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AJNR Awards, New Junior Editors, and more. Read the latest AJNR updates


Improved Turnaround Times | Median time to first decision: 12 days

Index by author

February 01, 2020; Volume 41,Issue 2
  • A
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  • F
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  • K
  • L
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  1. Tkach, J.A.

    1. EDITOR'S CHOICEAdult Brain
      You have access
      Spiral T1 Spin-Echo for Routine Postcontrast Brain MRI Exams: A Multicenter Multireader Clinical Evaluation
      M.B. Ooi, Z. Li, R.K. Robison, D. Wang, A.G. Anderson, N.R. Zwart, A. Bakhru, S. Nagaraj, T. Mathews, S. Hey, J.J. Koonen, I.E. Dimitrov, H.T. Friel, Q. Lu, M. Obara, I. Saha, H. Wang, Y. Wang, Y. Zhao, M. Temkit, H.H. Hu, T.L. Chenevert, O. Togao, J.A. Tkach, U.D. Nagaraj, M.C. Pinho, R.K. Gupta, J.E. Small, M.M. Kunst, J.P. Karis, J.B. Andre, J.H. Miller, N.K. Pinter and J.G. Pipe
      American Journal of Neuroradiology February 2020, 41 (2) 238-245; DOI: https://doi.org/10.3174/ajnr.A6409

      The authors report a multicenter multireader study that was designed to compare spiral with standard-of-care Cartesian postcontrast structural brain MR imaging on the basis of relative performance in 10 metrics of image quality, artifact prevalence, and diagnostic benefit. Seven clinical sites acquired 88 total subjects. For each subject, sites acquired 2 postcontrast MR imaging scans: a spiral 2D T1 spin-echo, and 1 of 4 routine Cartesian 2D T1 spin-echo/TSE scans. Nine neuroradiologists independently reviewed each subject, with the matching pair of spiral and Cartesian scans compared side-by-side, and scored the subject on 10 image-quality metrics. Spiral was superior to Cartesian in 7 of 10 metrics (flow artifact mitigation, SNR, GM/WM contrast, image sharpness, lesion conspicuity, preference for diagnosing abnormal enhancement, and overall intracranial image quality), comparable in 1 of 10 metrics (motion artifacts), and inferior in 2 of 10 metrics (susceptibility artifacts, overall extracranial image quality). Spiral 2D T1 spin-echo for routine structural brain MR imaging is feasible in the clinic with conventional scanners and was preferred by neuroradiologists for overall postcontrast intracranial evaluation.

  2. Togao, O.

    1. EDITOR'S CHOICEAdult Brain
      You have access
      Spiral T1 Spin-Echo for Routine Postcontrast Brain MRI Exams: A Multicenter Multireader Clinical Evaluation
      M.B. Ooi, Z. Li, R.K. Robison, D. Wang, A.G. Anderson, N.R. Zwart, A. Bakhru, S. Nagaraj, T. Mathews, S. Hey, J.J. Koonen, I.E. Dimitrov, H.T. Friel, Q. Lu, M. Obara, I. Saha, H. Wang, Y. Wang, Y. Zhao, M. Temkit, H.H. Hu, T.L. Chenevert, O. Togao, J.A. Tkach, U.D. Nagaraj, M.C. Pinho, R.K. Gupta, J.E. Small, M.M. Kunst, J.P. Karis, J.B. Andre, J.H. Miller, N.K. Pinter and J.G. Pipe
      American Journal of Neuroradiology February 2020, 41 (2) 238-245; DOI: https://doi.org/10.3174/ajnr.A6409

      The authors report a multicenter multireader study that was designed to compare spiral with standard-of-care Cartesian postcontrast structural brain MR imaging on the basis of relative performance in 10 metrics of image quality, artifact prevalence, and diagnostic benefit. Seven clinical sites acquired 88 total subjects. For each subject, sites acquired 2 postcontrast MR imaging scans: a spiral 2D T1 spin-echo, and 1 of 4 routine Cartesian 2D T1 spin-echo/TSE scans. Nine neuroradiologists independently reviewed each subject, with the matching pair of spiral and Cartesian scans compared side-by-side, and scored the subject on 10 image-quality metrics. Spiral was superior to Cartesian in 7 of 10 metrics (flow artifact mitigation, SNR, GM/WM contrast, image sharpness, lesion conspicuity, preference for diagnosing abnormal enhancement, and overall intracranial image quality), comparable in 1 of 10 metrics (motion artifacts), and inferior in 2 of 10 metrics (susceptibility artifacts, overall extracranial image quality). Spiral 2D T1 spin-echo for routine structural brain MR imaging is feasible in the clinic with conventional scanners and was preferred by neuroradiologists for overall postcontrast intracranial evaluation.

  3. Toyama, H.

    1. Adult Brain
      You have access
      Visualization of Lenticulostriate Arteries on CT Angiography Using Ultra-High-Resolution CT Compared with Conventional-Detector CT
      K. Murayama, S. Suzuki, H. Nagata, J. Oda, I. Nakahara, K. Katada, K. Fujii and H. Toyama
      American Journal of Neuroradiology February 2020, 41 (2) 219-223; DOI: https://doi.org/10.3174/ajnr.A6377
  4. Tufan, F.

    1. Pediatric Neuroimaging
      You have access
      Frequency, Extent, and Correlates of Superficial Siderosis and Ependymal Siderosis in Premature Infants with Germinal Matrix Hemorrhage: An SWI Study
      M.S. Albayram, G. Smith, F. Tufan and M.D. Weiss
      American Journal of Neuroradiology February 2020, 41 (2) 331-337; DOI: https://doi.org/10.3174/ajnr.A6371
  5. Tuncyurek, Ö.

    1. Adult Brain
      You have access
      Effects of Susceptibility Artifacts on Perfusion MRI in Patients with Primary Brain Tumor: A Comparison of Arterial Spin-Labeling versus DSC
      H. Maral, E. Ertekin, Ö. Tunçyürek and Y. Özsunar
      American Journal of Neuroradiology February 2020, 41 (2) 255-261; DOI: https://doi.org/10.3174/ajnr.A6384
  6. Uetani, H.

    1. Adult Brain
      You have access
      Metal Artifact Reduction in Head CT Performed for Patients with Deep Brain Stimulation Devices: Effectiveness of a Single-Energy Metal Artifact Reduction Algorithm
      Y. Nagayama, S. Tanoue, S. Oda, D. Sakabe, T. Emoto, M. Kidoh, H. Uetani, A. Sasao, T. Nakaura, O. Ikeda, K. Yamada and Y. Yamashita
      American Journal of Neuroradiology February 2020, 41 (2) 231-237; DOI: https://doi.org/10.3174/ajnr.A6375
  7. Vannier, S.

    1. Neurointervention
      You have access
      DWI-Based Algorithm to Predict Disability in Patients Treated with Thrombectomy for Acute Stroke
      H. Raoult, M.V. Lassalle, B. Parat, C. Rousseau, F. Eugène, S. Vannier, S. Evain, A. Le Bras, T. Ronziere, J.C. Ferre, J.Y. Gauvrit and B. Laviolle
      American Journal of Neuroradiology February 2020, 41 (2) 274-279; DOI: https://doi.org/10.3174/ajnr.A6379
  8. Vargas, M.I.

    1. Letter
      You have access
      Intraoperative MR and Synthetic Imaging
      M.I. Vargas, B.M.A. Delattre, P. Vayssiere, M. Corniola and T. Meling
      American Journal of Neuroradiology February 2020, 41 (2) E4-E6; DOI: https://doi.org/10.3174/ajnr.A6373
  9. Vayssiere, P.

    1. Letter
      You have access
      Intraoperative MR and Synthetic Imaging
      M.I. Vargas, B.M.A. Delattre, P. Vayssiere, M. Corniola and T. Meling
      American Journal of Neuroradiology February 2020, 41 (2) E4-E6; DOI: https://doi.org/10.3174/ajnr.A6373
  10. Vidal, L.L.M.

    1. Clinical Report
      You have access
      Intra-Arterial Verapamil Treatment in Oral Therapy–Refractory Reversible Cerebral Vasoconstriction Syndrome
      J.M. Ospel, C.H. Wright, R. Jung, L.L.M. Vidal, S. Manjila, G. Singh, D.V. Heck, A. Ray and K.A. Blackham
      American Journal of Neuroradiology February 2020, 41 (2) 293-299; DOI: https://doi.org/10.3174/ajnr.A6378
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American Journal of Neuroradiology: 41 (2)
American Journal of Neuroradiology
Vol. 41, Issue 2
1 Feb 2020
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