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Topic: Sensorimotor control

Seminar
5 seminars
Seminar · Electrophysiology

sensorimotor control, mouvement, touch, EEG

Marieva Vlachou · Institut des Sciences du Mouvement Etienne Jules Marey, Aix-Marseille Université/CNRS, France

Fri, Dec 19, 2025 · 14:00 UTC

Traditionally, touch is associated with exteroception and is rarely considered a relevant sensory cue for controlling movements in space, unlike vision. We developed a technique to isolate and measure tactile involvement in controlling sliding finger movements over a surface. Young adults traced a 2D shape with their index finger under direct or mirror-reversed visual feedback to create a conflict between visual and somatosensory inputs. In this context, increased reliance on somatosensory input compromises movement accuracy. Based on the hypothesis that tactile cues contribute to guiding hand

Seminar · Brain Imaging

Understanding sensorimotor control at global and local scales

Kelly Clancy · Mrsic-Flogel lab, Sainsbury Wellcome Centre

Wed, Mar 10, 2021 · 17:35 UTC

The brain is remarkably flexible, and appears to instantly reconfigure its processing depending on what’s needed to solve a task at hand: fMRI studies indicate that distal brain areas appear to fluidly couple and decouple with one another depending on behavioral context. But the structural architecture of the brain is comprised of long-range axonal projections that are relatively fixed by adulthood. How does the global dynamism evident in fMRI recordings manifest at a cellular level? To bridge the gap between the activity of single neurons and cortex-wide networks, we correlated electrophysiol

Seminar · Neuroscience

Motor BMIs for probing sensorimotor control and parsing distributed learning

Amy Orsborn · University of Washington

Fri, Oct 9, 2020 · 15:00 UTC

Brain-machine interfaces (BMIs) change how the brain sends and receives information from the environment, opening new ways to probe brain function. For instance, motor BMIs allow us to precisely define and manipulate the sensorimotor loop which has enabled new insights into motor control and learning. In this talk, I’ll first present an example study where sensory-motor loop manipulations in BMI allowed us to probe feed-forward and feedback control mechanisms in ways that are not possible in the natural motor system. This study shed light on sensorimotor processing, and in turn led to state-of

Seminar · Brain Imaging

Understanding sensorimotor control at global and local scales

Kelly Clancy · DeepMind

Fri, Oct 9, 2020 · 11:40 UTC

The brain is remarkably flexible, and appears to instantly reconfigure its processing depending on what’s needed to solve a task at hand: fMRI studies indicate that distal brain areas appear to fluidly couple and decouple with one another depending on behavioral context. We investigated how the brain coordinates its activity across areas to inform complex, top-down control behaviors. Animals were trained to perform a novel brain machine interface task to guide a visual cursor to a reward zone, using activity recorded with widefield calcium imaging. This allowed us to screen for cortical areas

Seminar · Vision Science

Neural and computational principles of the processing of dynamic faces and bodies

Martin Giese · University of Tübingen

Wed, Jul 8, 2020 · 16:00 UTC

Body motion is a fundamental signal of social communication. This includes facial as well as full-body movements. Combining advanced methods from computer animation with motion capture in humans and monkeys, we synthesized highly-realistic monkey avatar models. Our face avatar is perceived by monkeys as almost equivalent to a real animal, and does not induce an ‘uncanny valley effect’, unlike all other previously used avatar models in studies with monkeys. Applying machine-learning methods for the control of motion style, we were able to investigate how species-specific shape and dynamic cues

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