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Fundamental bounds on the fidelity of sensory cortical coding
by
Hernandez, Oscar
, Chrapkiewicz, Radosław
, Rumyantsev, Oleg I.
, Lecoq, Jérôme A.
, Schnitzer, Mark J.
, Ganguli, Surya
, Zhang, Yanping
, Savall, Joan
, Li, Jane
, Zeng, Hongkui
in
14/35
/ 14/69
/ 631/378/116/1925
/ 631/378/2613/1875
/ 64/110
/ Accuracy
/ Animals
/ Brain
/ Coding
/ Correlation
/ Datasets
/ Female
/ Humanities and Social Sciences
/ Information processing
/ Lasers
/ Male
/ Mice
/ multidisciplinary
/ Neural coding
/ Neurons
/ Noise
/ Noise prediction
/ Photic Stimulation
/ Photon beams
/ Physiological aspects
/ Science
/ Science (multidisciplinary)
/ Sensory discrimination
/ Sensory neurons
/ Sensory Receptor Cells - physiology
/ Sensory receptors
/ Signaling
/ Somatosensory cortex
/ Stochastic Processes
/ Visual Acuity - physiology
/ Visual cortex
/ Visual Cortex - cytology
/ Visual Cortex - physiology
/ Visual discrimination
/ Visual signals
2020
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Fundamental bounds on the fidelity of sensory cortical coding
by
Hernandez, Oscar
, Chrapkiewicz, Radosław
, Rumyantsev, Oleg I.
, Lecoq, Jérôme A.
, Schnitzer, Mark J.
, Ganguli, Surya
, Zhang, Yanping
, Savall, Joan
, Li, Jane
, Zeng, Hongkui
in
14/35
/ 14/69
/ 631/378/116/1925
/ 631/378/2613/1875
/ 64/110
/ Accuracy
/ Animals
/ Brain
/ Coding
/ Correlation
/ Datasets
/ Female
/ Humanities and Social Sciences
/ Information processing
/ Lasers
/ Male
/ Mice
/ multidisciplinary
/ Neural coding
/ Neurons
/ Noise
/ Noise prediction
/ Photic Stimulation
/ Photon beams
/ Physiological aspects
/ Science
/ Science (multidisciplinary)
/ Sensory discrimination
/ Sensory neurons
/ Sensory Receptor Cells - physiology
/ Sensory receptors
/ Signaling
/ Somatosensory cortex
/ Stochastic Processes
/ Visual Acuity - physiology
/ Visual cortex
/ Visual Cortex - cytology
/ Visual Cortex - physiology
/ Visual discrimination
/ Visual signals
2020
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Do you wish to request the book?
Fundamental bounds on the fidelity of sensory cortical coding
by
Hernandez, Oscar
, Chrapkiewicz, Radosław
, Rumyantsev, Oleg I.
, Lecoq, Jérôme A.
, Schnitzer, Mark J.
, Ganguli, Surya
, Zhang, Yanping
, Savall, Joan
, Li, Jane
, Zeng, Hongkui
in
14/35
/ 14/69
/ 631/378/116/1925
/ 631/378/2613/1875
/ 64/110
/ Accuracy
/ Animals
/ Brain
/ Coding
/ Correlation
/ Datasets
/ Female
/ Humanities and Social Sciences
/ Information processing
/ Lasers
/ Male
/ Mice
/ multidisciplinary
/ Neural coding
/ Neurons
/ Noise
/ Noise prediction
/ Photic Stimulation
/ Photon beams
/ Physiological aspects
/ Science
/ Science (multidisciplinary)
/ Sensory discrimination
/ Sensory neurons
/ Sensory Receptor Cells - physiology
/ Sensory receptors
/ Signaling
/ Somatosensory cortex
/ Stochastic Processes
/ Visual Acuity - physiology
/ Visual cortex
/ Visual Cortex - cytology
/ Visual Cortex - physiology
/ Visual discrimination
/ Visual signals
2020
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Fundamental bounds on the fidelity of sensory cortical coding
Journal Article
Fundamental bounds on the fidelity of sensory cortical coding
2020
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Overview
How the brain processes information accurately despite stochastic neural activity is a longstanding question
1
. For instance, perception is fundamentally limited by the information that the brain can extract from the noisy dynamics of sensory neurons. Seminal experiments
2
,
3
suggest that correlated noise in sensory cortical neural ensembles is what limits their coding accuracy
4
–
6
, although how correlated noise affects neural codes remains debated
7
–
11
. Recent theoretical work proposes that how a neural ensemble’s sensory tuning properties relate statistically to its correlated noise patterns is a greater determinant of coding accuracy than is absolute noise strength
12
–
14
. However, without simultaneous recordings from thousands of cortical neurons with shared sensory inputs, it is unknown whether correlated noise limits coding fidelity. Here we present a 16-beam, two-photon microscope to monitor activity across the mouse primary visual cortex, along with analyses to quantify the information conveyed by large neural ensembles. We found that, in the visual cortex, correlated noise constrained signalling for ensembles with 800–1,300 neurons. Several noise components of the ensemble dynamics grew proportionally to the ensemble size and the encoded visual signals, revealing the predicted information-limiting correlations
12
–
14
. Notably, visual signals were perpendicular to the largest noise mode, which therefore did not limit coding fidelity. The information-limiting noise modes were approximately ten times smaller and concordant with mouse visual acuity
15
. Therefore, cortical design principles appear to enhance coding accuracy by restricting around 90% of noise fluctuations to modes that do not limit signalling fidelity, whereas much weaker correlated noise modes inherently bound sensory discrimination.
A microscopy system that enables simultaneous recording from hundreds of neurons in the mouse visual cortex reveals that the brain enhances its coding capacity by representing visual inputs in dimensions perpendicular to correlated noise.
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