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schwartzlab.feinberg.northwestern.edu

Welcome to the Schwartz Lab - Schwartz Lab Web Site

Research in our lab focuses on the circuit mechanisms underlying sensory computation. We use the mouse retina as a model system because it allows us to stimulate the circuit precisely with its natural input, patterns of light, and record its natural output, the spike trains of retinal ganglion cells. We harness the power of genetic … Continue reading Welcome to the Schwartz Lab →

http://schwartzlab.feinberg.northwestern.edu/

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Research in our lab focuses on the circuit mechanisms underlying sensory computation. We use the mouse retina as a model system because it allows us to stimulate the circuit precisely with its natural input, patterns of light, and record its natural output, the spike trains of retinal ganglion cells. We harness the power of genetic &hellip; Continue reading Welcome to the Schwartz Lab &rarr;
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Welcome to the Schwartz Lab - Schwartz Lab Web Site | schwartzlab.feinberg.northwestern.edu Reviews

https://schwartzlab.feinberg.northwestern.edu

Research in our lab focuses on the circuit mechanisms underlying sensory computation. We use the mouse retina as a model system because it allows us to stimulate the circuit precisely with its natural input, patterns of light, and record its natural output, the spike trains of retinal ganglion cells. We harness the power of genetic &hellip; Continue reading Welcome to the Schwartz Lab &rarr;

INTERNAL PAGES

schwartzlab.feinberg.northwestern.edu schwartzlab.feinberg.northwestern.edu
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Retinal Neurobiology, Neural Circuits, Systems Neuroscience, Retina Circuitry, Electrophysiology, Fluorescent Imaging, Retinal Ganglion Cells, Amacrine Cells, Ophthalmology & Physiology, Northwestern University, Exploring the Mechanisms of light adapta

http://schwartzlab.feinberg.northwestern.edu/exploring-the-mechanism

Schwartz Lab Web Site. Exploring the Mechanisms of light adaptation. Feinberg School of Medicine. Feinberg School of Medicine. 300 E Superior St. Chicago, IL 60611. 312503.0857 (Lab) 312.503.7503 (Greg). Proudly powered by WordPress.

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Retinal Neurobiology, Neural Circuits, Systems Neuroscience, Retina Circuitry, Electrophysiology, Fluorescent Imaging, Retinal Ganglion Cells, Amacrine Cells, Ophthalmology & Physiology, Northwestern University, Research Techniques

http://schwartzlab.feinberg.northwestern.edu/methods

Schwartz Lab Web Site. We are developing new strategies to map the circuitry of the mouse retina at the level of individual synaptic connections between molecularly and physiologically identified cell types. We employ techniques such as targeted RNA manipulations, immunohistochemistry and confocal microscopy to quantify synaptic connectivity. 2) Models that explore the distribution of information across cell types and the dynamics of the representation of visual information. The rich content of the v...

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Retinal Neurobiology, Neural Circuits, Systems Neuroscience, Retina Circuitry, Electrophysiology, Fluorescent Imaging, Retinal Ganglion Cells, Amacrine Cells, Ophthalmology & Physiology, Northwestern University, Publications

http://schwartzlab.feinberg.northwestern.edu/publications

Schwartz Lab Web Site. Adam Mani and Gregory W. Schwartz (2017). Circuit Mechanisms of a Retinal Ganglion Cell with Stimulus-Dependent Response Latency and Activation Beyond Its Dendrites. Cell Current Biology. Jason Jacoby and Gregory W. Schwartz (2017). Three Small-Receptive-Field Ganglion Cells in the Mouse Retina Are Distinctly Tuned to Size, Speed, and Object Motion. The Journal of Neuroscience. Okawa, H., Santina, Della, L., Schwartz, G.W., Rieke, F., and Wong, R.O.L&#46...Bleckert A., Schwartz...

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Retinal Neurobiology, Neural Circuits, Systems Neuroscience, Retina Circuitry, Electrophysiology, Fluorescent Imaging, Retinal Ganglion Cells, Amacrine Cells, Ophthalmology & Physiology, Northwestern University, Funding Sources

http://schwartzlab.feinberg.northwestern.edu/funding

Schwartz Lab Web Site. Dr Greg Schwartz was recently awarded a prestigious 5 year grant from Research to Prevent Blindness. Leave a Reply Cancel reply. Your email address will not be published. Required fields are marked *. Feinberg School of Medicine. Feinberg School of Medicine. 300 E Superior St. Chicago, IL 60611. 312503.0857 (Lab) 312.503.7503 (Greg). Proudly powered by WordPress.

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Schwartz Lab Members

http://schwartzlab.feinberg.northwestern.edu/people

Schwartz Lab Web Site. Gregory W Schwartz, Ph.D. Jason Jacoby, Ph.D. Adam Mani, Ph.D. AmurtaNath1.2013@u.northwestern.edu. Jillian Goetz, Ph.D. Feinberg School of Medicine. Feinberg School of Medicine. 300 E Superior St. Chicago, IL 60611. 312503.0857 (Lab) 312.503.7503 (Greg). Proudly powered by WordPress.

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rieke-server.physiol.washington.edu rieke-server.physiol.washington.edu

Rieke Lab People

http://rieke-server.physiol.washington.edu/People/people.htm

Fred Rieke Ph.D. Associate Professor, Investigator HHMI. William Grimes Ph.D. Raunak Sinha Ph.D. Braden Brinkman Ph.D. Zhou Yu Ph.D. Sidney Kuo Ph.D. Now: Postdoctoral fellow, Li lab, NIH. Greg Schwartz Ph.D. Now: Asst. Professor, Schwartz lab, Northwestern University. Paul Newman M.S. Now: Postdoctoral fellow, Tuthill lab, University of Washington. Petri Ala-Laurila Ph.D. Now: Principal Investigator, Ala-Laurila lab, Univ. Helsinki. Graduate Student (Neurobiology and Behavior). Frederick Soo Ph.D.

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Welcome to the Schwartz Lab - Schwartz Lab Web Site

Schwartz Lab Web Site. Cardinal Orientation Selectivity Is Represented by Two Distinct Ganglion Cell Types in Mouse Retina. An amacrine cell circuit for signaling steady illumination in the retina. The density and morphology of different cell types vary with position in the retina. Constructing a bottom-up receptive field by mapping synaptic contacts onto retinal ganglion cells. Exploring the Mechanisms of light adaptation. Welcome to the Schwartz Lab. Feinberg School of Medicine.

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