マカクザルのfNIRSにおける至適な入射-検出プローブ間距離の検討

The optimal SD distance for functional near infrared spectroscopy of macaque monkey has investigated with the simulation calculations of light propagation in the sophisticated head model. T1- and T2-weighted images of monkeys (N=2) were segmented into 6 regions. Optical properties assigned to each r...

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Published inTransactions of Japanese Society for Medical and Biological Engineering Vol. 54Annual; no. 28PM-Abstract; p. S366
Main Authors 松田, 圭司, 肥後, 範行, 山田, 亨, 川口, 拓之
Format Journal Article
LanguageJapanese
Published 公益社団法人 日本生体医工学会 2016
Japanese Society for Medical and Biological Engineering
Online AccessGet full text
ISSN1347-443X
1881-4379
DOI10.11239/jsmbe.54Annual.S366

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Abstract The optimal SD distance for functional near infrared spectroscopy of macaque monkey has investigated with the simulation calculations of light propagation in the sophisticated head model. T1- and T2-weighted images of monkeys (N=2) were segmented into 6 regions. Optical properties assigned to each region were referred from literatures. A pair of probes was located on the scalp surface above the motor cortex with changing the SD distance (10, 15, 20 and 25 mm) and the direction (perpendicular or parallel to central sulcus). The analytical solution of the diffusion equation was calculated by the finite element method. The detected intensity and partial optical path length in the gray matter was decreased and increased by the increase of the SD distance, respectively. The product of the intensity and the path length showed high value for the SD distance was 15 mm regardless of subjects and directions.
AbstractList The optimal SD distance for functional near infrared spectroscopy of macaque monkey has investigated with the simulation calculations of light propagation in the sophisticated head model. T1- and T2-weighted images of monkeys (N=2) were segmented into 6 regions. Optical properties assigned to each region were referred from literatures. A pair of probes was located on the scalp surface above the motor cortex with changing the SD distance (10, 15, 20 and 25 mm) and the direction (perpendicular or parallel to central sulcus). The analytical solution of the diffusion equation was calculated by the finite element method. The detected intensity and partial optical path length in the gray matter was decreased and increased by the increase of the SD distance, respectively. The product of the intensity and the path length showed high value for the SD distance was 15 mm regardless of subjects and directions.
Author 肥後, 範行
山田, 亨
川口, 拓之
松田, 圭司
Author_FL Higo Noriyuki
Kawaguchi Hiroshi
Matsuda Keiji
Yamada Toru
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DocumentTitleAlternate Investigation of the appropriate source-detector distance in functional near-infrared spectroscopy of macaque monkey brain
DocumentTitle_FL Investigation of the appropriate source-detector distance in functional near-infrared spectroscopy of macaque monkey brain
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Title マカクザルのfNIRSにおける至適な入射-検出プローブ間距離の検討
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