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Cited 22 time in webofscience Cited 25 time in scopus
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MAGNETIC RESONANCE IMAGING OF THE CANINE BRAIN AT 7 T

Authors
Kang, Byeong-TeckKo, Ki-JinJang, Dong-PyoHan, Jae-YongLim, Chae-YoungPark, ChulYoo, Jong-HyunKim, Ju-WonJung, Dong-InKim, Young-BoWoo, Eung-JeCho, Zang-HeePark, Hee-Myung
Issue Date
Nov-2009
Publisher
WILEY
Keywords
7 T; brain; dog; magnetic resonance imaging
Citation
VETERINARY RADIOLOGY & ULTRASOUND, v.50, no.6, pp.615 - 621
Indexed
SCIE
SCOPUS
Journal Title
VETERINARY RADIOLOGY & ULTRASOUND
Volume
50
Number
6
Start Page
615
End Page
621
URI
https://scholarworks.bwise.kr/gnu/handle/sw.gnu/26115
DOI
10.1111/j.1740-8261.2009.01591.x
ISSN
1058-8183
Abstract
The purpose of this study was to describe relevant canine brain structures as seen on T2-weighted images following magnetic resonance (MR) imaging at 7 T and to compare the results with imaging at 1.5 T. Imaging was performed on five healthy laboratory beagle dogs using 1.5 and 7 T clinical scanners. At 1.5 T, spin echo images were acquired, while gradient echo images were acquired at 3 T. Image quality and conspicuity of anatomic structures were evaluated qualitatively by direct comparison of the images obtained from the two different magnetic fields. The signal-to-nose ratio (SNR) and contrast-to-noise ratio (CNR) were calculated and compared between 1.5 and 7 T. The T2-weighted images at 7 T provided good spatial and contrast resolution for the identification of clinically relevant brain anatomy; these images provided better delineation and conspicuity of the brain stem and cerebellar structures, which were difficult to unequivocally identify at 1.5 T. However, frontal and parietal lobe and the trigeminal nerve were difficult to identify at 7 T due to susceptibility artifact. The SNR and CNR of the images at 7 T were significantly increased up to 318% and 715% compared with the 1.5 T images. If some disadvantages of 7 T imaging, such as susceptibility artifacts, technical difficulties, and high cost, can be improved, 7 T clinical MR imaging could provide a good experimental and diagnostic tool for the evaluation of canine brain disorders.
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