Greg Field

Greg Field

Duke University

H-index: 27

North America-United States

About Greg Field

Greg Field, With an exceptional h-index of 27 and a recent h-index of 25 (since 2020), a distinguished researcher at Duke University, specializes in the field of neurobiology, sensory systems, biophysics, vision, retina.

His recent articles reflect a diverse array of research interests and contributions to the field:

Local synaptic inhibition mediates cerebellar granule cell pattern separation and enables learned sensorimotor associations

Population encoding of stimulus features along the visual hierarchy

GABAergic Inhibition Controls Receptive Field Size, Sensitivity, and Contrast Preference of Direction Selective Retinal Ganglion Cells Near the Threshold of Vision

Toward a Manifold Encoding Neural Responses

Transcriptomic profiling of rewiring bipolar cells yields molecular targets to induce neuroplasticity.

Inhibition differentially tunes responses of direction selective retinal ganglion cells near the threshold of vision.

Cones and cone pathways remain functional in advanced retinal degeneration

Late gene therapy limits the restoration of retinal function in a mouse model of retinitis pigmentosa

Greg Field Information

University

Position

Assistant Professor of Neurobiology

Citations(all)

4289

Citations(since 2020)

1696

Cited By

3330

hIndex(all)

27

hIndex(since 2020)

25

i10Index(all)

37

i10Index(since 2020)

36

Email

University Profile Page

Duke University

Google Scholar

View Google Scholar Profile

Greg Field Skills & Research Interests

neurobiology

sensory systems

biophysics

vision

retina

Top articles of Greg Field

Title

Journal

Author(s)

Publication Date

Local synaptic inhibition mediates cerebellar granule cell pattern separation and enables learned sensorimotor associations

Nature Neuroscience

Elizabeth A Fleming

Greg D Field

Michael R Tadross

Court Hull

2024/2/6

Population encoding of stimulus features along the visual hierarchy

Proceedings of the National Academy of Sciences

Luciano Dyballa

Andra M Rudzite

Mahmood S Hoseini

Mishek Thapa

Michael P Stryker

...

2024/1/23

GABAergic Inhibition Controls Receptive Field Size, Sensitivity, and Contrast Preference of Direction Selective Retinal Ganglion Cells Near the Threshold of Vision

Journal of Neuroscience

Suva Roy

Xiaoyang Yao

Jay Rathinavelu

Greg D Field

2024/3/13

Toward a Manifold Encoding Neural Responses

Luciano Dyballa

Andra M Rudzite

Mahmood S Hoseini

Mishek Thapa

Michael P Stryker

...

2023

Transcriptomic profiling of rewiring bipolar cells yields molecular targets to induce neuroplasticity.

Investigative Ophthalmology & Visual Science

Miranda Scalabrino

Mishek Thapa

Emily Horning

Alapakkam P Sampath

Jeannie Chen

...

2023/6/1

Inhibition differentially tunes responses of direction selective retinal ganglion cells near the threshold of vision.

Investigative Ophthalmology & Visual Science

Suva Roy

Xiaoyang Yao

Jay Rathinavelu

Greg Field

2023/6/1

Cones and cone pathways remain functional in advanced retinal degeneration

Current Biology

Erika M Ellis

Antonio E Paniagua

Miranda L Scalabrino

Mishek Thapa

Jay Rathinavelu

...

2023/4/24

Late gene therapy limits the restoration of retinal function in a mouse model of retinitis pigmentosa

Nature Communications

Miranda L Scalabrino

Mishek Thapa

Tian Wang

Alapakkam P Sampath

Jeannie Chen

...

2023/12/12

Large-scale interrogation of retinal cell functions by 1-photon light-sheet microscopy

Cell Reports Methods

Suva Roy

Depeng Wang

Andra M Rudzite

Benjamin Perry

Miranda L Scalabrino

...

2023/4/24

Decomposition of retinal ganglion cell electrical images for cell type and functional inference

bioRxiv

Eric G Wu

Andra M Rudzite

Martin O Bohlen

Peter H Li

Alexandra Kling

...

2023/11/8

Neuroscience: Visual restoration with optogenetics

Current Biology

Miranda L Scalabrino

Greg D Field

2023/2/6

Biophysical neural adaptation mechanisms enable artificial neural networks to capture dynamic retinal computation

bioRxiv

Saad Idrees

Michael B Manookin

Fred Rieke

Greg D Field

Joel Zylberberg

2023/6/24

Simple and complex orientation selective ganglion cells in the retina

Investigative Ophthalmology & Visual Science

Tierney Brienna Daw

Mishek Thapa

Greg Field

2022/6/1

Light-sheet imaging of large-scale neural population activity in the retina.

Investigative Ophthalmology & Visual Science

Suva Roy

Depeng Wang

Marija Rudzite

Miranda Scalabrino

Yiyang Gong

...

2022/6/1

Efficient coding, channel capacity, and the emergence of retinal mosaics

Advances in neural information processing systems

Na Young Jun

Greg Field

John Pearson

2022/12/6

Cone function is dependent on rod rescue in a mouse model of Retinitis Pigmentosa gene therapy

Investigative Ophthalmology & Visual Science

Miranda Scalabrino

Mishek Thapa

Esther Zhang

Lucy Peters

Molly Pluenneke

...

2022/6/1

A new photoreceptor-inspired CNN layer enables deep learning models of retina to generalize across lighting conditions

Saad Idrees

Greg D Field

Frederick Rieke

Joel Zylberberg

2022/9/29

Thousandfold Cell-Specific Pharmacology of Neurotransmission

bioRxiv

Brenda C Shields

Haidun Yan

Shaun SX Lim

Sasha C Burwell

Elizabeth A Fleming

...

2022

Robust cone-mediated signaling persists late into rod photoreceptor degeneration

Elife

Miranda L Scalabrino

Mishek Thapa

Lindsey A Chew

Esther Zhang

Jason Xu

...

2022/8/30

The functional organization of retinal ganglion cell receptive fields across light levels

bioRxiv

Kiersten Ruda

Andra M Rudzite

Greg D Field

2022

See List of Professors in Greg Field University(Duke University)

Co-Authors

H-index: 95
Eero P Simoncelli

Eero P Simoncelli

New York University

H-index: 70
Liam Paninski

Liam Paninski

Columbia University in the City of New York

H-index: 59
Fred Rieke

Fred Rieke

University of Washington

H-index: 53
E.J. Chichilnisky

E.J. Chichilnisky

Stanford University

H-index: 51
Jeannie Chen

Jeannie Chen

University of Southern California

H-index: 32
A.P. Sampath

A.P. Sampath

University of California, Los Angeles

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