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ID 118314
Title Alternative
ラット大脳皮質における電位オシレーターを駆動するための状況に応じた戦略
Author
Fukuda, Takako Tokushima University
Tominaga, Takashi Tokushima Bunri University
Tominaga, Yoko Tokushima Bunri University
Kanayama, Hiroyuki Tokushima University|National Hospital Organization Osaka National Hospital
Kato, Nobuo Kanazawa Medical University
Keywords
visual cortex
oscillation
voltage-oscillator
caffeine
optical recording
Signal propagation
Content Type
Thesis or Dissertation
Description
Information integration in the brain requires functional connectivity between local neural networks. Here, we investigated the interregional coupling mechanism from the viewpoint of oscillations using optical recording methods. Low-frequency electrical stimulation of rat neocortical slices in a caffeine-containing medium induced oscillatory activity between the primary visual cortex (Oc1) and medial secondary visual cortex (Oc2M), in which the oscillation generator was located in the Oc2M and was triggered by a feedforward signal. During to-and-fro oscillatory activity, neural excitation was marked in layer II/III. When the upper layer was disrupted between Oc1 and Oc2M, feedforward signals could propagate through the deep layer and switch on the oscillator in the Oc2M. When the lower layer was disrupted between Oc1 and Oc2M, feedforward signals could propagate through the upper layer and switch on the oscillator in the Oc2M. In the backward direction, neither the upper layer cut nor the lower layer cut disrupted the propagation of the oscillations. In all cases, the horizontal and vertical pathways were used as needed. Fluctuations in the oscillatory waveforms of the local field potential at the upper and lower layers in the Oc2M were reversed, suggesting that the oscillation originated between the two layers. Thus, the neocortex may work as a safety device for interregional communications in an alternative way to drive voltage oscillators in the neocortex.
Journal Title
Neuroscience Research
ISSN
01680102
18728111
NCID
AA10641652
AA11541052
Publisher
Elsevier|Japan Neuroscience Society
Volume
191
Start Page
28
End Page
37
Published Date
2023-01-13
Remark
内容要旨・審査要旨・論文本文の公開
本論文は,著者Takako Fukudaの学位論文として提出され,学位審査・授与の対象となっている。
EDB ID
DOI (Published Version)
URL ( Publisher's Version )
FullText File
language
eng
TextVersion
ETD
MEXT report number
甲第3715号
Diploma Number
甲口第494号
Granted Date
2023-03-23
Degree Name
Doctor of Dental Science
Grantor
Tokushima University
departments
Oral Sciences