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

Index by author

October 01, 2019; Volume 40,Issue 10
  • A
  • B
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  • E
  • F
  • G
  • H
  • I
  • J
  • K
  • L
  • M
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  • Z

  1. Gentles, A.J.

    1. FELLOWS' JOURNAL CLUBAdult Brain
      You have access
      Perfusion MRI-Based Fractional Tumor Burden Differentiates between Tumor and Treatment Effect in Recurrent Glioblastomas and Informs Clinical Decision-Making
      M. Iv, X. Liu, J. Lavezo, A.J. Gentles, R. Ghanem, S. Lummus, D.E. Born, S.G. Soltys, S. Nagpal, R. Thomas, L. Recht and N. Fischbein
      American Journal of Neuroradiology October 2019, 40 (10) 1649-1657; DOI: https://doi.org/10.3174/ajnr.A6211

      Forty-seven patients with high-grade gliomas (primarily glioblastoma) with recurrent contrast-enhancing lesions on DSC-MR imaging were retrospectively evaluated after surgical sampling. Histopathologic examination defined treatment effect versus tumor. Normalized relative CBV thresholds of 1.0 and 1.75 were used to define low, intermediate, and high fractional tumor burden classes in each histopathologically defined group. Performance was assessed with an area under the receiver operating characteristic curve. Mean low fractional tumor burden, high fractional tumor burden, and relative CBV of the contrast-enhancing volume were significantly different between treatment effect and tumor with tumor having significantly higher fractional tumor burden and relative CBV and lower fractional tumor burden. High fractional tumor burden and low fractional tumor burden define fractions of the contrast-enhancing lesion volume with high and low blood volume, respectively, and can differentiate treatment effect from tumor in recurrent glioblastomas. Fractional tumor burden maps can also help to inform clinical decision-making.

  2. Gerardin, E.

    1. Adult Brain
      You have access
      Multinodular and Vacuolating Posterior Fossa Lesions of Unknown Significance
      A. Lecler, J. Bailleux, B. Carsin, H. Adle-Biassette, S. Baloglu, C. Bogey, F. Bonneville, E. Calvier, P.-O. Comby, J.-P. Cottier, F. Cotton, R. Deschamps, C. Diard-Detoeuf, F. Ducray, L. Duron, C. Drissi, M. Elmaleh, J. Farras, J.A. Garcia, E. Gerardin, S. Grand, D.C. Jianu, S. Kremer, N. Magne, M. Mejdoubi, A. Moulignier, M. Ollivier, S. Nagi, M. Rodallec, J.-C. Sadik, N. Shor, T. Tourdias, C. Vandendries, V. Broquet and J. Savatovsky for the ENIGMA Investigation Group (EuropeaN Interdisciplinary Group for MVNT Analysis)
      American Journal of Neuroradiology October 2019, 40 (10) 1689-1694; DOI: https://doi.org/10.3174/ajnr.A6223
  3. Ghanem, R.

    1. FELLOWS' JOURNAL CLUBAdult Brain
      You have access
      Perfusion MRI-Based Fractional Tumor Burden Differentiates between Tumor and Treatment Effect in Recurrent Glioblastomas and Informs Clinical Decision-Making
      M. Iv, X. Liu, J. Lavezo, A.J. Gentles, R. Ghanem, S. Lummus, D.E. Born, S.G. Soltys, S. Nagpal, R. Thomas, L. Recht and N. Fischbein
      American Journal of Neuroradiology October 2019, 40 (10) 1649-1657; DOI: https://doi.org/10.3174/ajnr.A6211

      Forty-seven patients with high-grade gliomas (primarily glioblastoma) with recurrent contrast-enhancing lesions on DSC-MR imaging were retrospectively evaluated after surgical sampling. Histopathologic examination defined treatment effect versus tumor. Normalized relative CBV thresholds of 1.0 and 1.75 were used to define low, intermediate, and high fractional tumor burden classes in each histopathologically defined group. Performance was assessed with an area under the receiver operating characteristic curve. Mean low fractional tumor burden, high fractional tumor burden, and relative CBV of the contrast-enhancing volume were significantly different between treatment effect and tumor with tumor having significantly higher fractional tumor burden and relative CBV and lower fractional tumor burden. High fractional tumor burden and low fractional tumor burden define fractions of the contrast-enhancing lesion volume with high and low blood volume, respectively, and can differentiate treatment effect from tumor in recurrent glioblastomas. Fractional tumor burden maps can also help to inform clinical decision-making.

  4. Goertz, L.

    1. Neurointervention
      You have access
      Low-Profile Intra-Aneurysmal Flow Disruptor WEB 17 versus WEB Predecessor Systems for Treatment of Small Intracranial Aneurysms: Comparative Analysis of Procedural Safety and Feasibility
      L. Goertz, T. Liebig, E. Siebert, M. Herzberg, L. Pennig, M. Schlamann, J. Borggrefe, B. Krischek, F. Dorn and C. Kabbasch
      American Journal of Neuroradiology October 2019, 40 (10) 1766-1772; DOI: https://doi.org/10.3174/ajnr.A6183
  5. Goncalves, S.S.

    1. Adult Brain
      Open Access
      Paracoccidioidomycosis of the Central Nervous System: CT and MR Imaging Findings
      M. Rosa Júnior, A.C. Amorim, I.V. Baldon, L.A. Martins, R.M. Pereira, R.P. Campos, S.S. Gonçalves, T.R.G. Velloso, P. Peçanha and A. Falqueto
      American Journal of Neuroradiology October 2019, 40 (10) 1681-1688; DOI: https://doi.org/10.3174/ajnr.A6203
  6. Grand, S.

    1. Adult Brain
      You have access
      Multinodular and Vacuolating Posterior Fossa Lesions of Unknown Significance
      A. Lecler, J. Bailleux, B. Carsin, H. Adle-Biassette, S. Baloglu, C. Bogey, F. Bonneville, E. Calvier, P.-O. Comby, J.-P. Cottier, F. Cotton, R. Deschamps, C. Diard-Detoeuf, F. Ducray, L. Duron, C. Drissi, M. Elmaleh, J. Farras, J.A. Garcia, E. Gerardin, S. Grand, D.C. Jianu, S. Kremer, N. Magne, M. Mejdoubi, A. Moulignier, M. Ollivier, S. Nagi, M. Rodallec, J.-C. Sadik, N. Shor, T. Tourdias, C. Vandendries, V. Broquet and J. Savatovsky for the ENIGMA Investigation Group (EuropeaN Interdisciplinary Group for MVNT Analysis)
      American Journal of Neuroradiology October 2019, 40 (10) 1689-1694; DOI: https://doi.org/10.3174/ajnr.A6223
  7. Grosse Hokamp, N.

    1. Patient Safety
      You have access
      Virtual Monoenergetic Images from Spectral Detector CT Enable Radiation Dose Reduction in Unenhanced Cranial CT
      R.P. Reimer, D. Flatten, T. Lichtenstein, D. Zopfs, V. Neuhaus, C. Kabbasch, D. Maintz, J. Borggrefe and N. Große Hokamp
      American Journal of Neuroradiology October 2019, 40 (10) 1617-1623; DOI: https://doi.org/10.3174/ajnr.A6220
  8. Gu, Y.

    1. Adult Brain
      Open Access
      Cerebral Damage after Carbon Monoxide Poisoning: A Longitudinal Diffusional Kurtosis Imaging Study
      Y. Zhang, T. Wang, J. Lei, S. Guo, S. Wang, Y. Gu, S. Wang, Y. Dou and X. Zhuang
      American Journal of Neuroradiology October 2019, 40 (10) 1630-1637; DOI: https://doi.org/10.3174/ajnr.A6201
  9. Guo, S.

    1. Adult Brain
      Open Access
      Cerebral Damage after Carbon Monoxide Poisoning: A Longitudinal Diffusional Kurtosis Imaging Study
      Y. Zhang, T. Wang, J. Lei, S. Guo, S. Wang, Y. Gu, S. Wang, Y. Dou and X. Zhuang
      American Journal of Neuroradiology October 2019, 40 (10) 1630-1637; DOI: https://doi.org/10.3174/ajnr.A6201
  10. Gust, J.

    1. Letter
      Open Access
      Chimeric Antigen Receptor T-Cell Neurotoxicity Neuroimaging: More Than Meets the Eye
      J. Gust and G.E. Ishak
      American Journal of Neuroradiology October 2019, 40 (10) E50-E51; DOI: https://doi.org/10.3174/ajnr.A6184
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American Journal of Neuroradiology: 40 (10)
American Journal of Neuroradiology
Vol. 40, Issue 10
1 Oct 2019
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