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  • Complexin Stabilizes Newly Primed Synaptic Vesicles and Prevents Their Premature Fusion at the Mouse Calyx of Held Synapse | Journal of Neuroscience
    Complexins (Cplxs) are small synaptic proteins that cooperate with SNARE-complexes in the control of synaptic vesicle (SV) fusion. Studies involving genetic mutation, knock-down, or knock-out indicated two key functions of Cplx that are not mutually exclusive but cannot easily be reconciled, one in facilitating SV fusion, and one in “clamping” SVs to prevent premature fusion. Most studies on the role of Cplxs in mammalian synapse function have relied on cultured neurons, heterologous expression systems, or membrane fusion assays in vitro , whereas little is known about the function of Cplxs in native synapses. We therefore studied consequences of genetic ablation of Cplx1 in the mouse calyx of Held synapse, and discovered a developmentally exacerbating phenotype of reduced spontaneous and evoked transmission but excessive asynchronous release after stimulation, compatible with combined facilitating and clamping functions of Cplx1. Because action potential waveforms, Ca2+ influx, readily releasable SV pool ...
    May 27, 2015 Shuwen Chang
  • History of Neuroscience
    Follow the story of the field's evolution to present day. The work of neuroscience pioneers has produced vital knowledge about the brain and nervous system that is advancing today's science and improving health outcomes.
  • Synaptic Depotentiation and mGluR5 Activity in the Nucleus Accumbens Drive Cocaine-Primed Reinstatement of Place Preference | Journal of Neuroscience
    Understanding the neurobiological processes that incite drug craving and drive relapse has the potential to help target efforts to treat addiction. The NAc serves as a critical substrate for reward and motivated behavior, in part due to alterations in excitatory synaptic strength within cortical-accumbens pathways. The present studies investigated a causal link between cocaine-induced reinstatement of conditioned place preference and rapid reductions of cocaine-dependent increases in NAc shell synaptic strength in male mice. Cocaine-conditioned place preference behavior and ex vivo whole-cell electrophysiology showed that cocaine-primed reinstatement and synaptic depotentiation were disrupted by inhibiting AMPAR internalization via intra-NAc shell infusion of a Tat-GluA23Y peptide. Furthermore, reinstatement was driven by an mGluR5-dependent reduction in AMPAR signaling. Intra-NAc shell infusion of the mGluR5 antagonist MTEP blocked cocaine-primed reinstatement and corresponding depotentiation, whereas inf...
    Jun 12, 2019 Michael A. Benneyworth
  • Abstract
    High rates of temporal discounting among individuals with heightened dissociative symptomatology
    Dissociative disorders are characterized by an involuntary escaping of reality, whereby the individual feels detached or disconnected from their thoughts, identity, consciousness, or memory. The prevalence of these dissociative states is quite common (a...
    Oct 23, 2019
  • Low-Cost Platform for Multianimal Chronic Local Field Potential Video Monitoring with Graphical User Interface (GUI) for Seizure Detection and Behavioral Scoring | eNeuro
    Experiments employing chronic monitoring of neurophysiological signals and video are commonly used in studies of epilepsy to characterize behavioral correlates of seizures. Our objective was to design a low-cost platform that enables chronic monitoring of several animals simultaneously, synchronizes bilateral local field potential (LFP) and video streams in real time, and parses recorded data into manageable file sizes. We present a hardware solution leveraging Intan and Open Ephys acquisition systems and a software solution implemented in Bonsai. The platform was tested in 48-h continuous recordings simultaneously from multiple mice (male and female) with chronic epilepsy. To enable seizure detection and scoring, we developed a graphical user interface (GUI) that reads the data produced by our workflow and allows a user with no coding expertise to analyze events. Our Bonsai workflow was designed to maximize flexibility for a wide variety of experimental applications, and our use of the Open Ephys acquisit...
    Sep 1, 2022 Gergely Tarcsay
  • The DMC-Behavior Platform: An Open-Source Framework for Auditory-Guided Perceptual Decision-Making in Head-Fixed Mice | eNeuro
    Perceptual decision-making describes the process of selecting an appropriate action based on the sensory information present in the immediate environment and is hence an omnipresent factor in the life of animals. In preclinical research, a widespread approach to study the neuronal correlates of perceptual decision-making is to record (and manipulate) neuronal activity in head-fixed mice performing behavioral tasks. In contrast to the technologies used to record/manipulate neuronal activity, standardization of the behavioral training of mice is generally neglected, a circumstance that is particularly true for behavioral tasks involving auditory stimuli. Here, we present the DMC-Behavior Platform, an open-source, cost-efficient framework for training head-fixed mice in perceptual decision-making tasks involving auditory stimuli. Combining the DMC-Behavior Platform with strategies to record and manipulate neuronal activity offers many opportunities to test hypotheses on the neuronal underpinnings of cognitive...
    Apr 1, 2025 Felix Jung
  • Abstract
    Quantifying wide-field maps of the human corneal subbasal nerve plexus
    A significant proportion of corneal sensory nerves lie beneath the anterior corneal epithelium within the subbasal nerve plexus (SBP). The morphology of these nerves is altered by keratopathy and refractive surgery. Corneal Confocal Microscopy (CCM) is ...
    Nov 13, 2017
  • Neuroscience Quarterly
    Message From SfN President Eric Nestler: ‘Affirmative Attention’ to Increase Diversity
    The success of the neuroscience field requires the inclusion of diverse voices and perspectives at all levels.
  • Abstract
    Estrogen-induced synaptic plasticity in the cerebral cortex: a focus on the excitatory vs. inhibitory synapse formation and estrogen signaling
    Hippocampus has long been presumed the primary site of estrogen action on cognition. However, recent work in humans suggests that the prefrontal cortex and its neural circuitry are prime mediators of estrogen role in cognition, and it has also been sugg...
    Nov 6, 2007
  • Abstract
    Dscams and Sidekicks: immunoglobulin superfamily adhesion molecules that promote lamina-specific connectivity in the retina
    Retinal ganglion cells (RGCs), the sole output neurons of the retina, receive synapses from amacrine and bipolar cells in the inner plexiform layer (IPL). The visual features to which different RGCs respond depend on what input they receive, prime deter...
    Nov 6, 2007
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