SummaryAn increasingly powerful approach for studying brain circuits relies on targeting genetically encoded sensors and effectors to specific cell types. However, current approaches for this are still limited in functionality and specificity. Here we utilize several intersectional strategies to generate multiple transgenic mouse lines expressing high levels of novel genetic tools with high specificity. We developed driver and double reporter mouse lines and viral vectors using the Cre/Flp and Cre/Dre double recombinase systems and established a new, retargetable genomic locus, TIGRE, which allowed the generation of a large set of Cre/tTA-dependent reporter lines expressing fluorescent proteins, genetically encoded calcium, voltage, or glut...
Systematic genetic access to GABAergic cell types will facilitate studying the function and developm...
SummaryTargeting genetically encoded tools for neural circuit dissection to relevant cellular popula...
Genetic access to small, reproducible sets of neurons is key to an understanding of the functional w...
available in PMC 2016 March 04An increasingly powerful approach for studying brain circuits relies o...
SummaryAn increasingly powerful approach for studying brain circuits relies on targeting genetically...
In this issue of Neuron, Madisen et al. (2015) report the construction of several new transgenic mou...
In this issue of Neuron, Madisen et al. (2015) report the construction of several new transgenic mou...
The mammalian retina harbors over 100 different cell types. To understand how retinal circuits work,...
The ability to label, visualize, and manipulate subsets of neurons is critical for elucidating the s...
The ability to label, visualize, and manipulate subsets of neurons is critical for elucidating the s...
SummaryOptogenetics has been enthusiastically pursued in recent neuroscience research, and the causa...
The ability to label, visualize, and manipulate subsets of neurons is critical for elucidating the s...
We describe a method that combines Cre-recombinase knockin mice and viral-mediated gene transfer to ...
© The Author(s), 2013. This article is distributed under the terms of the Creative Commons Attributi...
Development of tools to manipulate activity of specific neurons is important for dissecting the func...
Systematic genetic access to GABAergic cell types will facilitate studying the function and developm...
SummaryTargeting genetically encoded tools for neural circuit dissection to relevant cellular popula...
Genetic access to small, reproducible sets of neurons is key to an understanding of the functional w...
available in PMC 2016 March 04An increasingly powerful approach for studying brain circuits relies o...
SummaryAn increasingly powerful approach for studying brain circuits relies on targeting genetically...
In this issue of Neuron, Madisen et al. (2015) report the construction of several new transgenic mou...
In this issue of Neuron, Madisen et al. (2015) report the construction of several new transgenic mou...
The mammalian retina harbors over 100 different cell types. To understand how retinal circuits work,...
The ability to label, visualize, and manipulate subsets of neurons is critical for elucidating the s...
The ability to label, visualize, and manipulate subsets of neurons is critical for elucidating the s...
SummaryOptogenetics has been enthusiastically pursued in recent neuroscience research, and the causa...
The ability to label, visualize, and manipulate subsets of neurons is critical for elucidating the s...
We describe a method that combines Cre-recombinase knockin mice and viral-mediated gene transfer to ...
© The Author(s), 2013. This article is distributed under the terms of the Creative Commons Attributi...
Development of tools to manipulate activity of specific neurons is important for dissecting the func...
Systematic genetic access to GABAergic cell types will facilitate studying the function and developm...
SummaryTargeting genetically encoded tools for neural circuit dissection to relevant cellular popula...
Genetic access to small, reproducible sets of neurons is key to an understanding of the functional w...