研究者業績

南 一幸

ミナミ カズユキ  (minami kazuyuki)

基本情報

所属
藤田医科大学 医療科学部 教育企画ユニット 教育企画分野 教授
学位
博士(医学)

J-GLOBAL ID
200901036417982267
researchmap会員ID
1000226782

論文

 36
  • Masanao Kobayashi, Yusei Nishihara, Tomonobu Haba, Yuta Matsunaga, Kazuyuki Minami, Yasuki Asada
    Radiation Protection Dosimetry 198(6) 339-348 2022年4月27日  
    Abstract During fetal computed tomography (CT) imaging, because of differences in the pregnancy period and scanning conditions, different doses of radiation are absorbed by the fetus. We propose a correction coefficient for determining the fetal size-specific dose estimate (SSDE) from the CT dose index (CTDI) displayed on the console at tube voltages of 80–135 kVp. The CTDIs corresponding to pregnant women and fetuses were evaluated using a Monte Carlo (MC) simulation, and the ratio of these CTDIs was defined as the Fetus-factor. When the effective diameter of a fetus was approximately 10 cm, the Fetus-factor was 1.0. The estimated pregnant SSDE was multiplied by the Fetus-factor to estimate the fetal SSDE, which was compared with the fetal dose obtained by the MC simulation of the image of the fetal CT examination. The fetal dose could be estimated with an error of 31.5% in fetal examinations conducted using helical CT.
  • Masanao Kobayashi, Tomonobu Haba, Sayaka Suzuki, Yusei Nishihara, Yasuki Asada, Kazuyuki Minami
    Physical and Engineering Sciences in Medicine 2020年9月14日  
    <title>Abstract</title> Organ-effective modulation (OEM) is a computed tomography scanning technique that reduces the exposure dose to organs at risk. Ultrasonography is commonly used for prenatal imaging, but its reliability is reported to be limited. Radiography and computed tomography (CT) are reliable but pose risk of radiation exposure to the pregnant woman and her fetus. Although there are many reports on the exposure dose associated with fetal CT scans, no reports exist on OEM use in fetal CT scans. We measured the basic characteristics of organ-effective modulation (X-ray output modulation angle, maximum X-ray output modulation rate, total X-ray output modulation rate, and noise modulation) and used them in a Monte Carlo simulation to evaluate the effect of this technique on fetal CT scans in terms of image quality and exposure dose to the pregnant woman and fetus. Using ImPACT MC software, Monte Carlo simulations of OEMON and OEMOFF were run on 8 cases involving fetal CT scans. We confirmed that the organ-effective modulation X-ray output modulation angle was 160°; the X-ray output modulation rate increased with increasing tube current; and no modulation occurred at tube currents of 80 mA or below. Our findings suggest that OEM has only a minimal effect in reducing organ exposure in pregnant women; therefore, it should be used on the anterior side (OEMON,front) to reduce the exposure dose to the fetus.
  • Yuta Matsunaga, Yuya Kondo, Kenichi Kobayashi, Masanao Kobayashi, Kazuyuki Minami, Shoichi Suzuki, Koichi Chida, Yasuki Asada
    Radiation Protection Dosimetry 188(2) 261-269 2020年6月13日  査読有り
    <title>Abstract</title> The aim of this study was to investigate differences in volume computed tomography dose index (CTDIvol) and dose-length product (DLP) values according to facility size in Japan. A questionnaire survey was sent to 3000 facilities throughout Japan. Data from each facility were collected including bed number, computed tomography (CT) scan parameters employed and the CTDIvol and/or DLP values displayed on the CT scanner during each examination. The CTDIvol and DLP for 11 adult and 6 paediatric CT examinations were surveyed. Comparison of CTDIvol and DLP values of each examination according to facility size revealed key differences in CT dose between small and large facilities. This study highlights the importance of lowering the dose of coronary artery examination with contrast agent in smaller facilities and of lowering the dose of adult and paediatric head CT without contrast agent in larger facilities. The results of this study are valid in Japan.
  • Minami Kazuyuki, Ishida Toshiyuki, Asada Yasuki, Shirakawa Seiji, Kobayashi Masanao, Suzuki Shoichi, Konishi Tomimasa, Mimura Hidenori
    X-RAY SPECTROMETRY 2019年7月30日  査読有り
  • Masanao Kobayashi, Yasuki Asada, Tomonobu Haba, Yuta Matsunaga, Kosuke Matsubara, Kazuyuki Minami
    Radiation Protection Dosimetry 2019年3月  査読有り

MISC

 54

書籍等出版物

 16

講演・口頭発表等

 15

共同研究・競争的資金等の研究課題

 1

教育内容・方法の工夫(授業評価等を含む)

 1
  • 件名
    放射線関係法規の講義で用いる教科書は内容量が多く、理解しにくい(読みにくい)等の観点から、学生の理解促進のために内容を凝縮・整理した資料を作成する等の工夫を実施している。
    開始年月日
    2012/04/01
    終了年月日
    2016/07/31
    概要
    放射線関連の法令には、診療放射線技師法、医療法、放射線障害防止法、電離放射線障害防止規則等があり、特に放射線障害防止法の法令文は内容量も多く、関連箇所に文章が飛ぶため、学生が理解する上で混乱することが多いという観点から実施。

作成した教科書、教材、参考書

 1
  • 件名
    放射線関係法規(3学年)の講義資料と放射線保健管理学実験(4学年)の実験テキスト
    開始年月日
    2012/04/01
    終了年月日
    2016/07/31
    概要
    放射線関係法規の講義では、放射線障害防止法令(B5サイズ:146頁)における資料を作成。放射線保健管理学実験では、放射線安全管理を実践する上で役立つテーマを選別し、その手技の習得が目的。