Neuroscience seminars
March 2023
Off the rails - how pathological patterns of whole brain activity emerge in epileptic seizures
Richard Rosch· King's College London
Wed, Mar 15 · 18:00 UTC
In most brains across the animal kingdom, brain dynamics can enter pathological states that are recognisable as epileptic seizures. Yet usually, brain operate within certain constraints given through neuronal function and synaptic coupling, that will prevent epileptic seizure dynamics from emerging. In this talk, I will bring together different approaches to identifying how networks in the broadest sense shape brain dynamics. Using illustrative examples from intracranial EEG recordings, disorders characterised by molecular disruption of a single neurotransmitter receptor type, to single-cell recordings of whole-brain activity in the larval zebrafish, I will address three key questions - (1) how does the regionally specific composition of synaptic receptors shape ongoing physiological brain activity; (2) how can disruption of this regionally specific balance result in abnormal brain dynamics; and (3) which cellular patterns underly the transition into an epileptic seizure.
Neuronal oscillations and prediction in perception
Concetta Morrone· University of Pisa
Tue, Mar 14 · 16:00 UTC
Neuron-glial interactions in health and disease: from cognition to cancer
Michelle Monje· Stanford Medicine
Tue, Mar 14 · 15:00 UTC
In the central nervous system, neuronal activity is a critical regulator of development and plasticity. Activity-dependent proliferation of healthy glial progenitors, oligodendrocyte precursor cells (OPCs), and the consequent generation of new oligodendrocytes contributes to adaptive myelination. This plasticity of myelin tunes neural circuit function and contributes to healthy cognition. The robust mitogenic effect of neuronal activity on normal oligodendroglial precursor cells, a putative cellular origin for many forms of glioma, suggests that dysregulated or “hijacked” mechanisms of myelin plasticity might similarly promote malignant cell proliferation in this devastating group of brain cancers. Indeed, neuronal activity promotes progression of both high-grade and low-grade glioma subtypes in preclinical models. Crucial mechanisms mediating activity-regulated glioma growth include paracrine secretion of BDNF and the synaptic protein neuroligin-3 (NLGN3). NLGN3 induces multiple oncogenic signaling pathways in the cancer cell, and also promotes glutamatergic synapse formation between neurons and glioma cells. Glioma cells integrate into neural circuits synaptically through neuron-to-glioma synapses, and electrically through potassium-evoked currents that are amplified through gap-junctional coupling between tumor cells This synaptic and electrical integration of glioma into neural circuits is central to tumor progression in preclinical models. Thus, neuron-glial interactions not only modulate neural circuit structure and function in the healthy brain, but paracrine and synaptic neuron-glioma interactions also play important roles in the pathogenesis of glial cancers. The mechanistic parallels between normal and malignant neuron-glial interactions underscores the extent to which mechanisms of neurodevelopment and plasticity are subverted by malignant gliomas, and the importance of understanding the neuroscience of cancer.
Somatotopic reorganization of the macaque sensorimotor cortex after accidental arm amputation
Sat, Mar 11 · 12:15 UTC · Online
Retinotopic maps and their relationship to white matter tracts in the human brain
Sat, Mar 11 · 11:25 UTC · Online
Encoding of dynamic facial expressions in the macaque superior temporal sulcus
Sat, Mar 11 · 11:00 UTC · Online
Motion processing across visual field locations in zebrafish
Sat, Mar 11 · 10:20 UTC · Online
Vision ScienceSeries: Tubingen Neuro Campus
Neural mechanisms underlying visual and vestibular self-motion perception
Sat, Mar 11 · 09:55 UTC · Online
Dissociation between superior colliculus visual response properties and short- latency ocular position drift responses
Tatiana Malevich and Fatemeh Khademi
Sat, Mar 11 · 09:30 UTC · Online
Saccade Trigger Brainstem Circuit – Identification of Inhibitory Neuron for Stopping OPN Activity at the Onset of and during Saccades
Sat, Mar 11 · 09:05 UTC · Online
Toward the neural basis of joint attention: studies in humans and monkeys
Fri, Mar 10 · 17:00 UTC · Online
NeuroendocrinologySeries: Tubingen Neuro Campus
Impaired social reward valuation by chemogenetic inhibition of the primate prefronto-hypothalamic pathway
Fri, Mar 10 · 16:00 UTC · Online
Multidimensional cerebellar computations for flexible kinematic control of movements
Fri, Mar 10 · 14:55 UTC · Online
Age differences in cortical network flexibility and motor learning ability
Fri, Mar 10 · 14:30 UTC · Online
Altered dynamic information flow through the cortico-basal ganglia pathways is responsible for Parkinson’s disease symptoms
Fri, Mar 10 · 14:05 UTC · Online
Cerebellar control of attention and its cortical dynamics
Fri, Mar 10 · 13:40 UTC · Online
CognitionSeries: Tubingen Neuro Campus
The role of noradrenergic transmission for saliency signaling and perception
Fri, Mar 10 · 12:15 UTC · Online
Dopamine and cellular mechanisms of cognitive control in primate prefrontal cortex
Fri, Mar 10 · 11:50 UTC · Online
Working memory tasks for functional mapping of the prefrontal cortex in common marmosets
Fri, Mar 10 · 11:25 UTC · Online