In non-human primate (NHP) optogenetics, infecting large cortical areas with viral vectors is often a difficult and time-consuming task. Here, we demonstrate the use of magnetic resonance (MR)-guided convection enhanced delivery (CED) of optogenetic viral vectors into primary somatosensory (S1) and motor (M1) cortices of macaques to obtain efficient, widespread cortical expression of light-sensitive ion channels. Adeno-associated viral (AAV) vectors encoding the red-shifted opsin C1V1 fused to yellow fluorescent protein (EYFP) were injected into the cortex of rhesus macaques under MR-guided CED. Three months post-infusion, epifluorescent imaging confirmed large regions of optogenetic expression (>130 mm2) in M1 and S1 in two macaques. Fu...
Adeno-associated viral (AAV) vectors are widely used for the delivery of genes coding for light-sens...
Optogenetic methods have been widely used in rodent brains, but remain relatively under-developed fo...
SummaryTo understand how brain states and behaviors are generated by neural circuits, it would be us...
Optogenetics is a potentially powerful tool to manipulate and map specific neural circuits. The few ...
Whereas optogenetic techniques have proven successful in their ability to manipulate neuronal popula...
<div><p>Whereas optogenetic techniques have proven successful in their ability to manipulate neurona...
International audienceOver the last 15 years, optogenetics has changed fundamental research in neuro...
Optogenetics and electrical stimulation are routinely used to assess neuronal connectivity. However ...
Crossing the blood-brain barrier in primates is a major obstacle for gene delivery to the brain. Ade...
<div><p>Electrical and pharmacological stimulation methods are commonly used to study neuronal brain...
Electrical and pharmacological stimulation methods are commonly used to study neuronal brain circuit...
Viral vector transfection systems are among the simplest of biological agents with the ability to tr...
In this issue of Neuron, Han and colleagues bring optogenetic methods into use in nonhuman primates ...
To understand how brain states and behaviors are generated by neural circuits, it would be useful to...
To understand how brain states and behaviors are generated by neural circuits, it would be useful to...
Adeno-associated viral (AAV) vectors are widely used for the delivery of genes coding for light-sens...
Optogenetic methods have been widely used in rodent brains, but remain relatively under-developed fo...
SummaryTo understand how brain states and behaviors are generated by neural circuits, it would be us...
Optogenetics is a potentially powerful tool to manipulate and map specific neural circuits. The few ...
Whereas optogenetic techniques have proven successful in their ability to manipulate neuronal popula...
<div><p>Whereas optogenetic techniques have proven successful in their ability to manipulate neurona...
International audienceOver the last 15 years, optogenetics has changed fundamental research in neuro...
Optogenetics and electrical stimulation are routinely used to assess neuronal connectivity. However ...
Crossing the blood-brain barrier in primates is a major obstacle for gene delivery to the brain. Ade...
<div><p>Electrical and pharmacological stimulation methods are commonly used to study neuronal brain...
Electrical and pharmacological stimulation methods are commonly used to study neuronal brain circuit...
Viral vector transfection systems are among the simplest of biological agents with the ability to tr...
In this issue of Neuron, Han and colleagues bring optogenetic methods into use in nonhuman primates ...
To understand how brain states and behaviors are generated by neural circuits, it would be useful to...
To understand how brain states and behaviors are generated by neural circuits, it would be useful to...
Adeno-associated viral (AAV) vectors are widely used for the delivery of genes coding for light-sens...
Optogenetic methods have been widely used in rodent brains, but remain relatively under-developed fo...
SummaryTo understand how brain states and behaviors are generated by neural circuits, it would be us...