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Temporal structure in neuronal activity during working memory in Macaque parietal cortex

A number of cortical structures are reported to have elevated single unit firing rates sustained throughout the memory period of a working memory task. How the nervous system forms and maintains these memories is unknown but reverberating neuronal network activity is thought to be important. We stud...

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Detalles Bibliográficos
Autores principales: Pesaran, B, Pezaris, J S, Sahami, M, Mitra, P, Andersen, R A
Lenguaje:eng
Publicado: 2000
Materias:
Acceso en línea:http://cds.cern.ch/record/437344
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author Pesaran, B
Pezaris, J S
Sahami, M
Mitra, P
Andersen, R A
author_facet Pesaran, B
Pezaris, J S
Sahami, M
Mitra, P
Andersen, R A
author_sort Pesaran, B
collection CERN
description A number of cortical structures are reported to have elevated single unit firing rates sustained throughout the memory period of a working memory task. How the nervous system forms and maintains these memories is unknown but reverberating neuronal network activity is thought to be important. We studied the temporal structure of single unit (SU) activity and simultaneously recorded local field potential (LFP) activity from area LIP in the inferior parietal lobe of two awake macaques during a memory-saccade task. Using multitaper techniques for spectral analysis, which play an important role in obtaining the present results, we find elevations in spectral power in a 50--90 Hz (gamma) frequency band during the memory period in both SU and LFP activity. The activity is tuned to the direction of the saccade providing evidence for temporal structure that codes for movement plans during working memory. We also find SU and LFP activity are coherent during the memory period in the 50--90 Hz gamma band and no consistent relation is present during simple fixation. Finally, we find organized LFP activity in a 15--25 Hz frequency band that may be related to movement execution and preparatory aspects of the task. Neuronal activity could be used to control a neural prosthesis but SU activity can be hard to isolate with cortical implants. As the LFP is easier to acquire than SU activity, our finding of rich temporal structure in LFP activity related to movement planning and execution may accelerate the development of this medical application.
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spelling cern-4373442019-09-30T06:29:59Zhttp://cds.cern.ch/record/437344engPesaran, BPezaris, J SSahami, MMitra, PAndersen, R ATemporal structure in neuronal activity during working memory in Macaque parietal cortexHealth Physics and Radiation EffectsA number of cortical structures are reported to have elevated single unit firing rates sustained throughout the memory period of a working memory task. How the nervous system forms and maintains these memories is unknown but reverberating neuronal network activity is thought to be important. We studied the temporal structure of single unit (SU) activity and simultaneously recorded local field potential (LFP) activity from area LIP in the inferior parietal lobe of two awake macaques during a memory-saccade task. Using multitaper techniques for spectral analysis, which play an important role in obtaining the present results, we find elevations in spectral power in a 50--90 Hz (gamma) frequency band during the memory period in both SU and LFP activity. The activity is tuned to the direction of the saccade providing evidence for temporal structure that codes for movement plans during working memory. We also find SU and LFP activity are coherent during the memory period in the 50--90 Hz gamma band and no consistent relation is present during simple fixation. Finally, we find organized LFP activity in a 15--25 Hz frequency band that may be related to movement execution and preparatory aspects of the task. Neuronal activity could be used to control a neural prosthesis but SU activity can be hard to isolate with cortical implants. As the LFP is easier to acquire than SU activity, our finding of rich temporal structure in LFP activity related to movement planning and execution may accelerate the development of this medical application.neuro-sys/0005002oai:cds.cern.ch:4373442000-05-10
spellingShingle Health Physics and Radiation Effects
Pesaran, B
Pezaris, J S
Sahami, M
Mitra, P
Andersen, R A
Temporal structure in neuronal activity during working memory in Macaque parietal cortex
title Temporal structure in neuronal activity during working memory in Macaque parietal cortex
title_full Temporal structure in neuronal activity during working memory in Macaque parietal cortex
title_fullStr Temporal structure in neuronal activity during working memory in Macaque parietal cortex
title_full_unstemmed Temporal structure in neuronal activity during working memory in Macaque parietal cortex
title_short Temporal structure in neuronal activity during working memory in Macaque parietal cortex
title_sort temporal structure in neuronal activity during working memory in macaque parietal cortex
topic Health Physics and Radiation Effects
url http://cds.cern.ch/record/437344
work_keys_str_mv AT pesaranb temporalstructureinneuronalactivityduringworkingmemoryinmacaqueparietalcortex
AT pezarisjs temporalstructureinneuronalactivityduringworkingmemoryinmacaqueparietalcortex
AT sahamim temporalstructureinneuronalactivityduringworkingmemoryinmacaqueparietalcortex
AT mitrap temporalstructureinneuronalactivityduringworkingmemoryinmacaqueparietalcortex
AT andersenra temporalstructureinneuronalactivityduringworkingmemoryinmacaqueparietalcortex