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Magnetic Resonance in Medicine

Cover image for Vol. 66 Issue 2

August 2011

Volume 66, Issue 2

Pages spcone–spcone, 307–606

  1. Cover Image

    1. Top of page
    2. Cover Image
    3. Masthead
    4. Spectroscopic Methodology - Communication
    5. Spectroscopic Methodology - Full Papers
    6. Spectroscopic Methodology - Note
    7. Imaging Methodology - Communications
    8. Imaging Methodology - Full Papers
    9. Imaging Methodology - Notes
    10. Preclinical and Clinical Imaging - Review
    11. Preclinical and Clinical Imaging - Communication
    12. Preclinical and Clinical Imaging - Full Papers
    13. Computer Processing and Modeling - Full Papers
    14. Hardware and Instrumentation - Full Papers
    15. Hardware and Instrumentation - Note
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      The functional microstructure of tendon collagen revealed by high-field MRI (page spcone)

      Kelsey M. Mountain, Thorarin A. Bjarnason, Jeff F. Dunn and John R. Matyas

      Version of Record online: 3 AUG 2011 | DOI: 10.1002/mrm.23173

  2. Masthead

    1. Top of page
    2. Cover Image
    3. Masthead
    4. Spectroscopic Methodology - Communication
    5. Spectroscopic Methodology - Full Papers
    6. Spectroscopic Methodology - Note
    7. Imaging Methodology - Communications
    8. Imaging Methodology - Full Papers
    9. Imaging Methodology - Notes
    10. Preclinical and Clinical Imaging - Review
    11. Preclinical and Clinical Imaging - Communication
    12. Preclinical and Clinical Imaging - Full Papers
    13. Computer Processing and Modeling - Full Papers
    14. Hardware and Instrumentation - Full Papers
    15. Hardware and Instrumentation - Note
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  3. Spectroscopic Methodology - Communication

    1. Top of page
    2. Cover Image
    3. Masthead
    4. Spectroscopic Methodology - Communication
    5. Spectroscopic Methodology - Full Papers
    6. Spectroscopic Methodology - Note
    7. Imaging Methodology - Communications
    8. Imaging Methodology - Full Papers
    9. Imaging Methodology - Notes
    10. Preclinical and Clinical Imaging - Review
    11. Preclinical and Clinical Imaging - Communication
    12. Preclinical and Clinical Imaging - Full Papers
    13. Computer Processing and Modeling - Full Papers
    14. Hardware and Instrumentation - Full Papers
    15. Hardware and Instrumentation - Note
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  4. Spectroscopic Methodology - Full Papers

    1. Top of page
    2. Cover Image
    3. Masthead
    4. Spectroscopic Methodology - Communication
    5. Spectroscopic Methodology - Full Papers
    6. Spectroscopic Methodology - Note
    7. Imaging Methodology - Communications
    8. Imaging Methodology - Full Papers
    9. Imaging Methodology - Notes
    10. Preclinical and Clinical Imaging - Review
    11. Preclinical and Clinical Imaging - Communication
    12. Preclinical and Clinical Imaging - Full Papers
    13. Computer Processing and Modeling - Full Papers
    14. Hardware and Instrumentation - Full Papers
    15. Hardware and Instrumentation - Note
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      Real-time motion and B0 corrected single voxel spectroscopy using volumetric navigators (pages 314–323)

      Aaron T. Hess, M. Dylan Tisdall, Ovidiu C. Andronesi, Ernesta M. Meintjes and André J. W. van der Kouwe

      Version of Record online: 4 MAR 2011 | DOI: 10.1002/mrm.22805

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      Test-retest reliability and reproducibility of short-echo-time spectroscopic imaging of human brain at 3T (pages 324–332)

      Charles Gasparovic, Edward J. Bedrick, Andrew R. Mayer, Ronald A. Yeo, HongJi Chen, Eswar Damaraju, Vince D. Calhoun and Rex E. Jung

      Version of Record online: 28 FEB 2011 | DOI: 10.1002/mrm.22858

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  5. Spectroscopic Methodology - Note

    1. Top of page
    2. Cover Image
    3. Masthead
    4. Spectroscopic Methodology - Communication
    5. Spectroscopic Methodology - Full Papers
    6. Spectroscopic Methodology - Note
    7. Imaging Methodology - Communications
    8. Imaging Methodology - Full Papers
    9. Imaging Methodology - Notes
    10. Preclinical and Clinical Imaging - Review
    11. Preclinical and Clinical Imaging - Communication
    12. Preclinical and Clinical Imaging - Full Papers
    13. Computer Processing and Modeling - Full Papers
    14. Hardware and Instrumentation - Full Papers
    15. Hardware and Instrumentation - Note
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  6. Imaging Methodology - Communications

    1. Top of page
    2. Cover Image
    3. Masthead
    4. Spectroscopic Methodology - Communication
    5. Spectroscopic Methodology - Full Papers
    6. Spectroscopic Methodology - Note
    7. Imaging Methodology - Communications
    8. Imaging Methodology - Full Papers
    9. Imaging Methodology - Notes
    10. Preclinical and Clinical Imaging - Review
    11. Preclinical and Clinical Imaging - Communication
    12. Preclinical and Clinical Imaging - Full Papers
    13. Computer Processing and Modeling - Full Papers
    14. Hardware and Instrumentation - Full Papers
    15. Hardware and Instrumentation - Note
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      X-PROP: A fast and robust diffusion-weighted propeller technique (pages 341–347)

      Zhiqiang Li, James G. Pipe, Chu-Yu Lee, Josef P. Debbins, John P. Karis and Donglai Huo

      Version of Record online: 9 JUN 2011 | DOI: 10.1002/mrm.23033

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      A B1-insensitive high resolution 2D T1 mapping pulse sequence for dGEMRIC of the HIP at 3 Tesla (pages 348–355)

      Riccardo Lattanzi, Christian Glaser, Artem V. Mikheev, Catherine Petchprapa, David J. Mossa, Soterios Gyftopoulos, Henry Rusinek, Michael Recht and Daniel Kim

      Version of Record online: 17 JUN 2011 | DOI: 10.1002/mrm.23035

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  7. Imaging Methodology - Full Papers

    1. Top of page
    2. Cover Image
    3. Masthead
    4. Spectroscopic Methodology - Communication
    5. Spectroscopic Methodology - Full Papers
    6. Spectroscopic Methodology - Note
    7. Imaging Methodology - Communications
    8. Imaging Methodology - Full Papers
    9. Imaging Methodology - Notes
    10. Preclinical and Clinical Imaging - Review
    11. Preclinical and Clinical Imaging - Communication
    12. Preclinical and Clinical Imaging - Full Papers
    13. Computer Processing and Modeling - Full Papers
    14. Hardware and Instrumentation - Full Papers
    15. Hardware and Instrumentation - Note
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      Apparent exchange rate mapping with diffusion MRI (pages 356–365)

      Samo Lasič, Markus Nilsson, Jimmy Lätt, Freddy Ståhlberg and Daniel Topgaard

      Version of Record online: 28 MAR 2011 | DOI: 10.1002/mrm.22782

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      Real-time optical motion correction for diffusion tensor imaging (pages 366–378)

      Murat Aksoy, Christoph Forman, Matus Straka, Stefan Skare, Samantha Holdsworth, Joachim Hornegger and Roland Bammer

      Version of Record online: 22 MAR 2011 | DOI: 10.1002/mrm.22787

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      MRI with zero echo time: Hard versus sweep pulse excitation (pages 379–389)

      Markus Weiger, Klaas P. Pruessmann and Franciszek Hennel

      Version of Record online: 4 MAR 2011 | DOI: 10.1002/mrm.22799

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      Quantitative mapping of T2 using partial spoiling (pages 410–418)

      Oliver Bieri, Klaus Scheffler, Goetz H. Welsch, S. Trattnig, Tallal C. Mamisch and Carl Ganter

      Version of Record online: 9 MAR 2011 | DOI: 10.1002/mrm.22807

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      Interleaved variable density sampling with a constrained parallel imaging reconstruction for dynamic contrast-enhanced MR angiography (pages 428–436)

      Kang Wang, Reed F. Busse, James H. Holmes, Philip J. Beatty, Jean H. Brittain, Christopher J. Francois, Scott B. Reeder, Jiang Du and Frank R. Korosec

      Version of Record online: 28 FEB 2011 | DOI: 10.1002/mrm.22814

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      Phase enhancement for time-of-flight and flow-sensitive black-blood MR angiography (pages 437–447)

      Tokunori Kimura, Masato Ikedo and Shuhei Takemoto

      Version of Record online: 28 FEB 2011 | DOI: 10.1002/mrm.22831

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      Motion correction using coil arrays (MOCCA) for free-breathing cardiac cine MRI (pages 467–475)

      Peng Hu, Susie Hong, Mehdi H. Moghari, Beth Goddu, Lois Goepfert, Kraig V. Kissinger, Thomas H. Hauser, Warren J. Manning and Reza Nezafat

      Version of Record online: 24 FEB 2011 | DOI: 10.1002/mrm.22854

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      Ultrashort TE MR imaging of bovine cortical bone: The effect of water loss on the T1 and T2* relaxation times (pages 476–482)

      Nima Kokabi, Won Bae, Eric Diaz, Christine B. Chung, Graeme M. Bydder and Jiang Du

      Version of Record online: 28 FEB 2011 | DOI: 10.1002/mrm.22859

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  8. Imaging Methodology - Notes

    1. Top of page
    2. Cover Image
    3. Masthead
    4. Spectroscopic Methodology - Communication
    5. Spectroscopic Methodology - Full Papers
    6. Spectroscopic Methodology - Note
    7. Imaging Methodology - Communications
    8. Imaging Methodology - Full Papers
    9. Imaging Methodology - Notes
    10. Preclinical and Clinical Imaging - Review
    11. Preclinical and Clinical Imaging - Communication
    12. Preclinical and Clinical Imaging - Full Papers
    13. Computer Processing and Modeling - Full Papers
    14. Hardware and Instrumentation - Full Papers
    15. Hardware and Instrumentation - Note
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      TROMBONE: T1-relaxation-oblivious mapping of transmit radio-frequency field (B1) for MRI at high magnetic fields (pages 483–491)

      Roman Fleysher, Lazar Fleysher, Matilde Inglese and Daniel Sodickson

      Version of Record online: 9 MAR 2011 | DOI: 10.1002/mrm.22804

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      Detection of neuronal current MRI in human without BOLD contamination (pages 492–497)

      Qingfei Luo, Xia Jiang and Jia-Hong Gao

      Version of Record online: 24 FEB 2011 | DOI: 10.1002/mrm.22842

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      Arterial input functions determined from MR signal magnitude and phase for quantitative dynamic contrast-enhanced MRI in the human pelvis (pages 498–504)

      Greg O. Cron, Claire Foottit, Thomas E. Yankeelov, Leonard I. Avruch, Mark E. Schweitzer and Ian Cameron

      Version of Record online: 28 FEB 2011 | DOI: 10.1002/mrm.22856

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  9. Preclinical and Clinical Imaging - Review

    1. Top of page
    2. Cover Image
    3. Masthead
    4. Spectroscopic Methodology - Communication
    5. Spectroscopic Methodology - Full Papers
    6. Spectroscopic Methodology - Note
    7. Imaging Methodology - Communications
    8. Imaging Methodology - Full Papers
    9. Imaging Methodology - Notes
    10. Preclinical and Clinical Imaging - Review
    11. Preclinical and Clinical Imaging - Communication
    12. Preclinical and Clinical Imaging - Full Papers
    13. Computer Processing and Modeling - Full Papers
    14. Hardware and Instrumentation - Full Papers
    15. Hardware and Instrumentation - Note
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      Tumor imaging using hyperpolarized 13C magnetic resonance spectroscopy (pages 505–519)

      Kevin M. Brindle, Sarah E. Bohndiek, Ferdia A. Gallagher and Mikko I. Kettunen

      Version of Record online: 9 JUN 2011 | DOI: 10.1002/mrm.22999

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  10. Preclinical and Clinical Imaging - Communication

    1. Top of page
    2. Cover Image
    3. Masthead
    4. Spectroscopic Methodology - Communication
    5. Spectroscopic Methodology - Full Papers
    6. Spectroscopic Methodology - Note
    7. Imaging Methodology - Communications
    8. Imaging Methodology - Full Papers
    9. Imaging Methodology - Notes
    10. Preclinical and Clinical Imaging - Review
    11. Preclinical and Clinical Imaging - Communication
    12. Preclinical and Clinical Imaging - Full Papers
    13. Computer Processing and Modeling - Full Papers
    14. Hardware and Instrumentation - Full Papers
    15. Hardware and Instrumentation - Note
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      The functional microstructure of tendon collagen revealed by high-field MRI (pages 520–527)

      Kelsey M. Mountain, Thorarin A. Bjarnason, Jeff F. Dunn and John R. Matyas

      Version of Record online: 14 JUN 2011 | DOI: 10.1002/mrm.23036

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  11. Preclinical and Clinical Imaging - Full Papers

    1. Top of page
    2. Cover Image
    3. Masthead
    4. Spectroscopic Methodology - Communication
    5. Spectroscopic Methodology - Full Papers
    6. Spectroscopic Methodology - Note
    7. Imaging Methodology - Communications
    8. Imaging Methodology - Full Papers
    9. Imaging Methodology - Notes
    10. Preclinical and Clinical Imaging - Review
    11. Preclinical and Clinical Imaging - Communication
    12. Preclinical and Clinical Imaging - Full Papers
    13. Computer Processing and Modeling - Full Papers
    14. Hardware and Instrumentation - Full Papers
    15. Hardware and Instrumentation - Note
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      Ischemia-reperfusion injury in rat skeletal muscle assessed with T2-weighted and dynamic contrast-enhanced MRI (pages 528–537)

      S. Loerakker, C. W. J. Oomens, E. Manders, T. Schakel, D. L. Bader, F. P. T. Baaijens, K. Nicolay and G. J. Strijkers

      Version of Record online: 25 FEB 2011 | DOI: 10.1002/mrm.22801

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      Feasibility of ultra-short echo time (UTE) magnetic resonance imaging for identification of carious lesions (pages 538–545)

      Anna-Katinka Bracher, Christian Hofmann, Axel Bornstedt, Saïd Boujraf, Erich Hell, Johannes Ulrici, Axel Spahr, Bernd Haller and Volker Rasche

      Version of Record online: 28 FEB 2011 | DOI: 10.1002/mrm.22828

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      Anatomical, blood oxygenation level-dependent, and blood flow MRI of nonhuman primate (baboon) retina (pages 546–554)

      Yi Zhang, Hsiao-Ying Wey, Oscar San Emeterio Nateras, Qi Peng, Bryan H. De La Garza and Timothy Q. Duong

      Version of Record online: 28 FEB 2011 | DOI: 10.1002/mrm.22853

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  12. Computer Processing and Modeling - Full Papers

    1. Top of page
    2. Cover Image
    3. Masthead
    4. Spectroscopic Methodology - Communication
    5. Spectroscopic Methodology - Full Papers
    6. Spectroscopic Methodology - Note
    7. Imaging Methodology - Communications
    8. Imaging Methodology - Full Papers
    9. Imaging Methodology - Notes
    10. Preclinical and Clinical Imaging - Review
    11. Preclinical and Clinical Imaging - Communication
    12. Preclinical and Clinical Imaging - Full Papers
    13. Computer Processing and Modeling - Full Papers
    14. Hardware and Instrumentation - Full Papers
    15. Hardware and Instrumentation - Note
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      Combined use of T2-weighted MRI and T1-weighted dynamic contrast–enhanced MRI in the automated analysis of breast lesions (pages 555–564)

      Neha Bhooshan, Maryellen Giger, Li Lan, Hui Li, Angelica Marquez, Akiko Shimauchi and Gillian M. Newstead

      Version of Record online: 26 APR 2011 | DOI: 10.1002/mrm.22800

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      Atlas-based knee cartilage assessment (pages 575–581)

      Julio Carballido-Gamio and Sharmila Majumdar

      Version of Record online: 24 FEB 2011 | DOI: 10.1002/mrm.22836

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  13. Hardware and Instrumentation - Full Papers

    1. Top of page
    2. Cover Image
    3. Masthead
    4. Spectroscopic Methodology - Communication
    5. Spectroscopic Methodology - Full Papers
    6. Spectroscopic Methodology - Note
    7. Imaging Methodology - Communications
    8. Imaging Methodology - Full Papers
    9. Imaging Methodology - Notes
    10. Preclinical and Clinical Imaging - Review
    11. Preclinical and Clinical Imaging - Communication
    12. Preclinical and Clinical Imaging - Full Papers
    13. Computer Processing and Modeling - Full Papers
    14. Hardware and Instrumentation - Full Papers
    15. Hardware and Instrumentation - Note
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      A 20-channel receive-only mouse array coil for a 3 T clinical MRI system (pages 582–593)

      Boris Keil, Graham C. Wiggins, Christina Triantafyllou, Lawrence L. Wald, Florian M. Meise, Laura M. Schreiber, Klaus J. Klose and Johannes T. Heverhagen

      Version of Record online: 23 MAR 2011 | DOI: 10.1002/mrm.22791

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      Design and evaluation of an RF front-end for 9.4 T human MRI (pages 594–602)

      G. Shajan, Jens Hoffmann, Juliane Budde, Gregor Adriany, Kamil Ugurbil and Rolf Pohmann

      Version of Record online: 4 MAR 2011 | DOI: 10.1002/mrm.22808

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  14. Hardware and Instrumentation - Note

    1. Top of page
    2. Cover Image
    3. Masthead
    4. Spectroscopic Methodology - Communication
    5. Spectroscopic Methodology - Full Papers
    6. Spectroscopic Methodology - Note
    7. Imaging Methodology - Communications
    8. Imaging Methodology - Full Papers
    9. Imaging Methodology - Notes
    10. Preclinical and Clinical Imaging - Review
    11. Preclinical and Clinical Imaging - Communication
    12. Preclinical and Clinical Imaging - Full Papers
    13. Computer Processing and Modeling - Full Papers
    14. Hardware and Instrumentation - Full Papers
    15. Hardware and Instrumentation - Note
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      Relaxivity of gadolinium complexes detected by atomic magnetometry (pages 603–606)

      David J. Michalak, Shoujun Xu, Thomas J. Lowery, C. W. Crawford, Micah Ledbetter, Louis-S. Bouchard, David E. Wemmer, Dmitry Budker and Alexander Pines

      Version of Record online: 23 MAR 2011 | DOI: 10.1002/mrm.22811

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