[HTML][HTML] Depth-specific optogenetic control in vivo with a scalable, high-density μLED neural probe

R Scharf, T Tsunematsu, N McAlinden, MD Dawson… - Scientific reports, 2016 - nature.com
Controlling neural circuits is a powerful approach to uncover a causal link between neural
activity and behaviour. Optogenetics has been widely adopted by the neuroscience …

Depth-specific optogenetic control in vivo with a scalable, high density µLED neural probe

R Scharf, T Tsunematsu, N McAlinden… - Scientific …, 2016 - pureportal.strath.ac.uk
Controlling neural circuits is a powerful approach to uncover a causal link between neural
activity and behaviour. Optogenetics has been widely adopted by the neuroscience …

Depth-specific optogenetic control in vivo with a scalable, high-density μLED neural probe

R Scharf, T Tsunematsu, N McAlinden… - Scientific …, 2016 - ui.adsabs.harvard.edu
Controlling neural circuits is a powerful approach to uncover a causal link between neural
activity and behaviour. Optogenetics has been widely adopted by the neuroscience …

Depth-specific optogenetic control in vivo with a scalable, high-density μLED neural probe.

R Scharf, T Tsunematsu, N McAlinden… - Scientific …, 2016 - europepmc.org
Controlling neural circuits is a powerful approach to uncover a causal link between neural
activity and behaviour. Optogenetics has been widely adopted by the neuroscience …

Depth-specific optogenetic control in vivo with a scalable, high density µLED neural probe

R Scharf, T Tsunematsu, N McAlinden… - Scientific …, 2016 - strathprints.strath.ac.uk
Controlling neural circuits is a powerful approach to uncover a causal link between neural
activity and behaviour. Optogenetics has been widely adopted by the neuroscience …

[HTML][HTML] Depth-specific optogenetic control in vivo with a scalable, high-density μLED neural probe

R Scharf, T Tsunematsu, N McAlinden… - Scientific …, 2016 - ncbi.nlm.nih.gov
Controlling neural circuits is a powerful approach to uncover a causal link between neural
activity and behaviour. Optogenetics has been widely adopted by the neuroscience …

Depth-specific optogenetic control in vivo with a scalable, high-density μLED neural probe

R Scharf, T Tsunematsu, N McAlinden… - Scientific …, 2016 - pubmed.ncbi.nlm.nih.gov
Controlling neural circuits is a powerful approach to uncover a causal link between neural
activity and behaviour. Optogenetics has been widely adopted by the neuroscience …

Depth-specific optogenetic control in vivo with a scalable, high-density μLED neural probe

R Scharf, T Tsunematsu, N McAlinden, MD Dawson… - Scientific Reports, 2016 - cir.nii.ac.jp
抄録< jats: title> Abstract</jats: title>< jats: p> Controlling neural circuits is a powerful
approach to uncover a causal link between neural activity and behaviour. Optogenetics has …

[PDF][PDF] Depth-specific optogenetic control in vivowith a scalable, high-density μLED neural probe

R Scharf, T Tsunematsu, N McAlinden, MD Dawson… - cyberleninka.org
Controlling neural circuits is a powerful approach to uncover a causal link between neural
activity and behaviour. Optogenetics has been widely adopted by the neuroscience …

[PDF][PDF] Depth-specific optogenetic control in vivowith a scalable, high-density μLED neural probe

R Scharf, T Tsunematsu, N McAlinden, MD Dawson… - researchgate.net
Controlling neural circuits is a powerful approach to uncover a causal link between neural
activity and behaviour. Optogenetics has been widely adopted by the neuroscience …