том 285 издание 3 страницы 914-922

T1ρ-weighted Dynamic Glucose-enhanced MR Imaging in the Human Brain

Тип публикацииJournal Article
Дата публикации2017-06-19
scimago Q1
wos Q1
white level БС1
SJR3.856
CiteScore19.2
Impact factor15.2
ISSN00338419, 15271315
Radiology, Nuclear Medicine and imaging
Краткое описание
Purpose To evaluate the ability to detect intracerebral regions of increased glucose concentration at T1ρ-weighted dynamic glucose-enhanced (DGE) magnetic resonance (MR) imaging at 7.0 T. Materials and Methods This prospective study was approved by the institutional review board. Nine patients with newly diagnosed glioblastoma and four healthy volunteers were included in this study from October 2015 to July 2016. Adiabatically prepared chemical exchange-sensitive spin-lock imaging was performed with a 7.0-T whole-body unit with a temporal resolution of approximately 7 seconds, yielding the time-resolved DGE contrast. T1ρ-weighted DGE MR imaging was performed with injection of 100 mL of 20% d-glucose via the cubital vein. Glucose enhancement, given by the relative signal intensity change at T1ρ-weighted MR imaging (DGEρ), was quantitatively investigated in brain gray matter versus white matter of healthy volunteers and in tumor tissue versus normal-appearing white matter of patients with glioblastoma. The median signal intensities of the assessed brain regions were compared by using the Wilcoxon rank-sum test. Results In healthy volunteers, the median signal intensity in basal ganglia gray matter (DGEρ = 4.59%) was significantly increased compared with that in white matter tissue (DGEρ = 0.65%) (P = .028). In patients, the median signal intensity in the glucose-enhanced tumor region as displayed on T1ρ-weighted DGE images (DGEρ = 2.02%) was significantly higher than that in contralateral normal-appearing white matter (DGEρ = 0.08%) (P < .0001). Conclusion T1ρ-weighted DGE MR imaging in healthy volunteers and patients with newly diagnosed, untreated glioblastoma enabled visualization of brain glucose physiology and pathophysiologically increased glucose uptake and may have the potential to provide information about glucose metabolism in tumor tissue. © RSNA, 2017 Online supplemental material is available for this article.
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Paech D. et al. T1ρ-weighted Dynamic Glucose-enhanced MR Imaging in the Human Brain // Radiology. 2017. Vol. 285. No. 3. pp. 914-922.
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Paech D., Schuenke P., Koehler C., Windschuh J., Mundiyanapurath S., Bickelhaupt S., Bonekamp D., Bäumer P., BACHERT P., Ladd M. E., Bendszus M., Wick W., Unterberg A., Schlemmer H., Longo D., Radbruch A. T1ρ-weighted Dynamic Glucose-enhanced MR Imaging in the Human Brain // Radiology. 2017. Vol. 285. No. 3. pp. 914-922.
RIS |
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TY - JOUR
DO - 10.1148/radiol.2017162351
UR - https://doi.org/10.1148/radiol.2017162351
TI - T1ρ-weighted Dynamic Glucose-enhanced MR Imaging in the Human Brain
T2 - Radiology
AU - Paech, Daniel
AU - Schuenke, Patrick
AU - Koehler, Christina
AU - Windschuh, Johannes
AU - Mundiyanapurath, Sibu
AU - Bickelhaupt, Sebastian
AU - Bonekamp, David
AU - Bäumer, Philipp
AU - BACHERT, PETER
AU - Ladd, Mark E.
AU - Bendszus, Martin
AU - Wick, Wolfgang
AU - Unterberg, Andreas
AU - Schlemmer, Heinz-Peter
AU - Longo, Dario
AU - Radbruch, Alexander
PY - 2017
DA - 2017/06/19
PB - Radiological Society of North America (RSNA)
SP - 914-922
IS - 3
VL - 285
PMID - 28628422
SN - 0033-8419
SN - 1527-1315
ER -
BibTex |
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@article{2017_Paech,
author = {Daniel Paech and Patrick Schuenke and Christina Koehler and Johannes Windschuh and Sibu Mundiyanapurath and Sebastian Bickelhaupt and David Bonekamp and Philipp Bäumer and PETER BACHERT and Mark E. Ladd and Martin Bendszus and Wolfgang Wick and Andreas Unterberg and Heinz-Peter Schlemmer and Dario Longo and Alexander Radbruch},
title = {T1ρ-weighted Dynamic Glucose-enhanced MR Imaging in the Human Brain},
journal = {Radiology},
year = {2017},
volume = {285},
publisher = {Radiological Society of North America (RSNA)},
month = {jun},
url = {https://doi.org/10.1148/radiol.2017162351},
number = {3},
pages = {914--922},
doi = {10.1148/radiol.2017162351}
}
MLA
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Paech, Daniel, et al. “T1ρ-weighted Dynamic Glucose-enhanced MR Imaging in the Human Brain.” Radiology, vol. 285, no. 3, Jun. 2017, pp. 914-922. https://doi.org/10.1148/radiol.2017162351.
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