An Accurate Registration Of The Bigbrain Dataset With The Mni Pd25 And Icbm152 Atlases.,
2019
Western University
An Accurate Registration Of The Bigbrain Dataset With The Mni Pd25 And Icbm152 Atlases., Yiming Xiao, Jonathan C Lau, Taylor Anderson, Jordan Dekraker, D Louis Collins, Terry Peters, Ali R Khan
Brain and Mind Institute Researchers' Publications
Brain atlases that encompass detailed anatomical or physiological features are instrumental in the research and surgical planning of various neurological conditions. Magnetic resonance imaging (MRI) has played important roles in neuro-image analysis while histological data remain crucial as a gold standard to guide and validate such analyses. With cellular-scale resolution, the BigBrain atlas offers 3D histology of a complete human brain, and is highly valuable to the research and clinical community. To bridge the insights at macro- and micro-levels, accurate mapping of BigBrain and established MRI brain atlases is necessary, but the existing registration is unsatisfactory. The described dataset includes …
Sex, Drugs, And Seizures: Subarachnoid Hemorrhage In A Young Patient.,
2019
OhioHealth
Sex, Drugs, And Seizures: Subarachnoid Hemorrhage In A Young Patient., Alex Davis, Eric Cortez, Andrew Kalnow
Neuroscience Articles
A 17-year-old male patient presented to the emergency department (ED) with seizures after sexual intercourse. The patient was found to have an intracerebral hemorrhage (ICH) likely secondary to sexual intercourse and concomitant amphetamine use, an extremely rare finding in this patient population. In this case review, we will discuss the presentation, management, and disposition of subarachnoid hemorrhage (SAH), a well-known emergency diagnosis within the ED, while highlighting a case that is clearly uncommon. In addition, we discuss the etiology of ICH in the setting of intercourse and amphetamine use with the ultimate goal of understanding the interdisciplinary care of a …
Visualization And Quantification Of Post-Stroke Neural Connectivity And Neuroinflammation Using Serial Two-Photon Tomography In The Whole Mouse Brain,
2019
University of Texas Southwestern Medical Center
Visualization And Quantification Of Post-Stroke Neural Connectivity And Neuroinflammation Using Serial Two-Photon Tomography In The Whole Mouse Brain, Katherine Poinsatte, Dene Betz, Vanessa O. Torres, Apoorva D. Ajay, Shazia Mirza, Uma M. Selvaraj, Erik J. Plautz, Xiangmei Kong, Sankalp Gokhale, Julian P. Meeks, Denise M. O. Ramirez, Mark P. Goldberg, Ann M. Stowe
Neurology Faculty Publications
Whole-brain volumetric microscopy techniques such as serial two-photon tomography (STPT) can provide detailed information on the roles of neuroinflammation and neuroplasticity throughout the whole brain post-stroke. STPT automatically generates high-resolution images of coronal sections of the entire mouse brain that can be readily visualized in three dimensions. We developed a pipeline for whole brain image analysis that includes supervised machine learning (pixel-wise random forest models via the “ilastik” software package) followed by registration to a standardized 3-D atlas of the adult mouse brain (Common Coordinate Framework v3.0; Allen Institute for Brain Science). These procedures allow the detection of cellular fluorescent …
A Framework For Evaluating Correspondence Between Brain Images Using Anatomical Fiducials.,
2019
Western University
A Framework For Evaluating Correspondence Between Brain Images Using Anatomical Fiducials., Jonathan C Lau, Andrew G Parrent, John Demarco, Geetika Gupta, Jason Kai, Olivia W Stanley, Tristan Kuehn, Patrick J Park, Kayla Ferko, Ali R Khan, Terry M Peters
Brain and Mind Institute Researchers' Publications
Accurate spatial correspondence between template and subject images is a crucial step in neuroimaging studies and clinical applications like stereotactic neurosurgery. In the absence of a robust quantitative approach, we sought to propose and validate a set of point landmarks, anatomical fiducials (AFIDs), that could be quickly, accurately, and reliably placed on magnetic resonance images of the human brain. Using several publicly available brain templates and individual participant datasets, novice users could be trained to place a set of 32 AFIDs with millimetric accuracy. Furthermore, the utility of the AFIDs protocol is demonstrated for evaluating subject-to-template and template-to-template registration. Specifically, …
Big Spine Data Put To Good Use: The Nhs Sets An Example.,
2019
Swedish Neuroscience Institute
Big Spine Data Put To Good Use: The Nhs Sets An Example., Jens R Chapman, Jeffrey C Wang, Karsten Wiechert
Articles, Abstracts, and Reports
No abstract provided.
Voltage-Gated Potassium Channels Are Critical For Infrared Inhibition Of Action Potentials: An Experimental Study,
2019
Case Western Reserve University
Voltage-Gated Potassium Channels Are Critical For Infrared Inhibition Of Action Potentials: An Experimental Study, Junqi Zhuo, Matthew T. Mcpheeters, Michael W. Jenkins, Hillel J. Chiel
Faculty Scholarship
Thermal block of unmyelinated axons may serve as a modality for control, suggesting a means for providing therapies for pain. Computational modeling predicted that potassium channels are necessary for mediating thermal block of propagating compound action potentials (CAPs) with infrared (IR) light. Our study tests that hypothesis. Results suggest that potassium channel blockers disrupt the ability of IR to block propagating CAPs in Aplysia californica nerves, whereas sodium channel blockers appear to have no significant effect. These observations validate the modeling results and suggest potential applications of thermal block to many other unmyelinated axons.
Sciatic Nerve Cut And Repair Using Fibrin Glue In Adult Mice,
2019
Wright State University
Sciatic Nerve Cut And Repair Using Fibrin Glue In Adult Mice, Erica T. Akhter, Travis M. Rotterman, Arthur W. English, Francisco J. Alvarez
Neuroscience, Cell Biology & Physiology Faculty Publications
- Peripheral nerve injury (PNI) is an excellent model for studying neural responses to injury and elucidating the mechanisms that can facilitate axon regeneration. As such, several animal models have been employed to study regenerative mechanisms after PNI, including Aplysia, zebrafish, rabbits, cats and rodents. This protocol describes how to perform a sciatic nerve injury and repair in mice, one of the most frequently used models to study mechanisms that facilitate recovery after PNI, and that takes advantage of the availability of many genetic models. In this protocol, we describe a method for using fibrin glue to secure the proximal …
Autophagy Modulation As A Treatment Of Amyloid Diseases,
2019
Edith Cowan University
Autophagy Modulation As A Treatment Of Amyloid Diseases, Zoe Mputhia, Eugene Hone, Timir Tripathi, Tim Sargeant, Ralph Martins, Prashant Bharadwaj
Research outputs 2014 to 2021
Amyloids are fibrous proteins aggregated into toxic forms that are implicated in several chronic disorders. More than 30 diseases show deposition of fibrous amyloid proteins associated with cell loss and degeneration in the affected tissues. Evidence demonstrates that amyloid diseases result from protein aggregation or impaired amyloid clearance, but the connection between amyloid accumulation and tissue degeneration is not clear. Common examples of amyloid diseases are Alzheimer's disease (AD), Parkinson's disease (PD) and tauopathies, which are the most common forms of neurodegenerative diseases, as well as polyglutamine disorders and certain peripheral metabolic diseases. In these diseases, increased accumulation of toxic …
Map7 Prevents Axonal Branch Retraction By Creating A Stable Microtubule Boundary To Rescue Polymerization.,
2019
Thomas Jefferson University
Map7 Prevents Axonal Branch Retraction By Creating A Stable Microtubule Boundary To Rescue Polymerization., Stephen R. Tymanskyj, Le Ma
Farber Institute for Neuroscience Faculty Papers
Complex neural circuits are built from axonal branches that allow each neuron to connect with multiple targets. During development, maturation of nascent branches depends on stabilization of newly assembled or transported microtubules, which are thought to be regulated by microtubule-associated proteins (MAPs). However, because many known MAPs inhibit branch formation, it is not clear which MAP is responsible for regulating microtubule stability during branch development. Here, we show that MAP7, a less-well understood MAP that is localized to branch junctions, provides a key molecular mechanism to regulate microtubule stability during branch formation. In developing rodent sensory neurons of mixed sex, …
Stimulus-Locked Responses On Human Upper Limb Muscles And Corrective Reaches Are Preferentially Evoked By Low Spatial Frequencies,
2019
The University of Western Ontario
Stimulus-Locked Responses On Human Upper Limb Muscles And Corrective Reaches Are Preferentially Evoked By Low Spatial Frequencies, Rebecca A. Kozak, Philipp Kreyenmeier, Chao Gu, Kevin Johnston, Brian D. Corneil
Brain and Mind Institute Researchers' Publications
© 2019 Kozak et al. In situations requiring immediate action, humans can generate visually-guided responses at remarkably short latencies. Here, to better understand the visual attributes that best evoke such rapid responses, we recorded upper limb muscle activity while participants performed visually-guided reaches towards Gabor patches composed of differing spatial frequencies (SFs). We studied reaches initiated from a stable posture (experiment 1, a static condition), or during on-line reach corrections to an abruptly displaced target (experiment 2, a dynamic condition). In both experiments, we detail the latency and prevalence of stimulus-locked responses (SLRs), which are brief bursts of EMG activity …
Thirty-Five Years Of Computerized Cognitive Assessment Of Aging — Where Are We Now?,
2019
The University of Western Ontario
Thirty-Five Years Of Computerized Cognitive Assessment Of Aging — Where Are We Now?, Avital Sternin, Alistair Burns, Adrian M. Owen
Brain and Mind Institute Researchers' Publications
Over the past 35 years, the proliferation of technology and the advent of the internet have resulted in many reliable and easy to administer batteries for assessing cognitive function. These approaches have great potential for affecting how the health care system monitors and screens for cognitive changes in the aging population. Here, we review these new technologies with a specific emphasis on what they offer over and above traditional ‘paper-and-pencil’ approaches to assessing cognitive function. Key advantages include fully automated administration and scoring, the interpretation of individual scores within the context of thousands of normative data points, the inclusion of …
Utilization, Safety, And Tolerability Of Ocrelizumab: Year 2 Data From The Providence Ocrelizumab Registry,
2019
Providence St. Joseph Health
Utilization, Safety, And Tolerability Of Ocrelizumab: Year 2 Data From The Providence Ocrelizumab Registry, Kyle E Smoot
Articles, Abstracts, and Reports
Background: Ocrelizumab (OCR), a humanized anti-CD20 monoclonal antibody, was approved in the US in 2017 for the treatment of relapsing MS (RMS) and primary progressive MS (PPMS). The Providence OCR Registry was established to monitor long-term treatment and safety outcomes.
Objective: To evaluate OCR treatment outcomes using real-world data from a diverse, community-based MS population.
Methods: Adult MS patients who have been prescribed OCR were eligible. Chart reviews at OCR start date and then every 6 months were done by a trained RN. Expanded Disability Status Scale (EDSS) scores were determined by the treating provider on the start date and …
Electroencephalographic Asymmetry, Emotion Regulation, And Their Relationships With Depression Risk,
2019
CUNY Graduate Center
Electroencephalographic Asymmetry, Emotion Regulation, And Their Relationships With Depression Risk, Aliza Jacob
Dissertations, Theses, and Capstone Projects
Background: Research investigating patterns of electroencephalographic (EEG) brain asymmetry aids our understanding of neural systems involved in the processing of emotion, motivation, and psychopathology. Withdrawal-motivated negative emotions characteristic of depression are associated with relative right prefrontal cortex (PFC) activity, whereas approach- motivated positive emotions are associated with relative left PFC activity. Styles of emotion regulation (ER), or modulation of the intensity and duration of emotional responses, are also associated with presence (e.g., suppression, or maladaptive ER) versus absence (e.g., cognitive reappraisal, or adaptive ER) of depression vulnerability. Most PFC asymmetry studies of emotion, depression, and/or ER rely upon EEG recorded …
Long-Distance Axon Regeneration Promotes Recovery Of Diaphragmatic Respiratory Function After Spinal Cord Injury.,
2019
Thomas Jefferson University
Long-Distance Axon Regeneration Promotes Recovery Of Diaphragmatic Respiratory Function After Spinal Cord Injury., Mark W. Urban, Biswarup Ghosh, Cole G. Block, Laura R. Strojny, Brittany A. Charsar, Miguel Goulão, Sreeya S. Komaravolu, George M. Smith, Megan C. Wright, Shuxin Li, Angelo C. Lepore
Farber Institute for Neuroscience Faculty Papers
Compromise in inspiratory breathing following cervical spinal cord injury (SCI) is caused by damage to descending bulbospinal axons originating in the rostral ventral respiratory group (rVRG) and consequent denervation and silencing of phrenic motor neurons (PhMNs) that directly control diaphragm activation. In a rat model of high-cervical hemisection SCI, we performed systemic administration of an antagonist peptide directed against phosphatase and tensin homolog (PTEN), a central inhibitor of neuron-intrinsic axon growth potential. PTEN antagonist peptide (PAP4) robustly restored diaphragm function, as determined with electromyography (EMG) recordings in living SCI animals. PAP4 promoted substantial, long-distance regeneration of injured rVRG axons through …
Inference Of Language Functional Network In Healthy, Cancerous And Bilingual Brains By Fmri And Network Modeling,
2019
CUNY Graduate Center
Inference Of Language Functional Network In Healthy, Cancerous And Bilingual Brains By Fmri And Network Modeling, Qiongge Li
Dissertations, Theses, and Capstone Projects
We study the underlying mechanism by which language processing occurs in the human brain using inference methods on functional magnetic resonance imaging data. The data analyzed stems from several cohorts of subjects; a monolingual group, a bilingual group, a healthy control group and one diseased case. We applied a complex statistical inference pipeline to determine the network structure of brain components involved with language. This healthy network reveals a fully connected triangular relationship between the pre-Supplementary Motor Area (pre-SMA), the Broca's Area (BA), and the ventral Pre-Motor Area (PreMA) in the left hemisphere. This "triangle'' shows consistently in all the …
Assessing General Cognitive And Adaptive Abilities In Adults With Down Syndrome: A Systematic Review,
2019
Kings College London, UK
Assessing General Cognitive And Adaptive Abilities In Adults With Down Syndrome: A Systematic Review, Sarah Hamburg, Bryony Lowe, Carla Marie Startin, Concepcion Padilla, Antonia Coppus, Wayne Silverman, Juan Fortea, Shahid Zaman, Elizabeth Head, Benjamin L. Handen, Ira Lott, Weihong Song, André Strydom
Sanders-Brown Center on Aging Faculty Publications
BACKGROUND: Measures of general cognitive and adaptive ability in adults with Down syndrome (DS) used by previous studies vary substantially. This review summarises the different ability measures used previously, focusing on tests of intelligence quotient (IQ) and adaptive behaviour (AB), and where possible examines floor effects and differences between DS subpopulations. We aimed to use information regarding existing measures to provide recommendations for individual researchers and the DS research community.
RESULTS: Nineteen studies reporting IQ test data met inclusion for this review, with 17 different IQ tests used. Twelve of these IQ tests were used in only one study while …
Binding During Sequence Learning Does Not Alter Cortical Representations Of Individual Actions,
2019
University of Pittsburgh
Binding During Sequence Learning Does Not Alter Cortical Representations Of Individual Actions, Patrick Beukema, Jörn Diedrichsen, Timothy D. Verstynen
Brain and Mind Institute Researchers' Publications
Copyright © 2019 the authors. As a sequence of movements is learned, serially ordered actions get bound together into sets to reduce computational complexity during planning and execution. Here, we investigated how actions become naturally bound over the course of learning and how this learning affects cortical representations of individual actions. Across 5 weeks of practice, neurologically healthy human subjects learned either a complex 32-item sequence of finger movements (trained group, n = 9; 3 female) or randomly ordered actions (control group, n = 9; 3 female). Over the course of practice, responses during sequence production in the trained group …
Experimental Neuroscience Neu 410,
2019
University of Rhode Island
Experimental Neuroscience Neu 410, Joanna Burkhardt
Library Impact Statements
No abstract provided.
Neuroscience Research Seminar Neu 110,
2019
University of Rhode Island
Neuroscience Research Seminar Neu 110, Joanna Burkhardt
Library Impact Statements
No abstract provided.
Neuroethics And Diversity Neu 210,
2019
University of Rhode Island
Neuroethics And Diversity Neu 210, Joanna Burkhardt
Library Impact Statements
No abstract provided.
