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NeuroLeman Network

Seminars and recordings

October 2021

Understanding the Assessment of Spatial Neglect and its Treatment Using Prism Adaptation Training

Matthew Checketts· Division of Neuroscience & Experimental Psychology and Division of Psychology and Mental Health, Faculty of Biology, Medicine and Health, The University of Manchester, Manchester Academic Health Science Centre, Manchester, United Kingdom

Ended

Tue, Oct 5 · 12:15 UTC

Spatial neglect is a syndrome that is most frequently associated with damage to the right hemisphere, although damage to the left hemisphere can also result in signs of spatial neglect. It is characterised by absent or deficient awareness of the contralesional side of space. The screening and diagnosis of spatial neglect lacks a universal gold standard, but is usually achieved by using various modes of assessment. Spatial neglect is also difficult to treat, although prism adaptation training (PAT) has in the past reportedly showed some promise. This seminar will include highlights from a series of studies designed to identify knowledge gaps, and will suggest ways in which these can be bridged. The first study was conducted to identify and quantify clinicians’ use of assessment tools for spatial neglect, finding that several different tools are in use, but that there is an emerging consensus and appetite for harmonisation. The second study included PAT, and sought to uncover whether PAT can improve engagement in recommended therapy in order to improve the outcomes of stroke survivors with spatial neglect. The final study, a systematic review and meta-analysis, sought to investigate the scientific efficacy (rather than clinical effectiveness) of PAT, identifying several knowledge gaps in the existing literature and a need for a new approach in the study of PAT in the clinical setting.

MedicineNeuroscience+3 more

September 2021

Themes and Variations: Circuit mechanisms of behavioral evolution

Vanessa Ruta· The Rockefeller University, New York, USA

Ended

Wed, Sep 29 · 16:00 UTC

Animals exhibit extraordinary variation in their behavior, yet little is known about the neural mechanisms that generate this diversity. My lab has been taking advantage of the rapid diversification of male courtship behaviors in Drosophila to glean insight into how evolution shapes the nervous system to generate species-specific behaviors. By translating neurogenetic tools from D. melanogaster to closely related Drosophila species, we have begun to directly compare the homologous neural circuits and pinpoint sites of adaptive change. Across species, P1 neurons serve as a conserved node in regulating male courtship: these neurons are selectively activated by the sensory cues indicative of an appropriate mate and their activation triggers enduring courtship displays. We have been examining how different sensory pathways converge onto P1 neurons to regulate a male’s state of arousal, honing his pursuit of a prospective partner. Moreover, by performing cross-species comparison of these circuits, we have begun to gain insight into how reweighting of sensory inputs to P1 neurons underlies species-specific mate recognition. Our results suggest how variation at flexible nodes within the nervous system can serve as a substrate for behavioral evolution, shedding light on the types of changes that are possible and preferable within brain circuits.

NeuroscienceEthology+4 more

Learning to aggress – Behavioral and circuit mechanisms of aggression reward

Sam Golden· University of Washington, Seattle, USA

Ended

Tue, Sep 14 · 17:15 UTC

Aggression is an ethologically complex behavior with equally complex underlying mechanisms. Here, I present data on one form of aggression, appetitive or rewarding aggression, and the behavioral, cellular and system-level mechanisms guiding this behavior. First, I will present one way in which appetitive aggression is modeled in mice, and extend aggression motivation to the concept of compulsive aggression seeking and relapse. I will then briefly highlight recent advances in computer vision and machine learning for automated scoring of aggressive behavior, the role of specific cell-types in controlling aggression reward, and close with preliminary data on the whole brain aggression reward functional connectome using light sheet fluorescent microscopy (LSFM).

NeuroscienceMachine Learning+4 more

August 2021

LONG-ACTING ANTIPSYCHOTICS: OPTION DOWN THE ROCKY ROAD, NICE TO HAVE OR ESSENTIAL CHOICE?

Christoph U. Correll· The Donald and Barbara Zucker School of Medicine at Hofstra/Northwell New York, USA & Charité – Universitätsmedizin Berlin, Berlin, Germany

Ended

Tue, Aug 31 · 18:30 UTC

Time and again we are faced with the question at what point in the treatment of schizophrenia a depot formulation should be used. The data on the so-called LAIs (Long-Acting Injectables) has steadily increased in recent years. Today, we have very good evidence for the early use of depot therapies. However, the willingness and consent of the patient for this form of pharmacotherapy remains central to the successful use of LAIs. In his lecture, Prof. Correll will talk about the current evidence for the use of LAIs summarizing the latest studies.

PsychiatryMedicine+3 more

June 2021

Memorability: Prioritizing visual information for memory

Wilma Bainbridge· University of Chicago

Ended

Mon, Jun 28 · 16:00 UTC

There is a surprising consistency in the images we remember and forget – across observers, certain images are intrinsically more memorable than others in spite of our diverse individual experiences. The perception of images at different memorability levels also results in stereotyped patterns in visual and mnemonic regions in the brain, regardless of an individual’s actual memory for that item. In this talk, Dr. Bainbridge will discuss our current neuroscientific understanding of how memorability is represented in patterns in the brain, potentially serving as a signal for how stimulus information is prioritized for eventual memory encoding.

Brain ImagingNeuroscience+2 more

Neural stem cells as biomarkers of cognitive aging and dementia

Sandrine Thuret· King's College London, Institute of Psychiatry, Psychology & Neuroscience, Basic & Clinical, Neuroscience Department

Ended

Fri, Jun 25 · 14:00 UTC

Adult hippocampal neurogenesis is implicated in memory formation and mood regulation. The Thuret lab investigates environmental and molecular mechanisms controlling the production of these adult-born neurons and how they impact mental health. We study neurogenesis in healthy ageing as well as in the context of diseases such as Alzheimer’s and depression. By approaching neurogenesis in health and disease, the strategy is two folds: (i) Validating the neurogenic process as a target for prevention and pharmacological interventions. (ii) Developing neurogenesis as a biomarker of disease prediction and progression. In this talk, I will focus on presenting some recent human studies demonstrating how hippocampal neural stem cells fate can be used as biomarkers of cognitive aging and dementia.

NeuroscienceCognition+3 more

Joining-the-dots in Memory

David Dupret· Medical Research Council Brain Network Dynamics Unit, Nuffield Department of Clinical Neurosciences, University of Oxford, UK

Ended

Mon, Jun 14 · 11:00 UTC

CognitionNeuroscience+1 more

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