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Voxel-based statistical analysis of cerebral glucose metabolism in patients with permanent vegetative state after acquired brain injury.

Authors
 Yong Wook Kim  ;  Hyoung Seop Kim  ;  Young-Sil An  ;  Sang Hee Im 
Citation
 CHINESE MEDICAL JOURNAL, Vol.123(20) : 2853-2857, 2010 
Journal Title
CHINESE MEDICAL JOURNAL
ISSN
 0366-6999 
Issue Date
2010
MeSH
Adult ; Brain/metabolism* ; Brain Injuries/metabolism* ; Female ; Fluorodeoxyglucose F18 ; Glucose/metabolism* ; Humans ; Male ; Middle Aged ; Persistent Vegetative State/metabolism*
Abstract
BACKGROUND: Permanent vegetative state is defined as the impaired level of consciousness longer than 12 months after traumatic causes and 3 months after non-traumatic causes of brain injury. Although many studies assessed the cerebral metabolism in patients with acute and persistent vegetative state after brain injury, few studies investigated the cerebral metabolism in patients with permanent vegetative state. In this study, we performed the voxel-based analysis of cerebral glucose metabolism and investigated the relationship between regional cerebral glucose metabolism and the severity of impaired consciousness in patients with permanent vegetative state after acquired brain injury.

METHODS: We compared the regional cerebral glucose metabolism as demonstrated by F-18 fluorodeoxyglucose positron emission tomography from 12 patients with permanent vegetative state after acquired brain injury with those from 12 control subjects. Additionally, covariance analysis was performed to identify regions where decreased changes in regional cerebral glucose metabolism significantly correlated with a decrease of level of consciousness measured by JFK-coma recovery scale. Statistical analysis was performed using statistical parametric mapping.

RESULTS: Compared with controls, patients with permanent vegetative state demonstrated decreased cerebral glucose metabolism in the left precuneus, both posterior cingulate cortices, the left superior parietal lobule (P(corrected) < 0.001), and increased cerebral glucose metabolism in the both cerebellum and the right supramarginal cortices (P(corrected) < 0.001). In the covariance analysis, a decrease in the level of consciousness was significantly correlated with decreased cerebral glucose metabolism in the both posterior cingulate cortices (P(uncorrected) < 0.005).

CONCLUSION: Our findings suggest that the posteromedial parietal cortex, which are part of neural network for consciousness, may be relevant structure for pathophysiological mechanism in patients with permanent vegetative state after acquired brain injury.
Files in This Item:
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DOI
10.3760/cma.j.issn.0366-6999.2010.20.020
Appears in Collections:
1. College of Medicine (의과대학) > Dept. of Rehabilitation Medicine (재활의학교실) > 1. Journal Papers
Yonsei Authors
Kim, Yong Wook(김용욱) ORCID logo https://orcid.org/0000-0002-5234-2454
URI
https://ir.ymlib.yonsei.ac.kr/handle/22282913/102173
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