Understanding the functional principles of the mammalian cortical circuit is a major challenge in neuroscience. To make progress towards this understanding, one needs to be able to assess the behavioural dynamics of individual neuronal elements of this circuit. Manual whole-cell recording (WCR) in vivo is recognised as the “gold standard” method for electrophysiological interrogation of individual neurons. It allows subthreshold and suprathreshold signals to be recorded, perturbations to be applied through current injection, and DNA vectors to be directly delivered into the patched cells as part of the pipette internal solution. Unfortunately, the WCR technique for in vivo application is a “blind” procedure and has a low-throughput. In addi...
While electrophysiological recordings from visually identified cell bodies or dendrites are routinel...
While electrophysiological recordings from visually identified cell bodies or dendrites are routinel...
Here we describe an approach for making targeted patch-clamp recordings from single neurons in vivo,...
Whole-cell patch-clamp electrophysiological recording is a powerful technique for studying cellular ...
Whole-cell patch-clamp electrophysiological recording is a powerful technique for studying cellular ...
AbstractWhile electrophysiological recordings from visually identified cell bodies or dendrites are ...
While electrophysiological recordings from visually identified cell bodies or dendrites are routinel...
While electrophysiological recordings from visually identified cell bodies or dendrites are routinel...
While electrophysiological recordings from visually identified cell bodies or dendrites are routinel...
Our ability to probe the immense complexity of the brain, with its approximately 80 billion neurons,...
Patch clamp electrophysiology has transformed research in the life sciences over the last few decade...
Although we know a great deal about monosynaptic connectivity, transmission and integration in the m...
Although we know a great deal about monosynaptic connectivity, transmission and integration in the m...
Although we know a great deal about monosynaptic connectivity, transmission and integration in the m...
© 2017 Elsevier Inc. Targeted patch-clamp recording is a powerful method for characterizing visually...
While electrophysiological recordings from visually identified cell bodies or dendrites are routinel...
While electrophysiological recordings from visually identified cell bodies or dendrites are routinel...
Here we describe an approach for making targeted patch-clamp recordings from single neurons in vivo,...
Whole-cell patch-clamp electrophysiological recording is a powerful technique for studying cellular ...
Whole-cell patch-clamp electrophysiological recording is a powerful technique for studying cellular ...
AbstractWhile electrophysiological recordings from visually identified cell bodies or dendrites are ...
While electrophysiological recordings from visually identified cell bodies or dendrites are routinel...
While electrophysiological recordings from visually identified cell bodies or dendrites are routinel...
While electrophysiological recordings from visually identified cell bodies or dendrites are routinel...
Our ability to probe the immense complexity of the brain, with its approximately 80 billion neurons,...
Patch clamp electrophysiology has transformed research in the life sciences over the last few decade...
Although we know a great deal about monosynaptic connectivity, transmission and integration in the m...
Although we know a great deal about monosynaptic connectivity, transmission and integration in the m...
Although we know a great deal about monosynaptic connectivity, transmission and integration in the m...
© 2017 Elsevier Inc. Targeted patch-clamp recording is a powerful method for characterizing visually...
While electrophysiological recordings from visually identified cell bodies or dendrites are routinel...
While electrophysiological recordings from visually identified cell bodies or dendrites are routinel...
Here we describe an approach for making targeted patch-clamp recordings from single neurons in vivo,...