Maintaining a stable estimate of head direction requires both self-motion (idiothetic) information and environmental (allothetic) anchoring. In unfamiliar or dark environments idiothetic drive can maintain a rough estimate of heading but is subject to inaccuracy, visual information is required to stabilize the head direction estimate. When learning to associate visual scenes with head angle, animals do not have access to the ‘ground truth' of their head direction, and must use egocentrically derived imprecise head direction estimates. We use both discriminative and generative methods of visual processing to learn these associations without extracting explicit landmarks from a natural visual scene, finding all are sufficiently capable at pro...
In the last decade the outlines of the neural structures subserving the sense of direction have begu...
Head direction (HD) cell responses are thought to be derived from a combination of internal (or idio...
Head direction (HD) cells in the rodent brain can use visual information about surrounding landmark...
Maintaining a stable estimate of head direction requires both self-motion (idiothetic) information a...
The head direction (HD) system in mammals contains neurons that fire to represent the direction the ...
The head direction (HD) system in mammals contains neurons that fire to represent the direction the ...
Head direction (HD) cell responses are thought to be derived from a combination of internal (or idio...
Head direction cells signal the orientation of the head in the horizontal plane. This thesis shows ...
Institute for Adaptive and Neural ComputationHow does the brain convert sensory information into abs...
Thesis (Ph.D.)--Boston University, 2012PLEASE NOTE: Boston University Libraries did not receive an A...
How the brain combines information from different sensory modalities and of differing reliability is...
Complex spatial representations in the hippocampal formation and related cortical areas require inpu...
How the brain combines information from different sensory modalities and of differing reliability is...
Continuous attractor networks require calibration. Computational models of the head direction (HD) s...
Calibration of movement tracking systems is a difficult problem faced by both animals and robots. Th...
In the last decade the outlines of the neural structures subserving the sense of direction have begu...
Head direction (HD) cell responses are thought to be derived from a combination of internal (or idio...
Head direction (HD) cells in the rodent brain can use visual information about surrounding landmark...
Maintaining a stable estimate of head direction requires both self-motion (idiothetic) information a...
The head direction (HD) system in mammals contains neurons that fire to represent the direction the ...
The head direction (HD) system in mammals contains neurons that fire to represent the direction the ...
Head direction (HD) cell responses are thought to be derived from a combination of internal (or idio...
Head direction cells signal the orientation of the head in the horizontal plane. This thesis shows ...
Institute for Adaptive and Neural ComputationHow does the brain convert sensory information into abs...
Thesis (Ph.D.)--Boston University, 2012PLEASE NOTE: Boston University Libraries did not receive an A...
How the brain combines information from different sensory modalities and of differing reliability is...
Complex spatial representations in the hippocampal formation and related cortical areas require inpu...
How the brain combines information from different sensory modalities and of differing reliability is...
Continuous attractor networks require calibration. Computational models of the head direction (HD) s...
Calibration of movement tracking systems is a difficult problem faced by both animals and robots. Th...
In the last decade the outlines of the neural structures subserving the sense of direction have begu...
Head direction (HD) cell responses are thought to be derived from a combination of internal (or idio...
Head direction (HD) cells in the rodent brain can use visual information about surrounding landmark...