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Prof. Mriganka Sur
Director, Simons Center for the Social Brain (SCSB)
Paul E (1965) and Lilah Newton (1965) Professor of Neuroscience
Primary DLC
Department of Brain and Cognitive Sciences
MIT Room:
46-6237
(617) 253-8784
msur@mit.edu
Areas of Interest and Expertise
Development and Plasticity of the Cerebral Cortex
Plasticity and Dynamics of the Adult Cortex
Cellular, Systems and Computational Approaches to Cortical Networks and Processing
Developmental Disorders of the Brain
Neuroscience
Cortical Development
Autism
Research Summary
Cortical Plasticity and Dynamics -- Mriganka Sur’s laboratory studies cortical development and plasticity. The developing brain requires a genetic blueprint but is also acutely sensitive to the environment. The adult brain constantly adapts to changes in stimuli, and this plasticity is manifest not only as learning and memory but also as dynamic changes in information transmission and processing. The goal of the laboratory is to understand long-term plasticity and short-term dynamics in networks of the developing and adult visual cortex. A related goal is to discover mechanisms underlying disorders of brain development.
Cortical development starts with genes that demarcate different areas, and subsequently genes that lay a scaffold of connections between neurons in each area. The lab uses microarrays and proteomics analyses to discover genes that underlie cortical patterning and plasticity, followed by molecular and physiological tools to examine the function of these genes and the interactions between them and the environment.
The Sur lab uses several model systems for studying developmental plasticity and its mechanisms. The first, which they pioneered, involves rewiring the brain: they induce projections from the eye to innervate nonvisual centers, such as the auditory thalamus, early in life. Visual inputs cause the auditory pathway to develop with a very different pattern of activity than normal. Sur and his colleagues have demonstrated that this profoundly alters neuronal networks and connectivity in the rewired auditory cortex.
The second model system involves the formation and maintenance of ocular dominance columns in visual cortex. Here, the lab examines molecular mechanisms and dynamics of rapid structural and functional changes in synapses. Specific molecules, such as Arc, CaMKII, and actin, are key players that link feedforward and feedback changes in neuronal connectivity due to changes in electrical activity.
Cortical circuits are comprised of specific cell-types that each have unique patterns of connections and contribute in specific ways to function. The lab uses cell-specific markers combined with two-photon measurements of single-cell responses, to analyze the role of inhibitory interneuron and excitatory neuron subtypes, along with astrocytes, in visual cortex circuits.
Many disorders of brain development arise from dysfunction in cortical synapses and circuits. The Sur laboratory uses animal models of subsets of autism, such as Rett Syndrome, to discover mechanisms by which the underlying genes influence synaptic function and plasticity. Novel therapeutics arising from these insights have entered clinical trials.
The laboratory uses state-of-the-art techniques. These include imaging of single cells, synapses and molecules in vivo and in vitro using two-photon microscopy, high resolution optical imaging of activity, whole-cell intracellular recording, novel genetically engineered proteins, and genomic and proteomic analyses combined with computational tools to identify genes in specific tissues.
Recent Work
Projects
December 21, 2016
Department of Brain and Cognitive Sciences
Massive-Scale Multi-Area Single Neuron Recordings to Reveal Circuits Underlying Short-Term Memory
Principal Investigator
Mriganka Sur
November 3, 2016
Department of Brain and Cognitive Sciences
Cortical Circuits and Information Flow During Memory-Guided Perceptual Decisions
Principal Investigator
Mriganka Sur
November 3, 2016
Department of Brain and Cognitive Sciences
MicroRNA Mechanisms of Rett Syndrome
Principal Investigator
Mriganka Sur
January 26, 2016
Department of Brain and Cognitive Sciences
Circuit Mechanisms of 16p11.2 Deletion in Autism
Principal Investigator
Mriganka Sur
January 26, 2016
Department of Brain and Cognitive Sciences
Astrocyte-Neuron Interactions In Vivo During Cortical Plasticity and Learning
Principal Investigator
Mriganka Sur
September 30, 2014
Department of Brain and Cognitive Sciences
Cortical Circuits and Information Flow During Memory-Guided Perceptual Decisions
Principal Investigator
Mriganka Sur
October 11, 2011
Department of Brain and Cognitive Sciences
Cortical Plasticity and Dynamics
Principal Investigator
Mriganka Sur
June 9, 2011
Department of Brain and Cognitive Sciences
CHB-MIT Enterprise (Children’s Hospital Boston)
Principal Investigator
Mriganka Sur
January 4, 2011
Department of Brain and Cognitive Sciences
Cell-Specific Circuits and Contextual Modulation in Visual Cortex
Principal Investigator
Mriganka Sur
January 4, 2011
Department of Brain and Cognitive Sciences
Mechanisms and Therapeutics of Rett Syndrome
Principal Investigator
Mriganka Sur
September 24, 2008
Department of Brain and Cognitive Sciences
Synaptic and Neuronal Plasticity in Cortical Circuits
Principal Investigator
Mriganka Sur
September 24, 2008
Department of Brain and Cognitive Sciences
Bottom Up and Top Down Dynamics in the Visual Cortex
Principal Investigator
Mriganka Sur
September 24, 2008
Department of Brain and Cognitive Sciences
Influence of Electrical Activity on Cortical Networks In Vivo
Principal Investigator
Mriganka Sur
September 24, 2008
Department of Brain and Cognitive Sciences
Molecular Specification of Cortical Areas and Thalamic Nuclei
Principal Investigator
Mriganka Sur
September 24, 2008
Department of Brain and Cognitive Sciences
The Rewired Cortex
Principal Investigator
Mriganka Sur
September 24, 2008
Department of Brain and Cognitive Sciences
The Critical Period of Plasticity in V1
Principal Investigator
Mriganka Sur
December 18, 2006
Department of Brain and Cognitive Sciences
Genes, Electrical Activity and Control of Brain Wiring
Principal Investigator
Mriganka Sur
December 18, 2006
Department of Brain and Cognitive Sciences
Cortical Networks and Visual Function
Principal Investigator
Mriganka Sur
June 6, 2000
Department of Brain and Cognitive Sciences
Sur Laboratory: Cortical Development, Plasticity, and Dynamics
Principal Investigator
Mriganka Sur
Related Faculty
Dr. Vikash Kumar Mansinghka
Principal Research Scientist
Mr. Kenneth C Zolot
Senior Lecturer
Amir Arsalan Soltani
Technical Associate I