterations in early stages of Alzheimer's disease (AD). LC neuronal loss and associated reductions in norepinephrine in the brain have therefore been postulated to play a key role in AD pathophysiology. LC neurons and their axons have been studied in several mouse models of AD-related neuropathology to investigate their contribution to brain dysfunction in …
Metabolomic Profiling Reveals Brain Lipid Alterations In Pex7-Deficient Models Of Rhizomelic Chondrodysplasia Punctata, Riya Sankhe, Meredith I Williams, Wedad Fallatah, Laura Mackay, Mary Layne Brown, Pranjali Bhagwat, Sarah H Elsea, Nancy Braverman, Michael F Wangler
Metabolomic Profiling Reveals Brain Lipid Alterations In Pex7-Deficient Models Of Rhizomelic Chondrodysplasia Punctata, Riya Sankhe, Meredith I Williams, Wedad Fallatah, Laura Mackay, Mary Layne Brown, Pranjali Bhagwat, Sarah H Elsea, Nancy Braverman, Michael F Wangler
Duncan NRI Faculty and Staff Publications
Rhizomelic chondrodysplasia punctata type 1 (RCDP1) is a peroxisomal disorder characterized by skeletal shortening, intellectual disability, seizures, cataracts, and reduced lifespans. RCDP1 is caused by biallelic loss-of-function variants in PEX7, which encodes a protein required for importing select enzymes into the peroxisome matrix, including those essential for ether lipid synthesis (e.g., plasmalogens) and the branched-chain fatty acid catabolism. Plasmalogen deficiency is a hallmark of RCDP1 and other peroxisomal disorders, including RCDP types 2-5 (RCDP2-5) and Zellweger spectrum disorders (ZSD). Here, we performed comprehensive metabolomic profiling of clinical samples from RCDP patients and Pex7-deficient mouse models. We identified profound …
From Bladder To Brain: How You Know When It’S Time To Go, Anne M J Verstegen, Kara L Marshall
From Bladder To Brain: How You Know When It’S Time To Go, Anne M J Verstegen, Kara L Marshall
Duncan NRI Faculty and Staff Publications
The decision to urinate relies on assessing bladder fullness and context to determine an appropriate time and place to go. Any disruption in this interoceptive process results in frequent and sometimes debilitating consequences in daily life. Recent work has uncovered key pathways and brain regions that contribute to the sense of bladder stretch and the control of urinary reflexes, but many open questions remain. Here, we review the known mechanisms that convey sensory information from the bladder to the brain and back down again, and we highlight the knowledge gaps and opportunities for better understanding this system, which will be …
Cognitive Reserve Predicts Baseline Tau Burden In The Us Pointer Trial Imaging Cohort, Valory N Pavlik, Chris J Weber, Joseph C Masdeu, Laura D Baker, Melissa M Yu, Michele York, Rachel A Whitmer, Susan M Landau, Theresa M Harrison, Tomas M Holland, Laura Lovato
Cognitive Reserve Predicts Baseline Tau Burden In The Us Pointer Trial Imaging Cohort, Valory N Pavlik, Chris J Weber, Joseph C Masdeu, Laura D Baker, Melissa M Yu, Michele York, Rachel A Whitmer, Susan M Landau, Theresa M Harrison, Tomas M Holland, Laura Lovato
Faculty, Staff and Students Publications
Introduction: Higher cognitive reserve (CR) is associated with reduced dementia risk. We hypothesized that higher CR is associated with less baseline Alzheimer's disease (AD) pathology in the U.S. Study to Protect Brain Health Through Lifestyle Intervention to Reduce Risk (U.S. POINTER) cohort.
Methods: A subsample of participants underwent amyloid beta and tau positron emission tomography imaging. Regression analysis was used to model the association between educational attainment (EA) as a CR proxy measure, amyloid positivity, and entorhinal cortex (ERC) and meta-temporal region of interest (meta-ROI) tau standardized uptake value ratio (SUVR).
Results: In 911 participants with complete imaging data, higher …
Microglia Sensing Of Peripheral Signals That Bridge The Brain And Body, Claire E Young, Melanie A Samuel
Microglia Sensing Of Peripheral Signals That Bridge The Brain And Body, Claire E Young, Melanie A Samuel
Faculty, Staff and Students Publications
Microglia are the resident immune cell of the brain, and alterations in microglia signaling have been implicated in many neurodegenerative disorders. While microglia responses to central cues and other brain cell types are well documented, studies are increasingly investigating the impact of peripherally derived signals on microglia function. A diverse array of peripheral cues, including dietary components, hormones, and bacteria metabolites and components from the microbiome cross the blood brain barrier and directly influence microglia state through ligand-receptor interactions. This review highlights the complexity of brain-body interactions from the perspective of microglia function and proposes the idea that microglia could …
Biliverdin Reductase A Is A Major Determinant Of Protective Nrf2 Signaling, Chirag Vasavda, Ruchita Kothari, Navneet Ammal Kaidery, Suwarna Chakraborty, Sunil Jamuna Tripathi, Ryan S Dhindsa, Cristina Ricco, Shruthi Shanmukha, Samaneh Saberi, Julia E Lefler, Priyanka Kothari, Kalyani Chaubey, Adele M Snowman, Michael C Ostrowski, Eugenio Barone, Lakshminarayan M Iyer, L Aravind, Sudarshana M Sharma, Andrew A Pieper, Bobby Thomas, Solomon H Snyder, Bindu D Paul
Biliverdin Reductase A Is A Major Determinant Of Protective Nrf2 Signaling, Chirag Vasavda, Ruchita Kothari, Navneet Ammal Kaidery, Suwarna Chakraborty, Sunil Jamuna Tripathi, Ryan S Dhindsa, Cristina Ricco, Shruthi Shanmukha, Samaneh Saberi, Julia E Lefler, Priyanka Kothari, Kalyani Chaubey, Adele M Snowman, Michael C Ostrowski, Eugenio Barone, Lakshminarayan M Iyer, L Aravind, Sudarshana M Sharma, Andrew A Pieper, Bobby Thomas, Solomon H Snyder, Bindu D Paul
Duncan NRI Faculty and Staff Publications
Biliverdin reductase A (BVRA), the terminal enzyme in heme catabolism, generates the neuroprotective and lipophilic antioxidant bilirubin. Here, we identify a nonenzymatic role for BVRA in redox regulation. Through phylogenetic, genetic, biochemical, and enzymatic assays, we found that BVRA exerts critical nonenzymatic antioxidant activity. Transcriptomic analyses further revealed that BVRA physically and genetically interacts with nuclear factor erythroid-derived factor-like 2 (NRF2), a major transcriptional regulator of cellular redox signaling. ChIP-seq and RNA-seq analyses reveal that BVRA and NRF2 coordinate the expression of antioxidant genes, many of which are typically dysregulated in neurodegenerative conditions such as Alzheimer's disease. Thus, this noncanonical …
Coenzyme Q Headgroup Intermediates Can Ameliorate A Mitochondrial Encephalopathy, Guangbin Shi, Claire Miller, Sota Kuno, Alejandro G Rey Hipolito, Salsabiel El Nagar, Giulietta M Riboldi, Megan Korn, Wyatt C Tran, Zixuan Wang, Lia Ficaro, Tao Lin, Quentin Spillier, Begoña Gamallo-Lana, Drew R Jones, Matija Snuderl, Soomin C Song, Adam C Mar, Alexandra L Joyner, Roy V Sillitoe, Robert S Banh, Michael E Pacold
Coenzyme Q Headgroup Intermediates Can Ameliorate A Mitochondrial Encephalopathy, Guangbin Shi, Claire Miller, Sota Kuno, Alejandro G Rey Hipolito, Salsabiel El Nagar, Giulietta M Riboldi, Megan Korn, Wyatt C Tran, Zixuan Wang, Lia Ficaro, Tao Lin, Quentin Spillier, Begoña Gamallo-Lana, Drew R Jones, Matija Snuderl, Soomin C Song, Adam C Mar, Alexandra L Joyner, Roy V Sillitoe, Robert S Banh, Michael E Pacold
Duncan NRI Faculty and Staff Publications
Decreased brain levels of coenzyme Q10 (CoQ10), an endogenously synthesized lipophilic antioxidant1,2, underpin encephalopathy in primary CoQ10 deficiencies3,4 and are associated with common neurodegenerative diseases and the ageing process5,6. CoQ10 supplementation does not increase CoQ10 pools in the brain or in other tissues. The recent discovery of the mammalian CoQ10 headgroup synthesis pathway, in which 4-hydroxyphenylpyruvate dioxygenase-like protein (HPDL) makes 4-hydroxymandelate (4-HMA) to synthesize the CoQ10 headgroup precursor 4-hydroxybenzoate (4-HB)7, offers an opportunity to pharmacologically restore CoQ10 synthesis and mechanistically treat CoQ10 deficiencies. To test whether 4-HMA …
Risk Of Major Depression In Partners Of People With Alzheimer's Disease: A National Cohort Study, Casey Crump, Jingkai Wei, Barbara G Vickrey, Alexis C Edwards, Paul E Schulz, Weiva Sieh, Jan Sundquist, Kristina Sundquist
Risk Of Major Depression In Partners Of People With Alzheimer's Disease: A National Cohort Study, Casey Crump, Jingkai Wei, Barbara G Vickrey, Alexis C Edwards, Paul E Schulz, Weiva Sieh, Jan Sundquist, Kristina Sundquist
Faculty, Staff and Student Publications
Background: Alzheimer's disease (AD) may cause significant psychosocial distress not only in the patient but also their partner. However, long-term risks of major depression in partners of AD patients are largely unknown.
Methods: A national cohort study was conducted of all 145 289 partners of people diagnosed with all-cause dementia, including 57 113 partners of people diagnosed with AD, in Sweden during 1998-2017, and 1 300 561 population-based controls. Cox regression was used to compute hazard ratios (HRs) for subsequent risk of major depression identified from nationwide outpatient and inpatient diagnoses through 2018, adjusting for sociodemographic factors and prior mental …
Rapid Dissection And Dissociation Of The Mouse Olfactory Epithelium For Single-Nucleus Suspensions, Benjamin D W Belfort, Anthony M Insalaco, Claude C Chew, Johnathan D Jia, Julia Younis, Benjamin R Arenkiel
Rapid Dissection And Dissociation Of The Mouse Olfactory Epithelium For Single-Nucleus Suspensions, Benjamin D W Belfort, Anthony M Insalaco, Claude C Chew, Johnathan D Jia, Julia Younis, Benjamin R Arenkiel
Duncan NRI Faculty and Staff Publications
The murine olfactory epithelium is the initial entry point of the olfactory system, housing various cell types that include olfactory sensory neurons, their regenerating progenitors, and support cells. Olfactory sensory neurons transduce chemical odorants into neural signals, yet the mechanisms underlying how these cells develop and turnover, create synapses with the olfactory bulb, and regulate their odorant receptors remain areas of intense study. Located on the dorsal aspect of the nasal cavity, the olfactory epithelium adheres to intricate bony structures known as turbinates. This anatomy poses unique challenges for its extraction and dissociation, especially in the context of preparing viable …
Ocular Changes As Potential Biomarkers For Early Diagnosis Of Alzheimer's Disease, Purna Chandra Poudel, Shaun M. Frost, Shaun Eslick, Hamid R. Sohrabi, Kevin Taddei, Eugene Hone, Ralph N. Martins
Ocular Changes As Potential Biomarkers For Early Diagnosis Of Alzheimer's Disease, Purna Chandra Poudel, Shaun M. Frost, Shaun Eslick, Hamid R. Sohrabi, Kevin Taddei, Eugene Hone, Ralph N. Martins
Research outputs 2022 to 2026
Alzheimer's disease (AD) is a progressive neurodegenerative disorder and the most common cause of dementia. AD diagnosis often involves a thorough assessment, including clinical evaluation, cognitive testing, medical history examination, genetic testing, and biomarker analysis. Currently, the invasive nature and high costs of biomarker testing, such as cerebrospinal fluid analysis and neuroimaging, have limited the early detection and intervention of the disease. Therefore, researchers have explored cheaper and less invasive options, such as ocular imaging. This review discusses the close relationship between the eye and the central nervous system and ocular changes as a potential non-invasive AD biomarker. Ocular changes …
Sleep Drive, Not Total Sleep Amount, Increases Seizure Risk, Vishnu Anand Cuddapah, Cynthia T Hsu, Fernanda Valle Sirias, Yongjun Li, Hrishit M Shah, Christopher Saul, Samantha Killiany, Camilo Guevara, Joy Shon, Zhifeng Yue, Gabrielle L Gionet, Mary E Putt, Amita Sehgal
Sleep Drive, Not Total Sleep Amount, Increases Seizure Risk, Vishnu Anand Cuddapah, Cynthia T Hsu, Fernanda Valle Sirias, Yongjun Li, Hrishit M Shah, Christopher Saul, Samantha Killiany, Camilo Guevara, Joy Shon, Zhifeng Yue, Gabrielle L Gionet, Mary E Putt, Amita Sehgal
Duncan NRI Faculty and Staff Publications
Sleep loss has been associated with increased seizure risk since antiquity. Using automated video detection of spontaneous seizures in Drosophila epilepsy models, we show that seizures worsen only when sleep restriction raises homeostatic "sleep drive," not simply when total sleep amount falls. This is supported by the paradoxical finding that acute activation of sleep-promoting circuits worsens seizures, because it increases sleep drive without changing sleep amount. Sleep-promoting circuits become hyperactive after sleep loss and are associated with increased whole-brain activity. During sleep restriction, optogenetic inhibition of sleep-promoting circuits to reduce sleep drive protects against seizures. Downregulation of the 5HT1A serotonin …
Measuring And Interpreting Individual Differences In Fetal, Infant, And Toddler Neurodevelopment, Halie A Olson, M Catalina Camacho, Gavkhar Abdurokhmonova, Sahar Ahmad, Emily M Chen, Haerin Chung, Renata Di Lorenzo, Áine T Dineen, Melanie Ganz, Roxane Licandro, Caroline Magnain, Natasha Marrus, Sarah A Mccormick, Tara M Rutter, Lauren Wagner, Kali Woodruff Carr, Lilla Zöllei, Kelly A Vaughn, Kathrine Skak Madsen
Measuring And Interpreting Individual Differences In Fetal, Infant, And Toddler Neurodevelopment, Halie A Olson, M Catalina Camacho, Gavkhar Abdurokhmonova, Sahar Ahmad, Emily M Chen, Haerin Chung, Renata Di Lorenzo, Áine T Dineen, Melanie Ganz, Roxane Licandro, Caroline Magnain, Natasha Marrus, Sarah A Mccormick, Tara M Rutter, Lauren Wagner, Kali Woodruff Carr, Lilla Zöllei, Kelly A Vaughn, Kathrine Skak Madsen
Faculty, Staff and Student Publications
As scientists interested in fetal, infant, and toddler (FIT) neurodevelopment, our research questions often focus on how individual children differ in their neurodevelopment and the predictive value of those individual differences for long-term neural and behavioral outcomes. Measuring and interpreting individual differences in neurodevelopment can present challenges: Is there a "standard" way for the human brain to develop? How do the semantic, practical, or theoretical constraints that we place on studying "development" influence how we measure and interpret individual differences? While it is important to consider these questions across the lifespan, they are particularly relevant for conducting and interpreting research …
Lifespan Reference Curves For Harmonizing Multi-Site Regional Brain White Matter Metrics From Diffusion Mri, Alyssa H Zhu, Talia M Nir, Shayan Javid, Julio E Villalón-Reina, Amanda L Rodrigue, Lachlan T Strike, Greig I De Zubicaray, Katie L Mcmahon, Margaret J Wright, Sarah E Medland, John Blangero, David C Glahn, Peter Kochunov, Douglas E Williamson, Asta K Håberg, Paul M Thompson, Neda Jahanshad
Lifespan Reference Curves For Harmonizing Multi-Site Regional Brain White Matter Metrics From Diffusion Mri, Alyssa H Zhu, Talia M Nir, Shayan Javid, Julio E Villalón-Reina, Amanda L Rodrigue, Lachlan T Strike, Greig I De Zubicaray, Katie L Mcmahon, Margaret J Wright, Sarah E Medland, John Blangero, David C Glahn, Peter Kochunov, Douglas E Williamson, Asta K Håberg, Paul M Thompson, Neda Jahanshad
Faculty, Staff and Student Publications
Age-related white matter (WM) microstructure maturation and decline occur throughout the human lifespan, complementing the process of gray matter development and degeneration. Here, we create normative lifespan reference curves for global and regional WM microstructure by harmonizing diffusion MRI (dMRI)-derived data from ten public datasets (N = 40,898 subjects; age: 3-95 years; 47.6% male). We tested three harmonization methods on regional diffusion tensor imaging (DTI) based fractional anisotropy (FA), a metric of WM microstructure, extracted using the ENIGMA-DTI pipeline. ComBat-GAM harmonization provided multi-study trajectories most consistent with known WM maturation peaks. Lifespan FA reference curves were validated with test-retest data …
Changes Of Eeg Beta Band Power And Functional Connectivity During Spaceflight: A Retrospective Study, Adrián Quivira-Lopesino, María Sevilla-García, Pablo Cuesta, Sandra Pusil, Ricardo Bruña, Patrique Fiedler, Ana Maria Cebolla, Guy Cheron, Michael Funke, Fernando Maestu
Changes Of Eeg Beta Band Power And Functional Connectivity During Spaceflight: A Retrospective Study, Adrián Quivira-Lopesino, María Sevilla-García, Pablo Cuesta, Sandra Pusil, Ricardo Bruña, Patrique Fiedler, Ana Maria Cebolla, Guy Cheron, Michael Funke, Fernando Maestu
Faculty, Staff and Student Publications
Spaceflight exposes astronauts to unique conditions like microgravity, which may affect brain function, though it remains underexplored compared to other physiological systems. Astronauts often report temporary neurological symptoms, such as disorientation, visual disturbances, and motor issues, potentially linked to structural and electrophysiological brain changes. To investigate this, electroencephalography (EEG) is a reliable tool to study brain activity in space, measuring oscillatory activity and functional connectivity (FC). This study analyzed EEG data from five male astronauts during three stages: pre-flight, during low Earth orbit (LEO), and post-flight in a 2-min task-free eyes-closed (EC) condition followed by another 2-min of eyes-open (EO) …
The Illusion Of Brain Health Across A Plastic Canvas, Thomas J. Kelly Jr, Lauren Gaspar, Jaime Ross Phd, Guiseppe Coppotelli Phd
The Illusion Of Brain Health Across A Plastic Canvas, Thomas J. Kelly Jr, Lauren Gaspar, Jaime Ross Phd, Guiseppe Coppotelli Phd
Senior Honors Projects
In recent years, there has been increasing concern for the role that plastic waste, and more specifically micro- and nanoplastics, play in our environment and their potential health risks. Microplastics are particles less than 5 mm in size and nanoplastics are considered to be less than 1000 nm in size. Microplastics can either purposely be produced or can sludge off larger pieces of plastic. Microplastics have not only been detected within soil, air, and water, but have also recently been found to accumulate within the human body. The mosaic artwork that is presented in this project, entitled “Our Cerebral Plastic …
Alpha-Synuclein Phosphomimetic Y39e And S129d Knock-In Mice Show Cytosolic Alpha-Synuclein Localization Without Developing Neurodegeneration Or Motor Deficits, Youngdoo Kim, Bhupesh Vaidya, Joseph Mcinnes, Huda Y Zoghbi
Alpha-Synuclein Phosphomimetic Y39e And S129d Knock-In Mice Show Cytosolic Alpha-Synuclein Localization Without Developing Neurodegeneration Or Motor Deficits, Youngdoo Kim, Bhupesh Vaidya, Joseph Mcinnes, Huda Y Zoghbi
Duncan NRI Faculty and Staff Publications
Parkinson's disease (PD) is a progressive neurodegenerative disorder characterized by motor and nonmotor symptoms. Its pathological hallmarks include the accumulation of misfolded alpha-synuclein (α-Syn) in Lewy bodies and Lewy neurites. Phosphorylation of α-Syn is a prominent feature of these inclusions, but its role in disease pathogenesis remains unclear. To identify the role of α-Syn phosphorylation in synucleinopathy, we generated two Snca knock-in (KI) mouse models carrying phosphomimetic mutations at SncaY39 or SncaS129 (SncaY39E or SncaS129D) which manipulated epitopes phosphorylated in the PD brain. Both SncaY39E and SncaS129D KI mice displayed increased α-Syn phosphorylation, enhanced …
Preoperative Brain Volume Loss Is Associated With Postoperative Delirium In Advanced Heart Failure Patients Supported By Left Ventricular Assist Device, Iván Murrieta-Álvarez, Jacob P Scioscia, José M Benítez-Salazar, Jason Uwaeze, Zicheng Xu, Guangyao Zheng, Shiyi Li, Vladimir Braverman, Carl P Walther, Alexis E Shafii, Camila Hochman-Mendez, Todd K Rosengart, Kenneth K Liao, Nandan K Mondal
Preoperative Brain Volume Loss Is Associated With Postoperative Delirium In Advanced Heart Failure Patients Supported By Left Ventricular Assist Device, Iván Murrieta-Álvarez, Jacob P Scioscia, José M Benítez-Salazar, Jason Uwaeze, Zicheng Xu, Guangyao Zheng, Shiyi Li, Vladimir Braverman, Carl P Walther, Alexis E Shafii, Camila Hochman-Mendez, Todd K Rosengart, Kenneth K Liao, Nandan K Mondal
Faculty, Staff and Students Publications
Delirium is a common neurological complication in patients with advanced heart failure (ADHF) following left ventricular assist device (LVAD) implantation, significantly impacting recovery. This study aimed to analyze non-contrast computed tomography (CT) scans of the brain in ADHF patients undergoing LVAD implantation to determine the association between pre-existing brain atrophy and postoperative delirium. A study involving 166 ADHF patients was conducted from March 2020 to July 2023. Non-contrast CT scans were analyzed using advanced quantitative neuroimaging techniques before implantation. The primary marker assessed was the lateral ventricle fraction (LVF), with secondary markers including cortical gray matter fraction (cGMF), white matter …
Exploration Of Working Memory Retrieval Stage For Mild Cognitive Impairment: Time-Varying Causality Analysis Of Electroencephalogram Based On Dynamic Brain Networks, Yi Jiang, Zhiwei Guo, Xiaobo Zhou, Ning Jiang, Jiayuan He
Exploration Of Working Memory Retrieval Stage For Mild Cognitive Impairment: Time-Varying Causality Analysis Of Electroencephalogram Based On Dynamic Brain Networks, Yi Jiang, Zhiwei Guo, Xiaobo Zhou, Ning Jiang, Jiayuan He
Faculty, Staff and Student Publications
Background: Mild Cognitive Impairment (MCI) is an intermediate stage between the expected cognitive decline of normal aging and Alzheimer's disease (AD). Its management is crucial for it helps intervene and slow the progression of cognitive decline to AD. However, the understanding of the MCI mechanism is not completely clear. As working memory (WM) damage is a common symptom of MCI, this study focused on the core stage of WM, i.e., the memory retrieval stage, to investigate information processing and the causality relationships among brain regions based on electroencephalogram (EEG) signals.
Method: 21 MCI and 20 normal cognitive control (NC) participants …
Neuronal Network Activation Induced By Forniceal Deep Brain Stimulation In Mice, Bin Tang, Zhenyu Wu, Qi Wang, Jianrong Tang
Neuronal Network Activation Induced By Forniceal Deep Brain Stimulation In Mice, Bin Tang, Zhenyu Wu, Qi Wang, Jianrong Tang
Faculty, Staff and Students Publications
Background: The fimbria-fornix is a nerve fiber bundle that connects various structures of the limbic system in the brain and plays a key role in cognition. It has become a major target of deep brain stimulation (DBS) to treat memory impairment in both dementia patients and animal models of neurological diseases. Previously, we have reported the beneficial memory effects of chronic forniceal DBS in mouse models of intellectual disability disorders. In Rett syndrome and CDKL5 deficiency disorder models, DBS strengthens hippocampal synaptic plasticity, reduces dentate inhibitory transmission or increases adult hippocampal neurogenesis that aids memory. However, the underlying neuronal circuitry …
Prenatal Assessment Of Brain Malformations On Neuroimaging: An Expert Panel Review, Ivana Pogledic, Kshitij Mankad, Mariasavina Severino, Tally Lerman-Sagie, Andras Jakab, Efrat Hadi, Anna C Jansen, Nadia Bahi-Buisson, Natalya Di Donato, Renske Oegema, Christian Mitter, Ivan Capo, Matthew T Whitehead, Parthiv Haldipur, Grazia Mancini, Thierry A G M Huisman, Andrea Righini, Bill Dobyns, James A Barkovich, Natasa Jovanov Milosevic, Gregor Kasprian, Maarten Lequin
Prenatal Assessment Of Brain Malformations On Neuroimaging: An Expert Panel Review, Ivana Pogledic, Kshitij Mankad, Mariasavina Severino, Tally Lerman-Sagie, Andras Jakab, Efrat Hadi, Anna C Jansen, Nadia Bahi-Buisson, Natalya Di Donato, Renske Oegema, Christian Mitter, Ivan Capo, Matthew T Whitehead, Parthiv Haldipur, Grazia Mancini, Thierry A G M Huisman, Andrea Righini, Bill Dobyns, James A Barkovich, Natasa Jovanov Milosevic, Gregor Kasprian, Maarten Lequin
Faculty, Staff and Students Publications
Brain malformations represent a heterogeneous group of abnormalities of neural morphogenesis, often associated with aberrations of neuronal connectivity and brain volume. Prenatal detection of brain malformations requires a clear understanding of embryology and developmental morphology through the various stages of gestation. This expert panel review is written with the central aim of providing an easy-to-understand road map to improve prenatal detection and characterization of structural malformations based on the current understanding of normal and aberrant brain development. For every developmental stage, the utility of each available neuroimaging modality, including prenatal multiplanar neuro sonography, anatomical MRI and advanced MRI techniques, as …
Individualized Functional Magnetic Resonance Imaging Neuromodulation Enhances Visuospatial Perception: A Proof-Of-Concept Study, Anthony Allam, Vincent Allam, Sandy Reddy, Eric M Rohren, Sameer A Sheth, Emmanouil Froudarakis, T Dorina Papageorgiou
Individualized Functional Magnetic Resonance Imaging Neuromodulation Enhances Visuospatial Perception: A Proof-Of-Concept Study, Anthony Allam, Vincent Allam, Sandy Reddy, Eric M Rohren, Sameer A Sheth, Emmanouil Froudarakis, T Dorina Papageorgiou
Duncan NRI Faculty and Staff Publications
This proof-of-concept study uses individualized functional magnetic resonance imaging neuromodulation (iNM) to explore the mechanisms that enhance BOLD signals in visuospatial perception (VP) networks that are crucial for navigation. Healthy participants (n = 8) performed a VP up- and down-direction discrimination task at full and subthreshold coherence through peripheral vision, and superimposed direction through visual imagery (VI) at central space under iNM and control conditions. iNM targets individualized anatomical and functional middle- and medial-superior temporal (MST) networks that control VP. We found that iNM engaged selective exteroceptive and interoceptive attention (SEIA) and motor planning (MP) networks. Specifically, iNM increased …
Firearm Access, Carriage And Use In An Ethnically Diverse Sample Of Young Adults In Texas, Usa, Yu Lu, Elizabeth Baumler, Annalyn Saludares Demello, Leila Wood, Hillary Mcguire, Jeff R Temple
Firearm Access, Carriage And Use In An Ethnically Diverse Sample Of Young Adults In Texas, Usa, Yu Lu, Elizabeth Baumler, Annalyn Saludares Demello, Leila Wood, Hillary Mcguire, Jeff R Temple
Faculty, Staff and Student Publications
Background Despite the high rates of firearm ownership and firearm-related injuries and mortalities in Southern US states, understandings on the factors contributing to these are lacking.
Methods Using wave 10 (2021) data from a longitudinal study, we examined firearm-related experiences among 636 ethnically diverse young adults (mean age=26 years; 62% female) in Texas, USA.
Results Just over half of participants had ready access to firearms, with 22.3% having carried a firearm outside of their home, 4.9% having been threatened with a firearm by a romantic partner and 4.4% by a non-romantic partner. More firearm access and carriage were reported in …
White Matter And Latency Of Visual Evoked Potentials During Maturation: A Miniature Pig Model Of Adolescent Development, Peter Kochunov, L Elliot Hong, Ann Summerfelt, Si Gao, P Leon Brown, Matthew Terzi, Ashley Acheson, Marty G Woldorff, Els Fieremans, Ali Abdollahzadeh, Korrapati V Sathyasaikumar, Sarah M Clark, Robert Schwarcz, Paul D Shepard, Greg I Elmer
White Matter And Latency Of Visual Evoked Potentials During Maturation: A Miniature Pig Model Of Adolescent Development, Peter Kochunov, L Elliot Hong, Ann Summerfelt, Si Gao, P Leon Brown, Matthew Terzi, Ashley Acheson, Marty G Woldorff, Els Fieremans, Ali Abdollahzadeh, Korrapati V Sathyasaikumar, Sarah M Clark, Robert Schwarcz, Paul D Shepard, Greg I Elmer
Faculty, Staff and Student Publications
Background: Continuous myelination of cerebral white matter (WM) during adolescence overlaps with the formation of higher cognitive skills and the onset of many neuropsychiatric disorders. We developed a miniature-pig model of adolescent brain development for neuroimaging and neurophysiological assessment during this critical period. Minipigs have gyroencephalic brains with a large cerebral WM compartment and a well-defined adolescence period.
Methods: Eight Sinclair™ minipigs (Sus scrofa domestica) were evaluated four times during weeks 14-28 (40, 28 and 28 days apart) of adolescence using monocular visual stimulation (1 Hz)-evoked potentials and diffusion MRI (dMRI) of WM. The latency for the pre-positive 30 ms …
Alzheimer’S Disease Risk Gene Cd2ap Is A Dose-Sensitive Determinant Of Synaptic Structure And Plasticity, Matea Pavešković, Ruth B De-Paula, Shamsideen A Ojelade, Evelyne K Tantry, Mikhail Y Kochukov, Suyang Bao, Surabi Veeraragavan, Alexandra R Garza, Snigdha Srivastava, Si-Yuan Song, Masashi Fujita, Duc M Duong, David A Bennett, Philip L De Jager, Nicholas T Seyfried, Mary E Dickinson, Jason D Heaney, Benjamin R Arenkiel, Joshua M Shulman
Alzheimer’S Disease Risk Gene Cd2ap Is A Dose-Sensitive Determinant Of Synaptic Structure And Plasticity, Matea Pavešković, Ruth B De-Paula, Shamsideen A Ojelade, Evelyne K Tantry, Mikhail Y Kochukov, Suyang Bao, Surabi Veeraragavan, Alexandra R Garza, Snigdha Srivastava, Si-Yuan Song, Masashi Fujita, Duc M Duong, David A Bennett, Philip L De Jager, Nicholas T Seyfried, Mary E Dickinson, Jason D Heaney, Benjamin R Arenkiel, Joshua M Shulman
Duncan NRI Faculty and Staff Publications
CD2-Associated protein (CD2AP) is a candidate susceptibility gene for Alzheimer's disease, but its role in the mammalian central nervous system remains largely unknown. We show that CD2AP protein is broadly expressed in the adult mouse brain, including within cortical and hippocampal neurons, where it is detected at pre-synaptic terminals. Deletion of Cd2ap altered dendritic branching and spine density, and impaired ubiquitin-proteasome system activity. Moreover, in mice harboring either one or two copies of a germline Cd2ap null allele, we noted increased paired-pulse facilitation at hippocampal Schaffer-collateral synapses, consistent with a haploinsufficient requirement for pre-synaptic release. Whereas conditional Cd2ap knockout in …
Default Mode Network Electrophysiological Dynamics And Causal Role In Creative Thinking, Eleonora Bartoli, Ethan Devara, Huy Q Dang, Rikki Rabinovich, Raissa K Mathura, Adrish Anand, Bailey R Pascuzzi, Joshua Adkinson, Yoed N Kenett, Kelly R Bijanki, Sameer A Sheth, Ben Shofty
Default Mode Network Electrophysiological Dynamics And Causal Role In Creative Thinking, Eleonora Bartoli, Ethan Devara, Huy Q Dang, Rikki Rabinovich, Raissa K Mathura, Adrish Anand, Bailey R Pascuzzi, Joshua Adkinson, Yoed N Kenett, Kelly R Bijanki, Sameer A Sheth, Ben Shofty
Faculty, Staff and Students Publications
The default mode network (DMN) is a widely distributed, intrinsic brain network thought to play a crucial role in internally directed cognition. The present study employs stereo-EEG in 13 human patients, obtaining high resolution neural recordings across multiple canonical DMN regions during two processes that have been associated with creative thinking: spontaneous and divergent thought. We probe these two DMN-associated higher cognitive functions through mind wandering and alternate uses tasks, respectively. Our results reveal DMN recruitment during both tasks, as well as a task-specific dissociation in spatiotemporal response dynamics. When compared to the fronto-parietal network, DMN activity was characterized by …
Does Glial Lipid Dysregulation Alter Sleep In Alzheimer’S And Parkinson’S Disease?, Lindsey D Goodman, Matthew J Moulton, Guang Lin, Hugo J Bellen
Does Glial Lipid Dysregulation Alter Sleep In Alzheimer’S And Parkinson’S Disease?, Lindsey D Goodman, Matthew J Moulton, Guang Lin, Hugo J Bellen
Duncan NRI Faculty and Staff Publications
In this opinion article, we discuss potential connections between sleep disturbances observed in Alzheimer's disease (AD) and Parkinson's disease (PD) and the dysregulation of lipids in the brain. Research using Drosophila has highlighted the role of glial-mediated lipid metabolism in sleep and diurnal rhythms. Relevant to AD, the formation of lipid droplets in glia, which occurs in response to elevated neuronal reactive oxygen species (ROS), is required for sleep. In disease models, this process is disrupted, arguing a connection to sleep dysregulation. Relevant to PD, the degradation of neuronally synthesized glucosylceramides by glia requires glucocerebrosidase (GBA, a PD-associated risk factor) …
A Novel Non-Invasive Murine Model Of Neonatal Hypoxic-Ischemic Encephalopathy Demonstrates Developmental Delay And Motor Deficits With Activation Of Inflammatory Pathways In Monocytes, Elise A Lemanski, Bailey A Collins, Andrew T Ebenezer, Sudha Anilkumar, Victoria A Langdon, Qi Zheng, Shanshan Ding, Karl Royden Franke, Jaclyn M Schwarz, Elizabeth Wright-Jin
A Novel Non-Invasive Murine Model Of Neonatal Hypoxic-Ischemic Encephalopathy Demonstrates Developmental Delay And Motor Deficits With Activation Of Inflammatory Pathways In Monocytes, Elise A Lemanski, Bailey A Collins, Andrew T Ebenezer, Sudha Anilkumar, Victoria A Langdon, Qi Zheng, Shanshan Ding, Karl Royden Franke, Jaclyn M Schwarz, Elizabeth Wright-Jin
Department of Medicine Faculty Papers
Neonatal hypoxic-ischemic encephalopathy (HIE) occurs in 1.5 per 1000 live births, leaving affected children with long-term motor and cognitive deficits. Few animal models of HIE incorporate maternal immune activation (MIA) despite the significant risk MIA poses to HIE incidence and diagnosis. Our non-invasive model of HIE pairs late gestation MIA with postnatal hypoxia. HIE pups exhibited a trend toward smaller overall brain size and delays in the ontogeny of several developmental milestones. In adulthood, HIE animals had reduced strength and gait deficits, but no difference in speed. Surprisingly, HIE animals performed better on the rotarod, an assessment of motor coordination. …
Neuroimaging Of The Effects Of Drug Exposure Or Self-Administration In Rodents: A Systematic Review, Gunner Drossel, Sarah R Heilbronner, Jan Zimmermann, Anna Zilverstand
Neuroimaging Of The Effects Of Drug Exposure Or Self-Administration In Rodents: A Systematic Review, Gunner Drossel, Sarah R Heilbronner, Jan Zimmermann, Anna Zilverstand
Faculty, Staff and Students Publications
A systematic review of functional neuroimaging studies on drug (self-) administration in rodents is lacking. Here, we summarized effects of acute or chronic drug administration of various classes of drugs on brain function and determined consistency with human literature. We performed a systematic literature search and identified 125 studies on in vivo rodent resting-state functional magnetic resonance imaging (n = 84) or positron emission tomography (n = 41) spanning depressants (n = 27), opioids (n = 23), stimulants (n = 72), and cannabis (n = 3). Results primarily showed alterations in the striatum, consistent with the human literature. The anterior …