Animals can navigate vast distances and often display behaviours or activities that indicate a detailed, internal spatial representation of their surrounding environment or a ‘cognitive map’. Over a century of behavioural research on spatial navigation in humans and animals has greatly increased our understanding of how this highly complex feat is achieved. In turn this has inspired half a century of electrophysiological spatial navigation and memory research which has further advanced our understanding of the brain. In particular, three functional cell types have been suggested to underlie cognitive mapping processes; place cells, head direction cells and grid cells. However, there are numerous other spatially modulated neurons in the brai...
Study of the neural code for space in rodents has many insights to offer for how mammals, including ...
This chapter argues that advances in cognitive neuroscience provide valuable insights into the organ...
Study of the neural code for space in rodents has many insights to offer for how mammals, including ...
Brain processing of spatial information is a very prolific area of research in neuroscience. Since t...
This chapter reviews attempts to determine how activity of neurons in the place system — place cells...
Single-neuron spatial coding is one of the most prominent and intensively studied brain functions. B...
How do we know where we are? Orientation in space is key to our daily existence as we follow familia...
Since the first place cell was recorded and the cognitive-map theory was subsequently formulated, in...
The brain is able to construct internal representations that correspond to external spatial coordina...
Since the first place cell was recorded and the cognitive-map theory was subsequently formulated, in...
neural systems are known to encode self-location in the brain: place cells in the hippocampus encode...
Humans have a remarkable capacity for generalizing experiences to novel situations. In a brain netwo...
Animals are capable of navigating through an environment. This requires them to recognise, remember ...
Animals are capable of navigating through an environment. This requires them to recognise, remember ...
The brain is able to construct internal representations that correspond to external spatial coordina...
Study of the neural code for space in rodents has many insights to offer for how mammals, including ...
This chapter argues that advances in cognitive neuroscience provide valuable insights into the organ...
Study of the neural code for space in rodents has many insights to offer for how mammals, including ...
Brain processing of spatial information is a very prolific area of research in neuroscience. Since t...
This chapter reviews attempts to determine how activity of neurons in the place system — place cells...
Single-neuron spatial coding is one of the most prominent and intensively studied brain functions. B...
How do we know where we are? Orientation in space is key to our daily existence as we follow familia...
Since the first place cell was recorded and the cognitive-map theory was subsequently formulated, in...
The brain is able to construct internal representations that correspond to external spatial coordina...
Since the first place cell was recorded and the cognitive-map theory was subsequently formulated, in...
neural systems are known to encode self-location in the brain: place cells in the hippocampus encode...
Humans have a remarkable capacity for generalizing experiences to novel situations. In a brain netwo...
Animals are capable of navigating through an environment. This requires them to recognise, remember ...
Animals are capable of navigating through an environment. This requires them to recognise, remember ...
The brain is able to construct internal representations that correspond to external spatial coordina...
Study of the neural code for space in rodents has many insights to offer for how mammals, including ...
This chapter argues that advances in cognitive neuroscience provide valuable insights into the organ...
Study of the neural code for space in rodents has many insights to offer for how mammals, including ...