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Research ArticleBrain
Open Access

MR Imaging–Based Correction for Partial Volume Effect Improves Detectability of Intractable Epileptogenic Foci on Iodine 123 Iomazenil Brain SPECT Images: An Extended Study with a Larger Sample Size

H. Kato, K. Matsuda, K. Baba, E. Shimosegawa, K. Isohashi, M. Imaizumi and J. Hatazawa
American Journal of Neuroradiology December 2012, 33 (11) 2088-2094; DOI: https://doi.org/10.3174/ajnr.A3121
H. Kato
aFrom the Department of Nuclear Medicine and Tracer Kinetics (H.K., E.S., K.I., J.H.), Osaka University Graduate School of Medicine, Osaka, Japan
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K. Matsuda
bNational Epilepsy Center (K.M., K.B.), Shizuoka Institute of Epilepsy and Neurological Disorders, Shizuoka, Japan
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K. Baba
bNational Epilepsy Center (K.M., K.B.), Shizuoka Institute of Epilepsy and Neurological Disorders, Shizuoka, Japan
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E. Shimosegawa
aFrom the Department of Nuclear Medicine and Tracer Kinetics (H.K., E.S., K.I., J.H.), Osaka University Graduate School of Medicine, Osaka, Japan
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K. Isohashi
aFrom the Department of Nuclear Medicine and Tracer Kinetics (H.K., E.S., K.I., J.H.), Osaka University Graduate School of Medicine, Osaka, Japan
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M. Imaizumi
cWorld Premier International Immunology Frontier Research Center (M.I.), Osaka University, Osaka, Japan
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J. Hatazawa
aFrom the Department of Nuclear Medicine and Tracer Kinetics (H.K., E.S., K.I., J.H.), Osaka University Graduate School of Medicine, Osaka, Japan
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American Journal of Neuroradiology: 33 (11)
American Journal of Neuroradiology
Vol. 33, Issue 11
1 Dec 2012
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MR Imaging–Based Correction for Partial Volume Effect Improves Detectability of Intractable Epileptogenic Foci on Iodine 123 Iomazenil Brain SPECT Images: An Extended Study with a Larger Sample Size
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Cite this article
H. Kato, K. Matsuda, K. Baba, E. Shimosegawa, K. Isohashi, M. Imaizumi, J. Hatazawa
MR Imaging–Based Correction for Partial Volume Effect Improves Detectability of Intractable Epileptogenic Foci on Iodine 123 Iomazenil Brain SPECT Images: An Extended Study with a Larger Sample Size
American Journal of Neuroradiology Dec 2012, 33 (11) 2088-2094; DOI: 10.3174/ajnr.A3121

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MR Imaging–Based Correction for Partial Volume Effect Improves Detectability of Intractable Epileptogenic Foci on Iodine 123 Iomazenil Brain SPECT Images: An Extended Study with a Larger Sample Size
H. Kato, K. Matsuda, K. Baba, E. Shimosegawa, K. Isohashi, M. Imaizumi, J. Hatazawa
American Journal of Neuroradiology Dec 2012, 33 (11) 2088-2094; DOI: 10.3174/ajnr.A3121
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This article has been cited by the following articles in journals that are participating in Crossref Cited-by Linking.

  • Upregulated GABA Inhibitory Function in ADHD Children with Child Behavior Checklist–Dysregulation Profile: 123I-Iomazenil SPECT Study
    Shinichiro Nagamitsu, Yushiro Yamashita, Hitoshi Tanigawa, Hiromi Chiba, Hayato Kaida, Masatoshi Ishibashi, Tatsuyuki Kakuma, Paul E. Croarkin, Toyojiro Matsuishi
    Frontiers in Psychiatry 2015 6
  • Altered SPECT 123I-iomazenil Binding in the Cingulate Cortex of Children with Anorexia Nervosa
    Shinichiro Nagamitsu, Rieko Sakurai, Michiko Matsuoka, Hiromi Chiba, Shuichi Ozono, Hitoshi Tanigawa, Yushiro Yamashita, Hayato Kaida, Masatoshi Ishibashi, Tatsuki Kakuma, Paul E. Croarkin, Toyojiro Matsuishi
    Frontiers in Psychiatry 2016 7
  • Nuclear imaging for localization and surgical outcome prediction in epilepsy: A review of latest discoveries and future perspectives
    Chanan Sukprakun, Supatporn Tepmongkol
    Frontiers in Neurology 2022 13
  • Impaired neuronal integrity in traumatic brain injury detected by 123I-iomazenil single photon emission computed tomography and MRI
    Hiroki Kato, Jyoji Nakagawara, Kenji Hachisuka, Jun Hatazawa, Katsunori Ikoma, Eiichi Suehiro, Hidehiko Iida, Kuniaki Ogasawara, Osamu Iizuka, Sumio Ishiai, Tadashi Ichikawa, Tadashi Nariai, Tetsuya Okazaki, Tohru Shiga, Etsuro Mori
    Journal of Cerebral Blood Flow & Metabolism 2022 42 12
  • Evaluation and Diagnosis of Neuronal Integrity in Diffuse Axonal injury : A <sup>123</sup>I-Iomazenil SPECT and MRI Study
    Hiroki Kato, Etsuro Mori
    Higher Brain Function Research 2024 44 1

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