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fear

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60 curated items40 ePosters18 Seminars2 Positions
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60 items · fear
60 results
Position

Bianca Silva

National Research Council of Italy, Humanitas Research Hospital
Milan, Italy
Dec 5, 2025

The newly established Silva lab is seeking a Postdoctoral Fellow to study midline thalamic circuits in fear memory and fear extinction in the mouse. The Silva lab combines whole-brain functional tracing, chemogenetics, optogenetics and in vivo fiber photometry to investigate thalamic circuits involved in emotional regulation. We recently discovered that the nucleus reuniens of the thalamus mediates extinction of remote (older than 30 days) fear memories (Silva et al. Nat. Neurosci. 2021) and we are currently working to unravel its functional upstream and downstream partners. The successful candidate will design and implement experiments to elucidate and characterize the NRe-centered whole-brain circuit and identify its putative neurophysiological impairments in mouse models of PTSD. Experience with behavioral studies, stereotactic surgeries, programming, whole-brain microscopy or causal neuroscience is a plus, but is not required. The successful candidate should be highly motivated and have the ability to successfully lead a research project. The Silva lab is affiliated to the Institute of Neuroscience at the National Research Council of Italy and is located at the Neurocenter of the Humanitas Research Hospital in Rozzano, MI (https://www.humanitas-research.org/). Applicants should contact Bianca Silva (bianca.silva@in.cnr.it) with a current CV and a motivation letter. The position is full-time for 1 year, and renewable for other two. The position is immediately available and is funded by a 3-year grant by Cariplo Foundation. Within the first year, application to prestigious international postdoctoral fellowships (EMBO, Marie Curie, HFSP) is highly encouraged. Selected candidates will be directly contacted for interviews. After interview two reference letters will be requested.

Position

Dr. Sheena Josselyn

Hospital for Sick Children/University of Toronto
Toronto, Canada
Dec 5, 2025

My lab studies how memories are formed, stored and used in the brain, particularly at the level of neural ensemble (engram). We use a variety of tools, from molecular and cellular manipulations to optogenetics and in vivo calcium imaging to better understand this fundamental question. Interested? contact me

SeminarNeuroscienceRecording

Fear learning induces synaptic potentiation between engram neurons in the rat lateral amygdala

Kenneth Hayworth
Carboncopies Foundation & BPF Aspirational Neuroscience
Apr 21, 2025

Fear learning induces synaptic potentiation between engram neurons in the rat lateral amygdala. This study by Marios Abatis et al. demonstrates how fear conditioning strengthens synaptic connections between engram cells in the lateral amygdala, revealed through optogenetic identification of neuronal ensembles and electrophysiological measurements. The work provides crucial insights into memory formation mechanisms at the synaptic level, with implications for understanding anxiety disorders and developing targeted interventions. Presented by Dr. Kenneth Hayworth, this journal club will explore the paper's methodology linking engram cell reactivation with synaptic plasticity measurements, and discuss implications for memory decoding research.

SeminarNeuroscience

Human Fear and Memory: Insights and Treatments Using Mobile Implantable Neurotechnologies

Nanthia Suthana
University of California, Los Angeles
Apr 13, 2025
SeminarNeuroscience

Circuit Mechanisms of Remote Memory

Lauren DeNardo, PhD
Department of Physiology, David Geffen School of Medicine, UCLA
Feb 10, 2025

Memories of emotionally-salient events are long-lasting, guiding behavior from minutes to years after learning. The prelimbic cortex (PL) is required for fear memory retrieval across time and is densely interconnected with many subcortical and cortical areas involved in recent and remote memory recall, including the temporal association area (TeA). While the behavioral expression of a memory may remain constant over time, the neural activity mediating memory-guided behavior is dynamic. In PL, different neurons underlie recent and remote memory retrieval and remote memory-encoding neurons have preferential functional connectivity with cortical association areas, including TeA. TeA plays a preferential role in remote compared to recent memory retrieval, yet how TeA circuits drive remote memory retrieval remains poorly understood. Here we used a combination of activity-dependent neuronal tagging, viral circuit mapping and miniscope imaging to investigate the role of the PL-TeA circuit in fear memory retrieval across time in mice. We show that PL memory ensembles recruit PL-TeA neurons across time, and that PL-TeA neurons have enhanced encoding of salient cues and behaviors at remote timepoints. This recruitment depends upon ongoing synaptic activity in the learning-activated PL ensemble. Our results reveal a novel circuit encoding remote memory and provide insight into the principles of memory circuit reorganization across time.

SeminarNeuroscienceRecording

Integrative Neuromodulation: from biomarker identification to optimizing neuromodulation

Valerie Voon
Department of Psychiatry, University of Cambridge
Mar 6, 2023

Why do we make decisions impulsively blinded in an emotionally rash moment? Or caught in the same repetitive suboptimal loop, avoiding fears or rushing headlong towards illusory rewards? These cognitive constructs underlying self-control and compulsive behaviours and their influence by emotion or incentives are relevant dimensionally across healthy individuals and hijacked across disorders of addiction, compulsivity and mood. My lab focuses on identifying theory-driven modifiable biomarkers focusing on these cognitive constructs with the ultimate goal to optimize and develop novel means of neuromodulation. Here I will provide a few examples of my group’s recent work to illustrate this approach. I describe a series of recent studies on intracranial physiology and acute stimulation focusing on risk taking and emotional processing. This talk highlights the subthalamic nucleus, a common target for deep brain stimulation for Parkinson’s disease and obsessive-compulsive disorder. I further describe recent translational work in non-invasive neuromodulation. Together these examples illustrate the approach of the lab highlighting modifiable biomarkers and optimizing neuromodulation.

SeminarNeuroscienceRecording

Brain-body interactions that modulate fear

Alexandra Klein
Kheirbeck lab, UCSF
Mar 29, 2022

In most animals including in humans, emotions occur together with changes in the body, such as variations in breathing or heart rate, sweaty palms, or facial expressions. It has been suggested that this interoceptive information acts as a feedback signal to the brain, enabling adaptive modulation of emotions that is essential for survival. As such, fear, one of our basic emotions, must be kept in a functional balance to minimize risk-taking while allowing for the pursuit of essential needs. However, the neural mechanisms underlying this adaptive modulation of fear remain poorly understood. In this talk, I want to present and discuss the data from my PhD work where we uncover a crucial role for the interoceptive insular cortex in detecting changes in heart rate to maintain an equilibrium between the extinction and maintenance of fear memories in mice.

SeminarNeuroscience

JAK/STAT regulation of the transcriptomic response during epileptogenesis

Amy Brooks-Kayal
Children's Hospital Colorado / UC Davis
Dec 14, 2021

Temporal lobe epilepsy (TLE) is a progressive disorder mediated by pathological changes in molecular cascades and neural circuit remodeling in the hippocampus resulting in increased susceptibility to spontaneous seizures and cognitive dysfunction. Targeting these cascades could prevent or reverse symptom progression and has the potential to provide viable disease-modifying treatments that could reduce the portion of TLE patients (>30%) not responsive to current medical therapies. Changes in GABA(A) receptor subunit expression have been implicated in the pathogenesis of TLE, and the Janus Kinase/Signal Transducer and Activator of Transcription (JAK/STAT) pathway has been shown to be a key regulator of these changes. The JAK/STAT pathway is known to be involved in inflammation and immunity, and to be critical for neuronal functions such as synaptic plasticity and synaptogenesis. Our laboratories have shown that a STAT3 inhibitor, WP1066, could greatly reduce the number of spontaneous recurrent seizures (SRS) in an animal model of pilocarpine-induced status epilepticus (SE). This suggests promise for JAK/STAT inhibitors as disease-modifying therapies, however, the potential adverse effects of systemic or global CNS pathway inhibition limits their use. Development of more targeted therapeutics will require a detailed understanding of JAK/STAT-induced epileptogenic responses in different cell types. To this end, we have developed a new transgenic line where dimer-dependent STAT3 signaling is functionally knocked out (fKO) by tamoxifen-induced Cre expression specifically in forebrain excitatory neurons (eNs) via the Calcium/Calmodulin Dependent Protein Kinase II alpha (CamK2a) promoter. Most recently, we have demonstrated that STAT3 KO in excitatory neurons (eNSTAT3fKO) markedly reduces the progression of epilepsy (SRS frequency) in the intrahippocampal kainate (IHKA) TLE model and protects mice from kainic acid (KA)-induced memory deficits as assessed by Contextual Fear Conditioning. Using data from bulk hippocampal tissue RNA-sequencing, we further discovered a transcriptomic signature for the IHKA model that contains a substantial number of genes, particularly in synaptic plasticity and inflammatory gene networks, that are down-regulated after KA-induced SE in wild-type but not eNSTAT3fKO mice. Finally, we will review data from other models of brain injury that lead to epilepsy, such as TBI, that implicate activation of the JAK/STAT pathway that may contribute to epilepsy development.

SeminarNeuroscience

Astrocytes and oxytocin interaction regulates amygdala neuronal network activity and related behaviors”

Alexandre Charlet
Centre National de la Recherche Scientifique, University of Strasbourg and Institute of Cellular and Integrative Neuroscience, Strasbourg, France
Dec 8, 2021

Oxytocin orchestrates social and emotional behaviors through modulation of neural circuits in brain structures such as the central amygdala (CeA). In this structure, the release of oxytocin modulates inhibitory circuits and subsequently suppresses fear responses and decreases anxiety levels. Using astrocyte-specific gain and loss of function approaches and pharmacology, we demonstrate that oxytocin signaling in the central amygdala relies on a subpopulation of astrocytes that represent a prerequisite for proper function of CeA circuits and adequate behavioral responses, both in rats and mice. Our work identifies astrocytes as crucial cellular intermediaries of oxytocinergic modulation in emotional behaviors related to anxiety or positive reinforcement. To our knowledge, this is the first demonstration of a direct role of astrocytes in oxytocin signaling and challenges the long-held dogma that oxytocin signaling occurs exclusively via direct action on neurons in the central nervous system.

SeminarNeuroscience

Dynamical population coding during defensive behaviours in prefrontal circuits

Cyril Herry
University of Bordeaux
Jun 30, 2021

Coping with threatening situations requires both identifying stimuli predicting danger and selecting adaptive behavioral responses in order to survive. The dorso medial prefrontal cortex (dmPFC) is a critical structure involved in the regulation of threat-related behaviour, yet it is still largely unclear how threat-predicting stimuli and defensive behaviours are associated within prefrontal networks in order to successfully drive adaptive responses. To address these questions, we used a combination of extracellular recordings, neuronal decoding approaches, and optogenetic manipulations to show that threat representations and the initiation of avoidance behaviour are dynamically encoded in the overall population activity of dmPFC neurons. These data indicate that although dmPFC population activity at stimulus onset encodes sustained threat representations and discriminates threat- from non-threat cues, it does not predict action outcome. In contrast, transient dmPFC population activity prior to action initiation reliably predicts avoided from non-avoided trials. Accordingly, optogenetic inhibition of prefrontal activity critically constrained the selection of adaptive defensive responses in a time-dependent manner. These results reveal that the adaptive selection of active fear responses relies on a dynamic process of information linking threats with defensive actions unfolding within prefrontal networks.

SeminarNeuroscience

As soon as there was life there was danger

Joseph LeDoux
New York University
Jun 28, 2021

Organisms face challenges to survival throughout life. When we freeze or flee in danger, we often feel fear. Tracing the deep history of danger gives a different perspective. The first cells living billions of years ago had to detect and respond to danger in order to survive. Life is about not being dead, and behavior is a major way that organisms hold death off. Although behavior does not require a nervous system, complex organisms have brain circuits for detecting and responding to danger, the deep roots of which go back to the first cells. But these circuits do not make fear, and fear is not the cause of why we freeze or flee. Fear a human invention; a construct we use to account for what happens in our minds when we become aware that we are in harm’s way. This requires a brain that can personally know that it existed in the past, that it is the entity that might be harmed in the present, and that it will cease to exist it the future. If other animals have conscious experiences, they cannot have the kinds of conscious experiences we have because they do not have the kinds of brains we have. This is not meant as a denial of animal consciousness; it is simply a statement about the fact that every species has a different brain. Nor is it a declaration about the wonders of the human brain, since we have done some wonderful, but also horrific, things with our brains. In fact, we are on the way to a climatic disaster that will not, as some suggest, destroy the Earth. But it will make it inhabitable for our kind, and other organisms with high energy demands. Bacteria have made it for billions of years and will likely be fine. The rest is up for grabs, and, in a very real sense, up to us.

SeminarNeuroscience

Contrasting neuronal circuits driving reactive and cognitive fear

Mario Penzo
NIMH
Jun 27, 2021

The last decade in the field of neuroscience has been marked by intense debate on the meaning of the term fear. Whereas some have argued that fear (as well as other emotions) relies on cognitive capacities that are unique to humans, others view it as a negative state constructed from essential building blocks. This latter definition posits that fear states are associated with varying readouts that one could consider to be parallel processes or serial events tied to a specific hierarchy. Within this framework, innate defensive behaviors are considered to be common displays of fear states that lie under the control of hard-wired brain circuits. As a general rule, these defensive behaviors can be classified as either reactive or cognitive based on a thread imminence continuum. However, while evidence of the neuronal circuits that lead to these divergent behavioral strategies has accrued over the last decades, most literature has considered these responses in isolation. As a result, important misconceptions have arisen regarding how fear circuits are distributed in the brain and the contribution of specific nodes within these circuits to defensive behaviors. To mitigate the status quo, I will conduct a systematic comparison of brain circuits driving the expression of freezing and active avoidance behavior, which I will use as well-studied proxies of reactive and cognitive fear, respectively. In addition, I propose that by integrating associative information with interoceptive and exteroceptive signals the central nucleus of the amygdala plays a crucial role in biasing the selection of defensive behaviors.

SeminarNeuroscienceRecording

Anterior Cingulate inputs to nucleus accumbens control the social transfer of pain and analgesia

Monique Smith
Malenka lab, Stanford University
Apr 6, 2021

Empathy plays a critical role in social interactions, and many species, including rodents, display evolutionarily conserved behavioral antecedents of empathy. In both humans and rodents, the anterior cingulate cortex (ACC) encodes information about the affective state of others. However, little is known about which downstream targets of the ACC contribute to empathy behaviors. We optimized a protocol for the social transfer of pain behavior in mice and compared the ACC-dependent neural circuitry responsible for this behavior with the neural circuitry required for the social transfer of two related states: analgesia and fear. We found that a 1-hour social interaction between a bystander mouse and a cagemate experiencing inflammatory pain led to congruent mechanical hyperalgesia in the bystander. This social transfer led to activation of neurons in the ACC and several downstream targets, including the nucleus accumbens (NAc), which was revealed by monosynaptic rabies virus tracing to be directly connected to the ACC. Bidirectional manipulation of activity in ACC-to-NAc inputs influenced the acquisition of socially transferred pain. Further, the social transfer of analgesia also depended upon ACC-NAc inputs. By contrast, the social transfer of fear instead required activity in ACC projections to the basolateral amygdala. This shows that mice rapidly adopt the sensory-affective state of a social partner, regardless of the valance of the information (pain, fear, or pain relief). We find that the ACC generates specific and appropriate empathic behavioral responses through distinct downstream targets. More sophisticated understanding of evolutionarily conserved brain mechanisms of empathy will also expedite the development of new therapies for the empathy-related deficits associated with a broad range of neuropsychiatric disorders.

SeminarNeuroscience

Cerebellar Modulation of a Midbrain Innate Fear Circuit

Christopher Vaaga
Northwestern University
Feb 3, 2021
SeminarNeuroscience

Dynamical population coding during defensive behaviours in prefrontal circuits

Cyril Herry
Neurocentre Magendie
Nov 22, 2020

Coping with threatening situations requires both identifying stimuli predicting danger and selecting adaptive behavioral responses in order to survive. The dorso medial prefrontal cortex (dmPFC) is a critical structure involved in the regulation of threat-related behaviour, yet it is still largely unclear how threat-predicting stimuli and defensive behaviours are associated within prefrontal networks in order to successfully drive adaptive responses. To address these questions, we used a combination of extracellular recordings, neuronal decoding approaches, and optogenetic manipulations to show that threat representations and the initiation of avoidance behaviour are dynamically encoded in the overall population activity of dmPFC neurons. These data indicate that although dmPFC population activity at stimulus onset encodes sustained threat representations and discriminates threat- from non-threat cues, it does not predict action outcome. In contrast, transient dmPFC population activity prior to action initiation reliably predicts avoided from non-avoided trials. Accordingly, optogenetic inhibition of prefrontal activity critically constrained the selection of adaptive defensive responses in a time-dependent manner. These results reveal that the adaptive selection of active fear responses relies on a dynamic process of information linking threats with defensive actions unfolding within prefrontal networks.

ePoster

Composition of prefrontal ensembles in virtual fear of heights decision-making task

Stephanie Staszko, Abigail Yu, Samira Glaeser-Khan, Rachel Oren, Jen-Hau Yang, Aakash Basu, Alfred Kaye

COSYNE 2023

ePoster

Mechanisms of contextual fear memory suppression and extinction by the Nucleus Reuniens-CA1 pathway

Heather Ratigan & Mark Sheffield

COSYNE 2023

ePoster

Decision-making and fear in a virtual heights task

Emi Krishnamurthy, Stephanie Staszko, Rohan Lokanadham, Aakash Basu, Alfred Kaye

COSYNE 2025

ePoster

Activity of dentate gyrus excitatory neurons during discrimination contextual fear conditioning

Suvi-Maaria Lehtonen, Weiyong Xu, Sanna Lensu, Jan Kujala, Miriam Nokia

FENS Forum 2024

ePoster

Auditory stimuli reduce fear responses in a safety learning protocol independent of a possible learning process

Elena Mombelli, Denys Osypenko, Shriya Palchaudhuri, Christos Sourmpis, Johanni Brea, Olexiy Kochubey, Ralf Schneggenburger

FENS Forum 2024

ePoster

Astrocytic Foxo1 regulates hippocampal spinogenesis and synaptic plasticity and enhances fear memory

Daniela Sofia Abreu, João Filipe Viana, Cristina Martín-Monteagudo, João Luís Machado, Sara Barsanti, Diana Sofia Marques Nascimento, Alexandra Veiga, Duarte Dias, Marta Navarrete, Andreia Teixeira-Castro, João Filipe Oliveira

FENS Forum 2024

ePoster

Basolateral amygdala activity phase-locked to neocortical slow waves underlies fear memory consolidation

Yu Sato, Rio Okada, Tetsuhiko Kashima, Shota Morikawa, Yuji Ikegaya

FENS Forum 2024

ePoster

Cell-type specific signatures of plastic CS coding in the insula during fear learning

Bei-Xuan Lin, Olexiy Kochubey, Ralf Schneggenburger

FENS Forum 2024

ePoster

Cerebellar neuronal activity during emotional control and the role of cerebellar-mPFC pathway in fear learning

Camilla Ciapponi, Lisa Mapelli, Egidio D'Angelo

FENS Forum 2024

ePoster

Cognitive factors of susceptibility to contextual fear generalization

Eva Mikics, Laszlo Szente, Mano Aliczki, Gyula Y Balla, Zoltan K. Varga, Robert D. Marothy, Aron Bendeguz Varga, Zsolt Borhegyi, Laszlo Biro, Mate Toth

FENS Forum 2024

ePoster

CRISPR-based epigenetic editing of engram cells in fear memories

Davide Martino Coda, Johannes Graeff

FENS Forum 2024

ePoster

Critical fear: Developmental trajectories of traumatic life experiences during specific sensitive periods

Greta Visintin, Giovanni Morelli, Mohit Rastogi, Elisa Gelli, Angelo Serani, Alexia Stuefer, Martina Bartolucci, Ilaria Colombi, Matteo Falappa, Andrea Petretto, Alessandro Gozzi, Valter Tucci, Laura Cancedda

FENS Forum 2024

ePoster

The differential role of the subiculum > hypothalamic paths in diverse contextual fear responses to a live predator and physically harmful events

Karolina Domingues, Fernando Falkenburger Melleu, Fernanda Ayumi Nagay Yoshihara, Thamires Rosa dos Santos, Newton Sabino Canteras

FENS Forum 2024

ePoster

Dopamine prediction error signaling in a unique nigrostriatal circuit is critical for associative fear learning

Daphne Zafiri, Ximena Icaria Salinas-Hernández, Eloah S. De Biasi, Leonor Rebelo, Sevil Duvarci

FENS Forum 2024

ePoster

Dorsal raphe nuclei/ventrolateral periaqueductal grey and cerebellar fastigial nucleus interactions modulate danger response during fear learning

Julie Urrutia, Clément Léna, Daniela Popa

FENS Forum 2024

ePoster

Effect of acute and chronic activation of relaxin-3 receptor (RXFP3) on contextual fear acquisition and extinction in the rat retrosplenial cortex

Mónica Navarro Sánchez, Isis Gil-Miravet, Daniel Montero-Caballero, Mohamed Aly Ebraheem Zahran, Aroa Mañas-Ojeda, Esther Castillo-Gómez, Francisco. E Olucha-Bordonau

FENS Forum 2024

ePoster

Effects of safety instructions on fear extinction and extinction retrieval in patients with anxiety disorders

Annalisa Lipp, Christian J. Merz, Oliver T. Wolf, Armin Zlomuzica

FENS Forum 2024

ePoster

Encoding and retrieval of a contextual fear memory evoke divergent expression of immediate-early genes Arc and c-Fos

Nicholas Bulthuis, Liliette Quintana, Michelle Stackmann, Christine Ann Denny

FENS Forum 2024

ePoster

Engram-specific synaptic potentiation is important for fear memory formation and expression in vivo

Matteo Saderi, Ankit Awasthi, Sheena Josselyn, Paul Frankland

FENS Forum 2024

ePoster

Exploring sex hormones and menstrual cycle influence on fear memory through a multidimensional approach

Jaime Fabregat Nabás, Eric Velasco, David Fabregat-Safont, Alejandro Gomez Gomez, Óscar Pozo, Raül Andero

FENS Forum 2024

ePoster

Facilitation of social fear extinction in adolescent male mice

Sukwon Lee

FENS Forum 2024

ePoster

Fear-dependent brain state changes in perception and sensory representation in larvae zebrafish

Conrad Lee, Leandro A Scholz, Ethan K Scott

FENS Forum 2024

ePoster

Fear memory recall via hippocampal somatostatin interneurons

Krisztián Zichó, Réka Z. Sebestény, Katalin E. Sos, Péter Papp, Albert M. Barth, Erik Misák, Áron Orosz, Márton I. Mayer, Gábor Nyiri

FENS Forum 2024

ePoster

Fear memory under acute phase shift: Potential modulation of prefrontal-hippocampal circuit by orexin

Lara Chirich Barreira, Hannah Gapp, Julia Henschke, Janelle Pakan, Anne Albrecht

FENS Forum 2024

ePoster

Functional architecture of dopamine neurons driving fear extinction learning

Ximena Icaria Salinas Hernandez, Daphne Zafiri, Torfi Sigurdsson, Sevil Duvarci

FENS Forum 2024

ePoster

Functional hemispheric asymmetry of medial habenula is associated with fear expression via modulation of GABAB receptor signaling in mice

Cihan Önal, Peter Koppensteiner, Elodie Le Monnier, Bernhard Bettler, Ryuichi Shigemoto

FENS Forum 2024

ePoster

Head-fixed social fear learning in mice with virtual spatial cues and real demonstrator

Arie Kim, Rotinda Bilek, Veronique Stokkers, Jeroen Bos, Francesco Battaglia

FENS Forum 2024

ePoster

Increased fear-related behaviors following alpha-synuclein preformed fibrils injected into the basolateral amygdala or striatum in mice

Thuy Lai, Wei Xiang, Christopher Käufer, Malte Feja, Kristina Lau, Friederike Zunke, Franziska Richter

FENS Forum 2024

ePoster

Medial anterior prefrontal cortex stimulation down-regulates implicit reactions to threats and prevents the return of fear

Eugenio Manassero, Giulia Concina, Maria Clarissa Chantal Caraig, Pietro Sarasso, Adriana Salatino, Raffaella Ricci, Benedetto Sacchetti

FENS Forum 2024

ePoster

A midbrain-extended amygdala pathway controls contextual fear memory

Kinga Müller, Biborka Bruzsik, Laura Rovira-Esteban, Enrica Paradiso, Orsolya Papp, Zsuzsanna Fekete, Zsofia Reeb, Mate Toth, Cecilia Szekeres-Paraczky, Peter Szocsics, Jose Miguel Blasco-Ibanez, Orsolya Mihaly, Zsofia Magloczki, Francesco Ferraguti, Eva Mikics, Norbert Hajos

FENS Forum 2024

ePoster

Modulation of fear extinction in mice by offline or online tDCS

Sarah Rubens, Andries Van Schuerbeek, Vincent Van Waes, Dimitri De Bundel

FENS Forum 2024

ePoster

Molecular mechanisms of remote fear memory extinction

Lisa Watt, Johannes Gräff

FENS Forum 2024

ePoster

Mouse observers’ corticosterone secretion is involved in the establishment and retrieval of vicarious fear conditioning

Yi-Han Liao

FENS Forum 2024

ePoster

A multiple Arc tagging system to investigate the effect of psilocybin on fear memory extinction

Alessandra Franceschini, Alessia Mastrodonato, Gergely Turi, Christine Ann Denny

FENS Forum 2024

ePoster

Neonatal white matter microstructure predicts attention disengagement from fearful faces at 8 months

Hilyatushalihah Audah, Eeva-Leena Kataja, Tuomo Häkiö, Ashmeet Jolly, Aylin Rosberg, Elmo Pulli, Silja Luotonen, Isabella L. C. Mariani Wigley, Niloofar Hashempour, Ru Li, Elena Vartiainen, Wajiha Bano, Ilkka Suuronen, Harri Merisaari, John D. Lewis, Riika Korja, Saara Nolvi, Linnea Karlsson, Hasse Karlsson, Jetro J. Tuulari

FENS Forum 2024

ePoster

Network-level disruptions in vulnerable individuals contribute to enhanced fear generalization in a rodent model of PTSD

Robert Daniel Marothy, Gyula Y. Balla, László Szente, Manó Aliczki, Máté Tóth, Éva Mikics

FENS Forum 2024

ePoster

Neuronal determinants of contextual fear memory generalization: From normal to pathological fear

Ha-Rang Kim, Mario Martin-Fernandez, Juliette Viellard, Cyril Dejean, Cyril Herry, Yann Humeau

FENS Forum 2024

ePoster

Neuronal pERK expression in amygdala subregions reveals differential encoding of fear memory strength in a mouse model of PTSD

Fionnghuala James, Sanket Raut, Sayed Ahamed, Juan Canales, Vanni Caruso, Luke Johnson

FENS Forum 2024

ePoster

Neuronal types in the mouse amygdala and their transcriptional states in fear memory

Hannah Hochgerner, Shelly Singh, Muhammad Tibi, Zhige Lin, Niv Skarbianskis, Inbal Admati, Osnat Ophir, Nuphar Reinhardt, Shai Netser, Shlomo Wagner, Amit Zeisel

FENS Forum 2024

ePoster

Nogo-A regulates fear memory processes and memory engram formation by modulating neuronal excitability in a sex-specific manner

Sebastian Stork, Jenny Just, Kristin Metzdorf, Marta Zagrebelsky, Martin Korte

FENS Forum 2024