An improved system for recording the electrical activity of single neurons in the brain of awake, unanesthetized and unrestrained animals is described, including complete details of construction and use. The advantages of this new technique over earlier methods are discussed.Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/23365/1/0000309.pd
This paper describes novel multi-electrode systems that can autonomously position recording electrod...
Introduction ------------ In brain activity recordings, conventional systems require a bunch of ca...
Conventional neural recording systems restrict behavioral experiments to a flat indoor environment c...
A method is described by which a single shaft multiwire microelectrode can be fabricated efficiently...
One of the fundamental challenges in behavioral neurophysiology in awake animals is the steady recor...
One of the fundamental challenges in behavioral neurophysiology in awake animals is the steady recor...
One of the fundamental challenges in behavioral neurophysiology in awake animals is the steady recor...
Simultaneous recording from multiple single neurones presents many technical difficulties. However, ...
Objective. Longitudinal observation of single unit neural activity from large numbers of cortical ne...
AbstractIn neurophysiological research, the recording of brain activity in animals is fundamental. C...
AbstractIntracellular recording is a powerful electrophysiology technique that has revealed much of ...
Background We have developed a novel head-holding device for behaving non-human primates that affor...
he continuous monitoring of electrical brain activity with implanted depth electrodes is essential f...
AbstractWe present a new technique for the simultaneous capture of bioelectrical time signals from t...
BACKGROUND: Large mammals with complex central nervous systems offer new possibilities for translati...
This paper describes novel multi-electrode systems that can autonomously position recording electrod...
Introduction ------------ In brain activity recordings, conventional systems require a bunch of ca...
Conventional neural recording systems restrict behavioral experiments to a flat indoor environment c...
A method is described by which a single shaft multiwire microelectrode can be fabricated efficiently...
One of the fundamental challenges in behavioral neurophysiology in awake animals is the steady recor...
One of the fundamental challenges in behavioral neurophysiology in awake animals is the steady recor...
One of the fundamental challenges in behavioral neurophysiology in awake animals is the steady recor...
Simultaneous recording from multiple single neurones presents many technical difficulties. However, ...
Objective. Longitudinal observation of single unit neural activity from large numbers of cortical ne...
AbstractIn neurophysiological research, the recording of brain activity in animals is fundamental. C...
AbstractIntracellular recording is a powerful electrophysiology technique that has revealed much of ...
Background We have developed a novel head-holding device for behaving non-human primates that affor...
he continuous monitoring of electrical brain activity with implanted depth electrodes is essential f...
AbstractWe present a new technique for the simultaneous capture of bioelectrical time signals from t...
BACKGROUND: Large mammals with complex central nervous systems offer new possibilities for translati...
This paper describes novel multi-electrode systems that can autonomously position recording electrod...
Introduction ------------ In brain activity recordings, conventional systems require a bunch of ca...
Conventional neural recording systems restrict behavioral experiments to a flat indoor environment c...