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Research ArticleBrain

Conspicuity and Evolution of Lesions in Creutzfeldt-Jakob Disease at Diffusion-Weighted Imaging

Takaki Murata, Yusei Shiga, Shuichi Higano, Shoki Takahashi and Shunji Mugikura
American Journal of Neuroradiology August 2002, 23 (7) 1164-1172;
Takaki Murata
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Yusei Shiga
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Shuichi Higano
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Shoki Takahashi
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Shunji Mugikura
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References

  1. ↵
    Barboriak DP, Provenzale JM, Boyko OB. MR diagnosis of Creutzfeldt-Jakob disease: significance of high signal intensity of the basal ganglia. AJR Am J Roentgenol 1994;162:137–140
    PubMedWeb of Science
  2. ↵
    Finkenstaedt M, Szudra A, Zerr I, et al. MR imaging of Creutzfeldt-Jakob disease. Radiology 1996 Jun;199:793–798
    PubMedWeb of Science
  3. ↵
    Schwaninger M, Winter R, Hacke W, et al. Magnetic resonance imaging in Creutzfeldt-Jakob disease: evidence of focal involvement of the cortex. J Neurol Neurosurg Psychiatry 1997;63:408–409
    FREE Full Text
  4. ↵
    Demaerel P, Baert AL, Vanopdenbosch L, Robberecht W, Dom R. Diffusion-weighted magnetic resonance imaging in Creutzfeldt-Jakob disease. Lancet 1997;349:847–848
    PubMedWeb of Science
  5. ↵
    Bahn MM, Kido DK, Lin W, Pearlman AL. Brain magnetic resonance diffusion abnormalities in Creutzfeldt-Jakob disease. Arch Neurol1997;54:1411–1415
  6. Yee AS, Simon JH, Anderson CA, Sze CI, Filley CM. Diffusion–weighted MRI of right-hemisphere dysfunction in Creutzfeldt-Jakob disease. Neurology 1999;52:1514–1515
    FREE Full Text
  7. ↵
    Na DL, Suh CK, Choi SH, et al. Diffusion-weighted magnetic resonance imaging in probable Creutzfeldt-Jakob disease: a clinical-anatomic correlation. Arch Neurol 1999;56:951–957
    CrossRefPubMedWeb of Science
  8. ↵
    Demaerel P, Heiner L, Robberecht W, Sciot R, Wilms G. Diffusion-weighted MRI in sporadic Creutzfeldt-Jakob disease. Neurology 1999;52:205–208
    Abstract/FREE Full Text
  9. ↵
    Kretzschmar HA, Ironside JW, DeArmond SJ, Tateishi J. Diagnostic criteria for sporadic Creutzfeldt-Jakob disease. Arch Neurol 1996;53:913–920
    CrossRefPubMedWeb of Science
  10. ↵
    Hsich G, Kenney K, Gibbs CJ, Lee KH, Harrington MG. The 14–3-3 brain protein in cerebrospinal fluid as a marker for transmissible spongiform encephalopathies. N Engl J Med 1996;335:924–930
    CrossRefPubMedWeb of Science
  11. ↵
    Wakayama Y, Shibuya S, Kawase J, Sagawa F, Hashizume Y. High neuron-specific enolase level of cerebrospinal fluid in the early stage of Creutzfeldt-Jakob disease. Klin Wochenschr 1987;65:798–801
    CrossRefPubMedWeb of Science
  12. ↵
    Galvez S, Cartier L. Computed tomography findings in 15 cases of Creutzfeldt-Jakob disease with histological verification. J Neurol Neurosurg Psychiatry 1984;47:1244–1246
    Abstract/FREE Full Text
  13. ↵
    Kovanen J, Erkinjuntti T, Iivanainen M et al. Cerebral MR and CT imaging in Creutzfeldt-Jakob disease. J Comput Assist Tomogr 1985;9:125–128
    PubMedWeb of Science
  14. ↵
    Gertz HJ, Henkes H, Cervos-Navarro J. Creutzfeldt-Jakob disease: correlation of MRI and neuropathologic findings. Neurology 1988;38:1481–1482
    Abstract/FREE Full Text
  15. ↵
    Zeidler M, Will RG, Ironside JW, Sellar R, Wardlaw J. Creutzfeldt-Jakob disease and bovine spongiform encephalopathy: magnetic resonance imaging is not a sensitive test for Creutzfeldt-Jakob disease. Br Med J 1996;312:844
    FREE Full Text
  16. ↵
    Gray H. Gray’s Anatomy. 35th ed. London, England: Longman;1973 :976–979
  17. ↵
    Fraser H, Dickinson AG. Targeting of scrapie lesions and spread of agent via the retino-tectal projection. Brain Res1985;346:32–41
  18. Taraboulos A, Jendroska K, Serban D, Yang SL, DeArmond SJ, Prusiner SB. Regional mapping of prion proteins in brain. Proc Natl Acad Sci U S A 1992;89:7620–7624
    Abstract/FREE Full Text
  19. ↵
    Heye N, Cervos-Navarro J. Focal involvement and lateralization in Creutzfeldt-Jakob disease: correlation of clinical, electroencephalographic and neuropathological findings. Eur Neurol 1992;32:289–292
    CrossRefPubMedWeb of Science
  20. ↵
    Burdette JH, Ricci PE, Petitti N, Elster AD. Cerebral infarction: time course of signal intensity changes on diffusion-weighted MR images. AJR Am J Roentgenol 1998;171:791–795
    CrossRefPubMedWeb of Science
  21. ↵
    Urbach H, Klisch J, Wolf HK, Brechtelsbauer D, Gass S. Solymosi L. MRI in sporadic Creutzfeldt-Jakob disease: correlation with clinical and neuropathological data. Neuroradiology 1998;40:65–70
    CrossRefPubMedWeb of Science
  22. ↵
    Ishida S, Sugino M, Koizumi N, et al. Serial MRI in early Creutzfeldt-Jacob disease with a point mutation of prion protein at codon 180. Neuroradiology 1995;37:531–534
    PubMedWeb of Science
  23. ↵
    Kitamoto T, Tateishi J. Human prion diseases with variant prion protein. Philos Trans R Soc Lond B Biol Sci 1994; 29;343:391–398
    PubMedWeb of Science
  24. ↵
    Kovacs GG, Head MW, Bunn T, Laszlo L, Will RG, Ironside JW. Clinicopathological phenotype of codon 129 valine homozygote sporadic Creutzfeldt-Jakob disease. Neuropathol Appl Neurobiol 2000;26:463–472
    CrossRefPubMedWeb of Science
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American Journal of Neuroradiology: 23 (7)
American Journal of Neuroradiology
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Cite this article
Takaki Murata, Yusei Shiga, Shuichi Higano, Shoki Takahashi, Shunji Mugikura
Conspicuity and Evolution of Lesions in Creutzfeldt-Jakob Disease at Diffusion-Weighted Imaging
American Journal of Neuroradiology Aug 2002, 23 (7) 1164-1172;

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Conspicuity and Evolution of Lesions in Creutzfeldt-Jakob Disease at Diffusion-Weighted Imaging
Takaki Murata, Yusei Shiga, Shuichi Higano, Shoki Takahashi, Shunji Mugikura
American Journal of Neuroradiology Aug 2002, 23 (7) 1164-1172;
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