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Monitoring cerebral oxygenation and local field potential with a variation of isoflurane concentration in a rat model

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Abstract
We aimed to investigate experimentally how anesthetic levels affect cerebral metabolism measured by near-infrared spectroscopy (NIRS) and to identify a robust marker among NIRS parameters to discriminate various stages of anesthetic depth in rats under isoflurane anesthesia. In order to record the hemodynamic changes and local field potential (LFP) in the brain, fiber-optic cannulae and custom-made microelectrodes were implanted in the frontal cortex of the skull. The NIRS and LFP signals were continuously monitored before, during and after isoflurane anesthesia. As isoflurane concentration is reduced, the level of oxyhemoglobin and total hemoglobin concentrations of the frontal cortex decreased gradually, while deoxyhemoglobin increased. The reflectance ratio between 730nm and 850nm and burst suppression ratio (BSR) correspond similarly with the change of oxyhemoglobin during the variation of isoflurane concentration. These results suggest that NIRS signals in addition to EEG may provide a possibility of developing a new anesthetic depth index. © 2016 Optical Society of America.
Author(s)
Choi, Dong-HyukShin, Teo JeonKim, SeonghyunBae, JayyoungCho, DongraeHam, JinsilPark, Ji-YoungKim, Hyoung-IhlJeong, SeongwookLee, Bo ReomKim, Jae Gwan
Issued Date
2016-10
Type
Article
DOI
10.1364/BOE.7.004114
URI
https://scholar.gist.ac.kr/handle/local/14053
Publisher
The Optical Society
Citation
Biomedical Optics Express, v.7, no.10, pp.4114 - 4124
ISSN
2156-7085
Appears in Collections:
Department of Biomedical Science and Engineering > 1. Journal Articles
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