Showing 281 - 300 results of 1,946 for search '"Magnetic Resonance Imaging"', query time: 0.07s Refine Results
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    Quantitative Correlation at the Molecular Level of Tumor Response to Docetaxel by Multimodal Diffusion-Weighted Magnetic Resonance Imaging and [F]FDG/[F]FLT Positron Emission Tomography by Valerie S. Honndorf, Holger Schmidt, Hans F. Wehrl, Stefan Wiehr, Walter Ehrlichmann, Leticia Quintanilla-Martinez, Hervé Barjat, Sally-Ann Ricketts, Bernd J. Pichler

    Published 2015-01-01
    “…We aimed to quantitatively characterize the treatment effects of docetaxel in the HCT116 xenograft mouse model, applying diffusion-weighted magnetic resonance imaging (MRI) and positron emission tomography (PET) using 2-deoxy-2-[ 18 F]fluoro-D-glucose ([ 18 F]FDG) and 3′-deoxy-3′-[ 18 F]-fluorothymidine ([ 18 F]FLT). …”
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  3. 283

    Identifying etiologies of heart failure using non-contrast cardiac magnetic resonance imaging: cine imaging, T1 and T2 mapping, and texture analysis for T1 mapping by Yasuo Amano, Yasuyuki Suzuki, Xiaoyan Tang, Chisato Ando

    Published 2025-01-01
    “…ObjectiveThe aim of this retrospective study was to evaluate the usefulness of non-contrast cardiac magnetic resonance imaging, including cine imaging, T1 and T2 mapping, and texture analysis for T1 mapping, for identifying etiologies of heart failure (HF).MethodsForty-seven patients with HF were examined using a 1.5 T scanner. …”
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    Comparison of Superparamagnetic and Ultrasmall Superparamagnetic Iron Oxide Cell Labeling for Tracking Green Fluorescent Protein Gene Marker with Negative and Positive Contrast Magnetic Resonance Imaging by Zhuoli Zhang, Rohan Dharmakumar, Nicole Mascheri, Zhaoyang Fan, Shengyong Wu, Debiao Li

    Published 2009-05-01
    “…Labeled cells were successfully imaged with both positive and negative contrast magnetic resonance imaging (MRI). The labeled cells were observed as a narrow band of signal enhancement surrounding signal voids in FLAPS images and were visible as signal voids in T 2 *-weighted images. …”
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  6. 286

    Super paramagnetic iron oxide contrast-enhanced magnetic resonance imaging was useful in differentiating an insulinoma from an accessory spleen: a case report with review of literature by Ema Toyokuni, Hiroshi Okada, Goji Hasegawa, Mayuko Kadono, Sayaka Kato, Mari Yoneda, Michiaki Fukui

    Published 2024-08-01
    “…Contrast-enhanced computed tomography and magnetic resonance imaging (MRI) showed a mass in the splenic hilum; however, its continuity with the pancreas was unclear. …”
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  7. 287

    Magnetic Resonance Imaging Visualization of Vulnerable Atherosclerotic Plaques at the Brachiocephalic Artery of Apolipoprotein E Knockout Mice by the Blood-Pool Contrast Agent B22956/1 by Cinzia Parolini, Marco Busnelli, Giulia S. Ganzetti, Federica Dellera, Stefano Manzini, Eugenio Scanziani, Jason L. Johnson, Cesare R. Sirtori, Giulia Chiesa

    Published 2014-07-01
    “…The aim of this study was to identify, by magnetic resonance imaging (MRI), the ability of the blood-pool contrast agent B22956/1 to detect atherosclerotic plaques developing at the brachiocephalic artery of apolipoprotein E knockout (apoE-KO) mice and to possibly identify vulnerable atherosclerotic lesions. …”
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    F-2-Deoxy-2-Fluoro-D-Glucose Positron Emission Tomography, Computed Tomography, and Magnetic Resonance Imaging for the Detection of Experimental Colorectal Liver Metastases by Gabie M. de Jong, Thijs Hendriks, Robert P. Bleichrodt, Helena M. Dekker, Roel D.M. Mus, Martin Gotthardt, Eric P. Visser, Wim J.G. Oyen, Otto C. Boerman

    Published 2012-03-01
    “…On days 7, 10, and 14 after tumor induction, sequential positron emission tomography (PET), computed tomography (CT), and magnetic resonance imaging (MRI) scans were acquired of each rat. …”
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