Search Results - "Utsuzawa, S."

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  1. 1

    An ultra-broadband low-frequency magnetic resonance system by Mandal, S., Utsuzawa, S., Cory, D.G., Hürlimann, M., Poitzsch, M., Song, Y.-Q.

    Published in Journal of magnetic resonance (1997) (01-05-2014)
    “…[Display omitted] •Describes an ultra-broadband low-frequency MR system using an un-tuned sample coil.•Similar sensitivity to tuned systems over a wide…”
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    Journal Article
  2. 2

    Correlation between acoustic emission, water status and xylem embolism in pine wilt disease by Fukuda, K, Utsuzawa, S, Sakaue, D

    Published in Tree physiology (01-07-2007)
    “…The occurrence of cavitation events and embolism during the latent, early stage and the late developmental stages of pine wilt disease was monitored…”
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    Journal Article
  3. 3

    Use of magnetic resonance microscopy for the nondestructive observation of xylem cavitation caused by pine wilt disease by Utsuzawa, S, Fukuda, K, Sakaue, D

    Published in Phytopathology (01-07-2005)
    “…The development of xylem cavitation caused by pine wilt disease was visualized nondestructively with a compact magnetic resonance (MR) microscope system. A…”
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    Journal Article
  4. 4

    Super-parallel MR microscope by Matsuda, Yoshimasa, Utsuzawa, Shin, Kurimoto, Takeaki, Haishi, Tomoyuki, Yamazaki, Yukako, Kose, Katsumi, Anno, Izumi, Marutani, Mitsuhiro

    Published in Magnetic resonance in medicine (01-07-2003)
    “…A super‐parallel MR microscope in which multiple (up to 100) samples can be imaged simultaneously at high spatial resolution is described. The system consists…”
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    Journal Article
  5. 5

    Development of a compact MRI system for trabecular bone volume fraction measurements by Kose, Katsumi, Matsuda, Yoshimasa, Kurimoto, Takeaki, Hashimoto, Seitarou, Yamazaki, Yukako, Haishi, Tomoyuki, Utsuzawa, Shin, Yoshioka, Hiroshi, Okada, Shigemasu, Aoki, Masaaki, Tsuzaki, Tsuyoshi

    Published in Magnetic resonance in medicine (01-08-2004)
    “…A compact MRI system for measuring trabecular bone volume fraction (TBVF) of the calcaneus was developed with the use of a 0.21 T permanent magnet and portable…”
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    Journal Article