Difference in enhancement between spin echo and 3-dimensional fast spoiled gradient recalled acquisition in steady state magnetic resonance imaging of brain metastasis at 3-T magnetic resonance imaging
To compare the enhancement of brain metastasis between 3-dimensional fast spoiled gradient recalled acquisition in the steady state (3DFSPGR) and spin echo (SE) T1-weighted imaging at 3-T magnetic resonance imaging. The subjects comprised 18 patients with 81 suspected brain metastases. Axial SE and...
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Published in | Journal of computer assisted tomography Vol. 32; no. 2; p. 313 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
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United States
01.03.2008
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Abstract | To compare the enhancement of brain metastasis between 3-dimensional fast spoiled gradient recalled acquisition in the steady state (3DFSPGR) and spin echo (SE) T1-weighted imaging at 3-T magnetic resonance imaging.
The subjects comprised 18 patients with 81 suspected brain metastases. Axial SE and 3DFSPGR images were obtained before and after gadoteridol injection. The signal intensity of each tumor was measured for each sequence; the enhancement and contrast rates were also calculated.
For equivalent slice thicknesses, the enhancement and contrast rates of the 3DFSPGR images were lower than those of the SE images (<0.05), whereas for the thin slices, the rates were higher for the 3DFSPGR images (P < 0.01).
On 3-T magnetic resonance imaging, the enhancement of 3DFSPGR images was less than that of the SE images under the same conditions, but not to a fatal degree, and thin slice 3DFSPGR imaging is therefore considered to be useful for detecting small lesions, when given a high dose of contrast agent and a suitable scanning delay time. |
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AbstractList | To compare the enhancement of brain metastasis between 3-dimensional fast spoiled gradient recalled acquisition in the steady state (3DFSPGR) and spin echo (SE) T1-weighted imaging at 3-T magnetic resonance imaging.
The subjects comprised 18 patients with 81 suspected brain metastases. Axial SE and 3DFSPGR images were obtained before and after gadoteridol injection. The signal intensity of each tumor was measured for each sequence; the enhancement and contrast rates were also calculated.
For equivalent slice thicknesses, the enhancement and contrast rates of the 3DFSPGR images were lower than those of the SE images (<0.05), whereas for the thin slices, the rates were higher for the 3DFSPGR images (P < 0.01).
On 3-T magnetic resonance imaging, the enhancement of 3DFSPGR images was less than that of the SE images under the same conditions, but not to a fatal degree, and thin slice 3DFSPGR imaging is therefore considered to be useful for detecting small lesions, when given a high dose of contrast agent and a suitable scanning delay time. |
Author | Harada, Masafumi Nishitani, Hiromu Furutani, Kaori Mawlan, Mahmut |
Author_xml | – sequence: 1 givenname: Kaori surname: Furutani fullname: Furutani, Kaori email: nm632934@blue.ocn.ne.jp organization: Department of Radiology, School of Medicine, The University of Tokushima, Tokushima, Japan. nm632934@blue.ocn.ne.jp – sequence: 2 givenname: Masafumi surname: Harada fullname: Harada, Masafumi – sequence: 3 givenname: Mahmut surname: Mawlan fullname: Mawlan, Mahmut – sequence: 4 givenname: Hiromu surname: Nishitani fullname: Nishitani, Hiromu |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/18379324$$D View this record in MEDLINE/PubMed |
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SubjectTerms | Adult Aged Aged, 80 and over Brain Neoplasms - diagnosis Brain Neoplasms - secondary Breast Neoplasms - pathology Carcinoma, Renal Cell - pathology Contrast Media - administration & dosage Female Gadolinium Heterocyclic Compounds Humans Image Enhancement - methods Imaging, Three-Dimensional - methods Lung Neoplasms - pathology Magnetic Resonance Imaging - methods Male Middle Aged Organometallic Compounds Sensitivity and Specificity Thyroid Neoplasms - pathology Time Factors |
Title | Difference in enhancement between spin echo and 3-dimensional fast spoiled gradient recalled acquisition in steady state magnetic resonance imaging of brain metastasis at 3-T magnetic resonance imaging |
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