Electrophysiological recording of place cell activity in hippocampal CA1.

More than 40 years ago, O’Keefe & Dostrovsky reported the discovery of place cells which are neurons in the rat hippocampus, believed to be pyramidal cells that show spatial selective activation in certain location of an environment, termed the place field. Since then, place cells have proposed...

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Main Author: Ng, Yi Qiang.
Other Authors: School of Biological Sciences
Format: Final Year Project (FYP)
Language:English
Published: 2013
Subjects:
Online Access:http://hdl.handle.net/10356/54817
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author Ng, Yi Qiang.
author2 School of Biological Sciences
author_facet School of Biological Sciences
Ng, Yi Qiang.
author_sort Ng, Yi Qiang.
collection NTU
description More than 40 years ago, O’Keefe & Dostrovsky reported the discovery of place cells which are neurons in the rat hippocampus, believed to be pyramidal cells that show spatial selective activation in certain location of an environment, termed the place field. Since then, place cells have proposed as the basic components of a cognitive map that are constantly providing an updated representation of the allocentric space and self-location in an environment. As a part of the project of a PhD student, Mr. Mehdi Fallahnezhad, this study focused on the rat’s hippocampus CA1 pyramidal layer. The rats would perform spatial exploration task in both familiar and novel environment while electrophysiological recordings were carried out to identify neuronal cells via the tetrodes of the implanted microdrives. A total of eight neurons were identified to exhibit spatial specific firing and other place cell properties. The neuron displayed stability of place fields within a familiar environment and show remapping of place fields when exposure to a novel environment. This stability of place field extends even after remapping occurred. Thus, suggesting the importance of place cells in spatial memory. The result obtained could serve a platform into further studies of spatial memory.
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spelling ntu-10356/548172023-02-28T18:05:33Z Electrophysiological recording of place cell activity in hippocampal CA1. Ng, Yi Qiang. School of Biological Sciences Ayumu Tashiro Mehdi Fallahnezhad DRNTU::Science::Biological sciences::Human anatomy and physiology::Neurobiology More than 40 years ago, O’Keefe & Dostrovsky reported the discovery of place cells which are neurons in the rat hippocampus, believed to be pyramidal cells that show spatial selective activation in certain location of an environment, termed the place field. Since then, place cells have proposed as the basic components of a cognitive map that are constantly providing an updated representation of the allocentric space and self-location in an environment. As a part of the project of a PhD student, Mr. Mehdi Fallahnezhad, this study focused on the rat’s hippocampus CA1 pyramidal layer. The rats would perform spatial exploration task in both familiar and novel environment while electrophysiological recordings were carried out to identify neuronal cells via the tetrodes of the implanted microdrives. A total of eight neurons were identified to exhibit spatial specific firing and other place cell properties. The neuron displayed stability of place fields within a familiar environment and show remapping of place fields when exposure to a novel environment. This stability of place field extends even after remapping occurred. Thus, suggesting the importance of place cells in spatial memory. The result obtained could serve a platform into further studies of spatial memory. Bachelor of Science in Biomedical Sciences 2013-08-28T01:23:13Z 2013-08-28T01:23:13Z 2013 2013 Final Year Project (FYP) http://hdl.handle.net/10356/54817 en Nanyang Technological University 33 p. application/pdf
spellingShingle DRNTU::Science::Biological sciences::Human anatomy and physiology::Neurobiology
Ng, Yi Qiang.
Electrophysiological recording of place cell activity in hippocampal CA1.
title Electrophysiological recording of place cell activity in hippocampal CA1.
title_full Electrophysiological recording of place cell activity in hippocampal CA1.
title_fullStr Electrophysiological recording of place cell activity in hippocampal CA1.
title_full_unstemmed Electrophysiological recording of place cell activity in hippocampal CA1.
title_short Electrophysiological recording of place cell activity in hippocampal CA1.
title_sort electrophysiological recording of place cell activity in hippocampal ca1
topic DRNTU::Science::Biological sciences::Human anatomy and physiology::Neurobiology
url http://hdl.handle.net/10356/54817
work_keys_str_mv AT ngyiqiang electrophysiologicalrecordingofplacecellactivityinhippocampalca1