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Effect Of Posterior Leaf Spring And Carbon Composite Ankle Foot Orthosis On Gait And Functional Mobility Of Stroke Survivors With Hemiplegia: A Randomized Clinical Trial, Zidikheri B. Msechu, Ahmad Zaheer Qureshi, Tim Drew 2023 King Fahad Medical City

Effect Of Posterior Leaf Spring And Carbon Composite Ankle Foot Orthosis On Gait And Functional Mobility Of Stroke Survivors With Hemiplegia: A Randomized Clinical Trial, Zidikheri B. Msechu, Ahmad Zaheer Qureshi, Tim Drew

Internet Journal of Allied Health Sciences and Practice

Purpose: The study was carried out as a randomized clinical trial to assess the effect of posterior leaf spring ankle foot orthosis (PLS-AFO) and carbon composite ankle foot orthosis (C-AFO) on functional mobility, walking speed and satisfaction among stroke survivors with hemiplegia. Methods: Twenty-seven ambulatory stroke survivors with hemiplegia who had completed a rehabilitation program and were already using an ankle foot orthosis (AFO) were included in the study. Subjects were randomly assigned either PLS-AFO or C-AFO and assessment was done with and without their AFOs. Functional mobility, walking speed, and satisfaction were assessed using the Timed Up and …


Global Outcomes For Microsurgical Clipping Of Unruptured Intracranial Aneurysms: A Benchmark Analysis Of 2245 Cases, Richard Drexler, Thomas Sauvigny, Tobias F. Pantel, Franz L. Ricklefs, Joshua S. Catapano, John E. Wanebo, Michael T. Lawton, Aminaa Sanchin, Nils Hecht, Peter Vajkoczy, Kunal Raygor, Daniel Tonetti, Adib Abla, Kareem El Naamani, Stavropoula I. Tjoumakaris, Pascal Jabbour, Brian T. Jankowitz, Mohamed M. Salem, Jan-Karl Burkhardt, Arthur Wagner, Maria Wostrack, Jens Gempt, Bernhard Meyer, Michael Gaub, Justin R. Mascitelli, Philippe Dodier, Gerhard Bavinzski, Karl Roessler, Nico Stroh, Matthias Gmeiner, Andreas Gruber, Eberval G. Figueiredo, Antonio Carlos Samaia da Silva Coelho, Anatoliy V. Bervitskiy, Egor D. Anisimov, Jamil A. Rzaev, Harald Krenzlin, Naureen Keric, Florian Ringel, Dougho Park, Mun-Chul Kim, Eleonora Marcati, Marco Cenzato, Manfred Westphal, Lasse Dührsen 2023 Thomas Jefferson University

Global Outcomes For Microsurgical Clipping Of Unruptured Intracranial Aneurysms: A Benchmark Analysis Of 2245 Cases, Richard Drexler, Thomas Sauvigny, Tobias F. Pantel, Franz L. Ricklefs, Joshua S. Catapano, John E. Wanebo, Michael T. Lawton, Aminaa Sanchin, Nils Hecht, Peter Vajkoczy, Kunal Raygor, Daniel Tonetti, Adib Abla, Kareem El Naamani, Stavropoula I. Tjoumakaris, Pascal Jabbour, Brian T. Jankowitz, Mohamed M. Salem, Jan-Karl Burkhardt, Arthur Wagner, Maria Wostrack, Jens Gempt, Bernhard Meyer, Michael Gaub, Justin R. Mascitelli, Philippe Dodier, Gerhard Bavinzski, Karl Roessler, Nico Stroh, Matthias Gmeiner, Andreas Gruber, Eberval G. Figueiredo, Antonio Carlos Samaia Da Silva Coelho, Anatoliy V. Bervitskiy, Egor D. Anisimov, Jamil A. Rzaev, Harald Krenzlin, Naureen Keric, Florian Ringel, Dougho Park, Mun-Chul Kim, Eleonora Marcati, Marco Cenzato, Manfred Westphal, Lasse Dührsen

Department of Neurosurgery Faculty Papers

BACKGROUND AND OBJECTIVES: Benchmarks represent the best possible outcome and help to improve outcomes for surgical procedures. However, global thresholds mirroring an optimal and reachable outcome for microsurgical clipping of unruptured intracranial aneurysms (UIA) are not available. This study aimed to define standardized outcome benchmarks in patients who underwent clipping of UIA.

METHODS: A total of 2245 microsurgically treated UIA from 15 centers were analyzed. Patients were categorized into low- ("benchmark") and high-risk ("nonbenchmark") patients based on known factors affecting outcome. The benchmark was defined as the 75th percentile of all centers' median scores for a given outcome. Benchmark outcomes …


Kcnq2/3 Gain-Of-Function Variants And Cell Excitability: Differential Effects In Ca1 Versus L2/3 Pyramidal Neurons, Nissi Varghese, Bruno Moscoso, Ana Chavez, Kristen Springer, Erika Ortiz, Heun Soh, Sabato Santaniello, Atul Maheshwari, Anastasios V Tzingounis 2023 The Texas Medical Center Library

Kcnq2/3 Gain-Of-Function Variants And Cell Excitability: Differential Effects In Ca1 Versus L2/3 Pyramidal Neurons, Nissi Varghese, Bruno Moscoso, Ana Chavez, Kristen Springer, Erika Ortiz, Heun Soh, Sabato Santaniello, Atul Maheshwari, Anastasios V Tzingounis

Faculty, Staff and Students Publications

Gain-of-function (GOF) pathogenic variants in the potassium channels KCNQ2 and KCNQ3 lead to hyperexcitability disorders such as epilepsy and autism spectrum disorders. However, the underlying cellular mechanisms of how these variants impair forebrain function are unclear. Here, we show that the R201C variant in KCNQ2 has opposite effects on the excitability of two types of mouse pyramidal neurons of either sex, causing hyperexcitability in layer 2/3 (L2/3) pyramidal neurons and hypoexcitability in CA1 pyramidal neurons. Similarly, the homologous R231C variant in KCNQ3 leads to hyperexcitability in L2/3 pyramidal neurons and hypoexcitability in CA1 pyramidal neurons. However, the effects of KCNQ3 …


Classification Of Missense Variants In The N-Methyl-D-Aspartate Receptor Grin Gene Family As Gain- Or Loss-Of-Function, Scott J Myers, Hongjie Yuan, Riley E Perszyk, Jing Zhang, Sukhan Kim, Kelsey A Nocilla, James P Allen, Jennifer M Bain, Johannes R Lemke, Dennis Lal, Timothy A Benke, Stephen F Traynelis 2023 The Texas Medical Center Library

Classification Of Missense Variants In The N-Methyl-D-Aspartate Receptor Grin Gene Family As Gain- Or Loss-Of-Function, Scott J Myers, Hongjie Yuan, Riley E Perszyk, Jing Zhang, Sukhan Kim, Kelsey A Nocilla, James P Allen, Jennifer M Bain, Johannes R Lemke, Dennis Lal, Timothy A Benke, Stephen F Traynelis

Faculty, Staff and Student Publications

Advances in sequencing technology have generated a large amount of genetic data from patients with neurological conditions. These data have provided diagnosis of many rare diseases, including a number of pathogenic de novo missense variants in GRIN genes encoding N-methyl-d-aspartate receptors (NMDARs). To understand the ramifications for neurons and brain circuits affected by rare patient variants, functional analysis of the variant receptor is necessary in model systems. For NMDARs, this functional analysis needs to assess multiple properties in order to understand how variants could impact receptor function in neurons. One can then use these data to determine whether the …


Hematopoietic Stem And Progenitor Cells Confer Cross-Protective Trained Immunity In Mouse Models, Bailee N Kain, Brandon T Tran, Pamela N Luna, Ruoqiong Cao, Duy T Le, Marcus A Florez, Laure Maneix, Jack D Toups, Daniel E Morales-Mantilla, Scott Koh, Hyojeong Han, Roman Jaksik, Yun Huang, Andre Catic, Chad A Shaw, Katherine Y King 2023 The Texas Medical Center Library

Hematopoietic Stem And Progenitor Cells Confer Cross-Protective Trained Immunity In Mouse Models, Bailee N Kain, Brandon T Tran, Pamela N Luna, Ruoqiong Cao, Duy T Le, Marcus A Florez, Laure Maneix, Jack D Toups, Daniel E Morales-Mantilla, Scott Koh, Hyojeong Han, Roman Jaksik, Yun Huang, Andre Catic, Chad A Shaw, Katherine Y King

Duncan NRI Faculty and Staff Publications

Recent studies suggest that infection reprograms hematopoietic stem and progenitor cells (HSPCs) to enhance innate immune responses upon secondary infectious challenge, a process called “trained immunity.” However, the specificity and cell types responsible for this response remain poorly defined. We established a model of trained immunity in mice in response to Mycobacterium avium infection. scRNA-seq analysis revealed that HSPCs activate interferon gamma-response genes heterogeneously upon primary challenge, while rare cell populations expand. Macrophages derived from trained HSPCs demonstrated enhanced bacterial killing and metabolism, and a single dose of recombinant interferon gamma exposure was sufficient to induce similar training. Mice transplanted …


Structure, Function, And Molecular Landscapes Of The Aging Retina, Jeffrey D Zhu, Sharma Pooja Tarachand, Qudrat Abdulwahab, Melanie A Samuel 2023 The Texas Medical Center Library

Structure, Function, And Molecular Landscapes Of The Aging Retina, Jeffrey D Zhu, Sharma Pooja Tarachand, Qudrat Abdulwahab, Melanie A Samuel

Faculty, Staff and Students Publications

Because the central nervous system is largely nonrenewing, neurons and their synapses must be maintained over the lifetime of an individual to ensure circuit function. Age is a dominant risk factor for neural diseases, and declines in nervous system function are a common feature of aging even in the absence of disease. These alterations extend to the visual system and, in particular, to the retina. The retina is a site of clinically relevant age-related alterations but has also proven to be a uniquely approachable system for discovering principles that govern neural aging because it is well mapped, contains diverse neuron …


Systematic-Narrative Hybrid Literature Review: Crosstalk Between Gastrointestinal Renin–Angiotensin And Dopaminergic Systems In The Regulation Of Intestinal Permeability By Tight Junctions, Ivan Coronado, Samiksha Pachade, Emanuele Trucco, Rania Abdelkhaleq, Juntao Yan, Sergio Salazar-Marioni, Amanda Jagolino-Cole, Mozhdeh Bahrainian, Roomasa Channa, Sunil A Sheth, Luca Giancardo 2023 The Texas Medical Center Library

Systematic-Narrative Hybrid Literature Review: Crosstalk Between Gastrointestinal Renin–Angiotensin And Dopaminergic Systems In The Regulation Of Intestinal Permeability By Tight Junctions, Ivan Coronado, Samiksha Pachade, Emanuele Trucco, Rania Abdelkhaleq, Juntao Yan, Sergio Salazar-Marioni, Amanda Jagolino-Cole, Mozhdeh Bahrainian, Roomasa Channa, Sunil A Sheth, Luca Giancardo

Faculty, Staff and Student Publications

Vessel segmentation in fundus images permits understanding retinal diseases and computing image-based biomarkers. However, manual vessel segmentation is a time-consuming process. Optical coherence tomography angiography (OCT-A) allows direct, non-invasive estimation of retinal vessels. Unfortunately, compared to fundus images, OCT-A cameras are more expensive, less portable, and have a reduced field of view. We present an automated strategy relying on generative adversarial networks to create vascular maps from fundus images without training using manual vessel segmentation maps. Further post-processing used for standard en face OCT-A allows obtaining a vessel segmentation map. We compare our approach to state-of-the-art vessel segmentation algorithms trained …


Decoding Depression Severity From Intracranial Neural Activity, Jiayang Xiao, Nicole R Provenza, Joseph Asfouri, John Myers, Raissa K Mathura, Brian Metzger, Joshua A Adkinson, Anusha B Allawala, Victoria Pirtle, Denise Oswalt, Ben Shofty, Meghan E Robinson, Sanjay J Mathew, Wayne K Goodman, Nader Pouratian, Paul R Schrater, Ankit B Patel, Andreas S Tolias, Kelly R Bijanki, Xaq Pitkow, Sameer A Sheth 2023 The Texas Medical Center Library

Decoding Depression Severity From Intracranial Neural Activity, Jiayang Xiao, Nicole R Provenza, Joseph Asfouri, John Myers, Raissa K Mathura, Brian Metzger, Joshua A Adkinson, Anusha B Allawala, Victoria Pirtle, Denise Oswalt, Ben Shofty, Meghan E Robinson, Sanjay J Mathew, Wayne K Goodman, Nader Pouratian, Paul R Schrater, Ankit B Patel, Andreas S Tolias, Kelly R Bijanki, Xaq Pitkow, Sameer A Sheth

Faculty, Staff and Students Publications

BACKGROUND: Disorders of mood and cognition are prevalent, disabling, and notoriously difficult to treat. Fueling this challenge in treatment is a significant gap in our understanding of their neurophysiological basis.

METHODS: We recorded high-density neural activity from intracranial electrodes implanted in depression-relevant prefrontal cortical regions in 3 human subjects with severe depression. Neural recordings were labeled with depression severity scores across a wide dynamic range using an adaptive assessment that allowed sampling with a temporal frequency greater than that possible with typical rating scales. We modeled these data using regularized regression techniques with region selection to decode depression severity from …


Keynote: Escaping A Code Stroke: Impact Of Escape Room Methodology On Nurses’ Attitudes Towards Acute Stroke Management Guidelines, Diana D. Tai 2023 Mission Hospital

Keynote: Escaping A Code Stroke: Impact Of Escape Room Methodology On Nurses’ Attitudes Towards Acute Stroke Management Guidelines, Diana D. Tai

2023 South Division Nursing Research Conference

No abstract provided.


Clinical Practice Panel: Stand By Me: Using An Enhanced Recovery After Surgery (Eras)Checklist To Guide Early Mobility Of Postoperative Craniotomy Patients On A Progressive Care Unit, Alyssa Mooney, Jerome Codilla, Joanna Arraiza, Sohl Chapman, Nkiru Chukwudi, Ronald Rosales 2023 Providence

Clinical Practice Panel: Stand By Me: Using An Enhanced Recovery After Surgery (Eras)Checklist To Guide Early Mobility Of Postoperative Craniotomy Patients On A Progressive Care Unit, Alyssa Mooney, Jerome Codilla, Joanna Arraiza, Sohl Chapman, Nkiru Chukwudi, Ronald Rosales

2023 South Division Nursing Research Conference

No abstract provided.


Bisphenol-A And Phthalate Metabolism In Children With Neurodevelopmental Disorders, T Peter Stein, Margaret D Schluter, Robert A Steer, Xue Ming 2023 Rowan University

Bisphenol-A And Phthalate Metabolism In Children With Neurodevelopmental Disorders, T Peter Stein, Margaret D Schluter, Robert A Steer, Xue Ming

Rowan-Virtua School of Osteopathic Medicine Departmental Research

BACKGROUND: The etiology of autism spectrum (ASD) and Attention Deficit/Hyperactivity (ADHD) disorders are multifactorial. Epidemiological studies have shown associations with environmental pollutants, such as plasticizers. This study focused on two of these compounds, the Bisphenol-A (BPA) and Diethylhexyl Phthalate (DEHP). The major pathway for BPA and DEHP excretion is via glucuronidation. Glucuronidation makes insoluble substances more water-soluble allowing for their subsequent elimination in urine.

HYPOTHESIS: Detoxification of these two plasticizers is compromised in children with ASD and ADHD. Consequently, their tissues are more exposed to these two plasticizers.

METHODS: We measured the efficiency of glucuronidation in three groups of children, …


Radio-Pathomic Approaches In Pediatric Neurooncology: Opportunities And Challenges, Ariana M. Familiar, Aria Mahtabfar, Anahita Fathi Kazerooni, Mahsa Kiani, Arastoo Vossough, Angela Viaene, Philip B. Storm, Adam C. Resnick, Ali Nabavizadeh 2023 Thomas Jefferson University

Radio-Pathomic Approaches In Pediatric Neurooncology: Opportunities And Challenges, Ariana M. Familiar, Aria Mahtabfar, Anahita Fathi Kazerooni, Mahsa Kiani, Arastoo Vossough, Angela Viaene, Philip B. Storm, Adam C. Resnick, Ali Nabavizadeh

Department of Neurosurgery Faculty Papers

With medical software platforms moving to cloud environments with scalable storage and computing, the translation of predictive artificial intelligence (AI) models to aid in clinical decision-making and facilitate personalized medicine for cancer patients is becoming a reality. Medical imaging, namely radiologic and histologic images, has immense analytical potential in neuro-oncology, and models utilizing integrated radiomic and pathomic data may yield a synergistic effect and provide a new modality for precision medicine. At the same time, the ability to harness multi-modal data is met with challenges in aggregating data across medical departments and institutions, as well as significant complexity in modeling …


The Endosomal Escape Vehicle Platform Enhances Delivery Of Oligonucleotides In Preclinical Models Of Neuromuscular Disorders, Xiang Li, Mahboubeh Kheirabadi, Patrick G Dougherty, Kimberli J Kamer, Xiulong Shen, Nelsa L Estrella, Suresh Peddigari, Anushree Pathak, Sara L Blake, Emmanuelle Sizensky, Carmen Del Genio, Arti B Gaur, Mohanraj Dhanabal, Mahasweta Girgenrath, Natarajan Sethuraman, Ziqing Qian 2023 The Texas Medical Center Library

The Endosomal Escape Vehicle Platform Enhances Delivery Of Oligonucleotides In Preclinical Models Of Neuromuscular Disorders, Xiang Li, Mahboubeh Kheirabadi, Patrick G Dougherty, Kimberli J Kamer, Xiulong Shen, Nelsa L Estrella, Suresh Peddigari, Anushree Pathak, Sara L Blake, Emmanuelle Sizensky, Carmen Del Genio, Arti B Gaur, Mohanraj Dhanabal, Mahasweta Girgenrath, Natarajan Sethuraman, Ziqing Qian

Faculty, Staff and Student Publications

Biological therapeutic agents are highly targeted and potent but limited in their ability to reach intracellular targets. These limitations often necessitate high therapeutic doses and can be associated with less-than-optimal therapeutic activity. One promising solution for therapeutic agent delivery is use of cell-penetrating peptides. Canonical cell-penetrating peptides, however, are limited by low efficiencies of cellular uptake and endosomal escape, minimal proteolytic stability, and toxicity. To overcome these limitations, we designed a family of proprietary cyclic cell-penetrating peptides that form the core of our endosomal escape vehicle technology capable of delivering therapeutic agent-conjugated cargo intracellularly. We demonstrated the therapeutic potential of …


Neurofeedback Within The Scope Of Occupational Therapy With Clients With Substance Use Disorder: A Scoping Review, Aundrea Culliver, Mary Ann Smith, Steven M. Gerardi, Colin Ross 2023 University of St. Augustine for Health Sciences

Neurofeedback Within The Scope Of Occupational Therapy With Clients With Substance Use Disorder: A Scoping Review, Aundrea Culliver, Mary Ann Smith, Steven M. Gerardi, Colin Ross

Summer 2023 Virtual OTD Capstone Symposium

Substance use disorder (SUD) is a problematic pattern of use of a substance or substances, leading to impairments to health, social function, and control of a substance. This negatively affects everyday activities of daily living, and occupation performance that causes a disruption to physical, mental, and social health.

Now, Neurofeedback is a noninvasive biotherapy that uses audio or video feedback to reinforce healthy brain function. This type of intervention usually works by having a patient listen to music and putting electrodes on a patient’s head that pick up negative or positive brain activity or waves. And if the negative activity …


Unveiling The Potential Application Of Intraoperative Brain Smear For Brain Tumor Diagnosis In Low-Middle-Income Countries: A Comprehensive Systematic Review, Muhammad Shakir, Ahmed Altaf, Hawra Hussain, Syed Muhammad Aqeel Abidi, Zoey Petitt, Mahnoor Tariq, Ahmed Gilani, Syed Ather Enam 2023 Aga Khan University

Unveiling The Potential Application Of Intraoperative Brain Smear For Brain Tumor Diagnosis In Low-Middle-Income Countries: A Comprehensive Systematic Review, Muhammad Shakir, Ahmed Altaf, Hawra Hussain, Syed Muhammad Aqeel Abidi, Zoey Petitt, Mahnoor Tariq, Ahmed Gilani, Syed Ather Enam

Section of Neurosurgery

Background: Immediate intraoperative histopathological examination of tumor tissue is indispensable for a neurosurgeon to track surgical resection. A brain smear is a simple, rapid, and cost-effective technique, particularly important in the diagnosis of brain tumors. The study aims to determine the effectiveness of intraoperative brain smear in the diagnosis of brain tumors in low- and middle-income countries (LMICs), while also evaluating its sensitivity, specificity, positive predictive value (PPV), negative predictive value (NPV), and overall accuracy.
Methods: A comprehensive search of the literature was conducted using PubMed, Scopus, and Google Scholar. The retrieved articles were independently screened by two reviewers. The …


Fast Ripples Reflect Increased Excitability That Primes Epileptiform Spikes, Shennan A. Weiss, Itzhak Fried, Jerome Engel, Michael R. Sperling, Robert K. S. Wong, Yuval Nir, Richard J. Staba 2023 Thomas Jefferson University

Fast Ripples Reflect Increased Excitability That Primes Epileptiform Spikes, Shennan A. Weiss, Itzhak Fried, Jerome Engel, Michael R. Sperling, Robert K. S. Wong, Yuval Nir, Richard J. Staba

Department of Neurology Faculty Papers

The neuronal circuit disturbances that drive inter-ictal and ictal epileptiform discharges remain elusive. Using a combination of extra-operative macro-electrode and micro-electrode inter-ictal recordings in six pre-surgical patients during non-rapid eye movement sleep, we found that, exclusively in the seizure onset zone, fast ripples (200–600 Hz), but not ripples (80–200 Hz), frequently occur <300 ms before an inter-ictal intra-cranial EEG spike with a probability exceeding chance (bootstrapping, P < 1e−5). Such fast ripple events are associated with higher spectral power (P < 1e−10) and correlated with more vigorous neuronal firing than solitary fast ripple (generalized linear mixed-effects model, P < 1e−9). During the intra-cranial EEG spike that follows a fast ripple, action potential firing is lower than during an intra-cranial EEG spike alone (generalized linear mixed-effects model, P < 0.05), reflecting an inhibitory restraint of intra-cranial EEG spike initiation. In contrast, ripples do not appear to prime epileptiform spikes. We next investigated the clinical significance of pre-spike fast ripple in a separate cohort of 23 patients implanted with stereo EEG electrodes, who underwent resections. In non-rapid eye movement sleep recordings, sites containing a high proportion of fast ripple preceding intra-cranial EEG spikes correlate with brain areas where seizures begin more than solitary fast ripple (P < 1e−5). Despite this correlation, removal of these sites does not guarantee seizure freedom. These results are consistent with the hypothesis that fast ripple preceding EEG spikes reflect an increase in local excitability that primes EEG spike discharges preferentially in the seizure onset zone and that epileptogenic brain regions are necessary, but not sufficient, for initiating inter-ictal epileptiform discharges.


Argininosuccinate Lyase Deficiency Causes Blood-Brain Barrier Disruption Via Nitric Oxide-Mediated Dysregulation Of Claudin Expression, Jordan Kho, Urszula Polak, Ming-Ming Jiang, John D Odom, Jill V Hunter, Saima M Ali, Lindsay C Burrage, Sandesh Cs Nagamani, Robia G Pautler, Hannah P Thompson, Akihiko Urayama, Zixue Jin, Brendan Lee 2023 The Texas Medical Center Library

Argininosuccinate Lyase Deficiency Causes Blood-Brain Barrier Disruption Via Nitric Oxide-Mediated Dysregulation Of Claudin Expression, Jordan Kho, Urszula Polak, Ming-Ming Jiang, John D Odom, Jill V Hunter, Saima M Ali, Lindsay C Burrage, Sandesh Cs Nagamani, Robia G Pautler, Hannah P Thompson, Akihiko Urayama, Zixue Jin, Brendan Lee

Faculty, Staff and Student Publications

Nitric oxide (NO) is a critical signaling molecule that has been implicated in the pathogenesis of neurocognitive diseases. Both excessive and insufficient NO production have been linked to pathology. Previously, we have shown that argininosuccinate lyase deficiency (ASLD) is a novel model system to investigate cell-autonomous, nitric oxide synthase-dependent NO deficiency. Humans with ASLD are at increased risk for developing hyperammonemia due to a block in ureagenesis. However, natural history studies have shown that individuals with ASLD have multisystem disease including neurocognitive deficits that can be independent of ammonia. Here, using ASLD as a model of NO deficiency, we investigated …


A Critical Role For Camkii In Behavioral Timescale Synaptic Plasticity In Hippocampal Ca1 Pyramidal Neurons, Kuo Xiao, Yiding Li, Raymond A Chitwood, Jeffrey C Magee 2023 The Texas Medical Center Library

A Critical Role For Camkii In Behavioral Timescale Synaptic Plasticity In Hippocampal Ca1 Pyramidal Neurons, Kuo Xiao, Yiding Li, Raymond A Chitwood, Jeffrey C Magee

Faculty, Staff and Students Publications

Behavioral timescale synaptic plasticity (BTSP) is a type of non-Hebbian synaptic plasticity reported to underlie place field formation. Despite this important function, the molecular mechanisms underlying BTSP are poorly understood. The α-calcium-calmodulin-dependent protein kinase II (αCaMKII) is activated by synaptic transmission-mediated calcium influx, and its subsequent phosphorylation is central to synaptic plasticity. Because the activity of αCaMKII is known to outlast the event triggering phosphorylation, we hypothesized that it could mediate the extended timescale of BTSP. To examine the role of αCaMKII in BTSP, we performed whole-cell in vivo and in vitro recordings in CA1 pyramidal neurons from mice engineered …


Astrocytes In Stroke-Induced Neurodegeneration: A Timeline, Eileen Collyer, Elena Blanco-Suarez 2023 Thomas Jefferson University

Astrocytes In Stroke-Induced Neurodegeneration: A Timeline, Eileen Collyer, Elena Blanco-Suarez

Farber Institute for Neuroscience Faculty Papers

Stroke is a condition characterized by sudden deprivation of blood flow to a brain region and defined by different post-injury phases, which involve various molecular and cellular cascades. At an early stage during the acute phase, fast initial cell death occurs, followed by inflammation and scarring. This is followed by a sub-acute or recovery phase when endogenous plasticity mechanisms may promote spontaneous recovery, depending on various factors that are yet to be completely understood. At later time points, stroke leads to greater neurodegeneration compared to healthy controls in both clinical and preclinical studies, this is evident during the chronic phase …


Genetic Susceptibility To Cognitive Decline Following Craniospinal Irradiation For Pediatric Central Nervous System Tumors, Austin L Brown, Pagna Sok, Kimberly P Raghubar, Philip J Lupo, Melissa A Richard, Alanna C Morrison, Jun J Yang, Clinton F Stewart, Mehmet Fatih Okcu, Murali M Chintagumpala, Amar Gajjar, Lisa S Kahalley, Heather Conklin, Michael E Scheurer 2023 The Texas Medical Center Library

Genetic Susceptibility To Cognitive Decline Following Craniospinal Irradiation For Pediatric Central Nervous System Tumors, Austin L Brown, Pagna Sok, Kimberly P Raghubar, Philip J Lupo, Melissa A Richard, Alanna C Morrison, Jun J Yang, Clinton F Stewart, Mehmet Fatih Okcu, Murali M Chintagumpala, Amar Gajjar, Lisa S Kahalley, Heather Conklin, Michael E Scheurer

Faculty, Staff and Student Publications

BACKGROUND: Survivors of pediatric central nervous system (CNS) tumors treated with craniospinal irradiation (CSI) exhibit long-term cognitive difficulties. Goals of this study were to evaluate longitudinal effects of candidate and novel genetic variants on cognitive decline following CSI.

METHODS: Intelligence quotient (IQ), working memory (WM), and processing speed (PS) were longitudinally collected from patients treated with CSI (n = 241). Genotype-by-time interactions were evaluated using mixed-effects linear regression to identify common variants (minor allele frequency > 1%) associated with cognitive performance change. Novel variants associated with cognitive decline (P < 5 × 10-5) in individuals of European ancestry (n = 163) were considered replicated if they demonstrated consistent genotype-by-time interactions (P < .05) in individuals of non-European ancestries (n = 78) and achieved genome-wide statistical significance (P < 5 × 10-8) in a meta-analysis across ancestry groups.

RESULTS: Participants were mostly males (65%) diagnosed with embryonal tumors (98%) at …


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