シミュレーションデータを用いた逐次近似画像再構成法に対するノイズ除去処理の検証
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| Published in | 日本放射線技術学会雑誌 Vol. 70; no. 8; pp. 773 - 783 |
|---|---|
| Main Authors | , , , |
| Format | Journal Article |
| Language | Japanese |
| Published |
公益社団法人 日本放射線技術学会
2014
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| Subjects | |
| Online Access | Get full text |
| ISSN | 0369-4305 1881-4883 |
| DOI | 10.6009/jjrt.2014_JSRT_70.8.773 |
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| Author | 田中, 崇史 長木, 昭男 松友, 紀和 佐々木, 雅之 |
|---|---|
| Author_xml | – sequence: 1 fullname: 佐々木, 雅之 organization: 九州大学大学院医学研究院保健学部門 – sequence: 1 fullname: 松友, 紀和 organization: 九州大学大学院医学系学府保健学専攻 – sequence: 1 fullname: 田中, 崇史 organization: 倉敷中央病院放射線技術部 – sequence: 1 fullname: 長木, 昭男 organization: 倉敷中央病院放射線技術部 |
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| Copyright | 2014 公益社団法人 日本放射線技術学会 |
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| DOI | 10.6009/jjrt.2014_JSRT_70.8.773 |
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| Discipline | Medicine |
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| EndPage | 783 |
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| References | 24) Zeintl J, Vija AH, Yahil A, et al. Quantitative accuracy of clinical 99mTc SPECT/CT using ordered-subset expectation maximization with 3-dimensional resolution recovery, attenuation, and scatter correction. J Nucl Med 2010; 51(6): 921–928. 2) Gilland DR, Tsui BM, McCartney WH, et al. Determination of the optimum filter function for SPECT imaging. J Nucl Med 1988; 29(5): 643–650. 14) 浅津輝,林万寿夫,新井真美,他.逐次近似SPECT 再構成法の123I-IMP 局所脳血流量定量への応用-最適な再構成法と前処理フィルタの遮断周波数に関する検討-.日放技学誌2013; 69(5): 535–544. 21) 増田安彦,長木昭男,川渕安寿,他.臨床に役立つ基準画像の収集・処理・表示・出力のポイント.核医技2008; 28(1): 13–66. 7) Minoshima S, Maruno H, Yui N, et al. Optimization of Butterworth filter for brain SPECT imaging. Ann Nucl Med 1993; 7(2): 71–77. 20) 前田壽登,山木範泰,東眞.教育,研究用核医学データ処理解析ソフトウエアパッケージの開発について.日放技学誌2012; 68(3): 299–306. 11) Lyra M, Ploussi A. Filtering in SPECT image reconstruction. Int J Biomed Imaging 2011; 10: 1–14. 18) Larsson A, Mo SJ, Sundström T, et al. Gaussian prefiltering of 123I DAT SPECT images when using depth-independent resolut ion recovery. Phys Med Biol 2007; 52(18): N393–N399. 12) 大西英雄,飯田忠行,松尾悟,他.逐次近似再構成法における分解能・統計雑音および最適逐次回数の基礎的検討.日放技学誌2001; 57(11): 1365–1371. 26) 尾川浩一.SPECT における画質劣化とその補正.映像情報(M)2002; 34(12): 1136–1140. 4) Yusoff MS, Zakaria A. Relationship between the optimum cut off frequency for Butterworth filter and lung-heart ratio in 99mTc myocardial SPECT. Iran J Radiat Res 2010; 8(1): 17–24. 22) 岡田真美,林万寿夫,辻久志,他.コリメータ開口補正OSEM 再構成法の局所脳血流量定量への応用.日放技学誌2012; 68(5): 573–583. 1) 寺岡悟見,柳沢正道,大屋信義,他.機器メーカーに対する画像の収集・処理・表示・出力の標準化に関するアンケート調査報告.核医技2005; 25(1): 30–40. 5) 川村慎二,下新原茂,稲津博.SPECT 画像のROC 解析-ローパスフィルタの遮断周波数による信号検出能への影響-.日放技学誌1996; 52(12): 1633–1637. 6) 大西英雄, 牛尾哲敏, 松尾悟, 他.99mTc 心筋血流SPECT 画像におけるButterworth filter の評価.日放技学誌1996; 52(3): 346–350. 8) 大西英雄,高橋雅文,松尾悟,他.テクスチャー解析法を用いたSPECT 画像評価.日放技学誌1995; 51(6): 710–716. 27) 大西英雄,松竹裕紀,松友紀和.SPECT 画像再構成時におけるButterworth Filter を用いた標的臓器の最適遮断周波数の実空間と周波数空間での評価.人間と科学2010; 10(1): 27–36. 17) Hutton BF, Lau YH. Application of distance-dependent resolution compensation and post-reconstruction filtering for myocardial SPECT. Phys Med Biol 1998; 43(6): 1679–1693. 13) 松本圭一,藤田透,大狩興司.ML-EM 画像再構成後にmedian filter 処理した評価-実空間および周波数空間での評価-.日放技学誌2002; 58(5): 670–678. 19) Onishi H, Motomura N, Takahashi M, et al. A 3-dimensional mathematic cylinder phantom for the evaluation of the fundamental performance of SPECT. J Nucl Med Technol 2010; 38(1): 42–48. 25) Onishi H, Motomura N, Fujino K, et al. Quantitative performance of advanced resolution recovery strategies on SPECT images: evaluation with use of digital phantom models. Radiol Phys Technol 2013; 6(1): 42–53. 28) 松友紀和,古谷洋晃,山尾太一郎,他.SPECT データ評価用ディジタルファントムを用いた異なる処理装置間のOS-EM 再構成アルゴリズムの比較.日放技学誌2008; 64(11): 1361–1368. 29) 大西英雄,木田哲生,篠原広行,他.SPECT の再構成法に関する研究班報告(学術調査研究班報告).日放技学誌2003; 59(10): 1229–1247. 15) Vandenberghe S, D’Asseler Y, Van de Walle R, et al. Iterative reconstruction algorithms in nuclear medicine. Comput Med Imaging Graph 2001; 25(2): 105–111. 23) Ceriani L, Ruberto T, Delaloye AB, et al. Three-dimensional ordered-subset expectation maximization iterative protocol for evaluation of left ventricular volumes and function by quantitative gated SPECT: a dynamic phantom study. J Nucl Med Technol 2010; 38(1): 18–23. 10) Bruyant PP. Analytic and iterative reconstruction algorithms in SPECT. J Nucl Med 2002; 43(10): 1343–1358. 9) Ohnishi H, Ota T, Takada M, et al. Two optimal prefilter cutoff frequencies needed for SPECT images of myocardial perfusion in a one-day protocol. J Nucl Med Technol 1997; 25(4): 256–260. 3) Sankaran S, Frey EC, Gilland KL, et al. Optimum compensation method and filter cutoff frequency in myocardial SPECT: a human observer study. J Nucl Med 2002; 43(3): 432–438. 16) Wright GA, McDade M, Martin W, et al. Quantitative gated SPECT: the effect of reconstruction filter on calculated left ventricular ejection fractions and volumes. Phys Med Biol 2002; 47(8): N99–N105. |
| References_xml | – reference: 26) 尾川浩一.SPECT における画質劣化とその補正.映像情報(M)2002; 34(12): 1136–1140. – reference: 25) Onishi H, Motomura N, Fujino K, et al. Quantitative performance of advanced resolution recovery strategies on SPECT images: evaluation with use of digital phantom models. Radiol Phys Technol 2013; 6(1): 42–53. – reference: 5) 川村慎二,下新原茂,稲津博.SPECT 画像のROC 解析-ローパスフィルタの遮断周波数による信号検出能への影響-.日放技学誌1996; 52(12): 1633–1637. – reference: 10) Bruyant PP. Analytic and iterative reconstruction algorithms in SPECT. J Nucl Med 2002; 43(10): 1343–1358. – reference: 7) Minoshima S, Maruno H, Yui N, et al. Optimization of Butterworth filter for brain SPECT imaging. Ann Nucl Med 1993; 7(2): 71–77. – reference: 2) Gilland DR, Tsui BM, McCartney WH, et al. Determination of the optimum filter function for SPECT imaging. J Nucl Med 1988; 29(5): 643–650. – reference: 3) Sankaran S, Frey EC, Gilland KL, et al. Optimum compensation method and filter cutoff frequency in myocardial SPECT: a human observer study. J Nucl Med 2002; 43(3): 432–438. – reference: 13) 松本圭一,藤田透,大狩興司.ML-EM 画像再構成後にmedian filter 処理した評価-実空間および周波数空間での評価-.日放技学誌2002; 58(5): 670–678. – reference: 21) 増田安彦,長木昭男,川渕安寿,他.臨床に役立つ基準画像の収集・処理・表示・出力のポイント.核医技2008; 28(1): 13–66. – reference: 24) Zeintl J, Vija AH, Yahil A, et al. Quantitative accuracy of clinical 99mTc SPECT/CT using ordered-subset expectation maximization with 3-dimensional resolution recovery, attenuation, and scatter correction. J Nucl Med 2010; 51(6): 921–928. – reference: 19) Onishi H, Motomura N, Takahashi M, et al. A 3-dimensional mathematic cylinder phantom for the evaluation of the fundamental performance of SPECT. J Nucl Med Technol 2010; 38(1): 42–48. – reference: 12) 大西英雄,飯田忠行,松尾悟,他.逐次近似再構成法における分解能・統計雑音および最適逐次回数の基礎的検討.日放技学誌2001; 57(11): 1365–1371. – reference: 23) Ceriani L, Ruberto T, Delaloye AB, et al. Three-dimensional ordered-subset expectation maximization iterative protocol for evaluation of left ventricular volumes and function by quantitative gated SPECT: a dynamic phantom study. J Nucl Med Technol 2010; 38(1): 18–23. – reference: 11) Lyra M, Ploussi A. Filtering in SPECT image reconstruction. Int J Biomed Imaging 2011; 10: 1–14. – reference: 6) 大西英雄, 牛尾哲敏, 松尾悟, 他.99mTc 心筋血流SPECT 画像におけるButterworth filter の評価.日放技学誌1996; 52(3): 346–350. – reference: 14) 浅津輝,林万寿夫,新井真美,他.逐次近似SPECT 再構成法の123I-IMP 局所脳血流量定量への応用-最適な再構成法と前処理フィルタの遮断周波数に関する検討-.日放技学誌2013; 69(5): 535–544. – reference: 22) 岡田真美,林万寿夫,辻久志,他.コリメータ開口補正OSEM 再構成法の局所脳血流量定量への応用.日放技学誌2012; 68(5): 573–583. – reference: 9) Ohnishi H, Ota T, Takada M, et al. Two optimal prefilter cutoff frequencies needed for SPECT images of myocardial perfusion in a one-day protocol. J Nucl Med Technol 1997; 25(4): 256–260. – reference: 18) Larsson A, Mo SJ, Sundström T, et al. Gaussian prefiltering of 123I DAT SPECT images when using depth-independent resolut ion recovery. Phys Med Biol 2007; 52(18): N393–N399. – reference: 27) 大西英雄,松竹裕紀,松友紀和.SPECT 画像再構成時におけるButterworth Filter を用いた標的臓器の最適遮断周波数の実空間と周波数空間での評価.人間と科学2010; 10(1): 27–36. – reference: 29) 大西英雄,木田哲生,篠原広行,他.SPECT の再構成法に関する研究班報告(学術調査研究班報告).日放技学誌2003; 59(10): 1229–1247. – reference: 4) Yusoff MS, Zakaria A. Relationship between the optimum cut off frequency for Butterworth filter and lung-heart ratio in 99mTc myocardial SPECT. Iran J Radiat Res 2010; 8(1): 17–24. – reference: 16) Wright GA, McDade M, Martin W, et al. Quantitative gated SPECT: the effect of reconstruction filter on calculated left ventricular ejection fractions and volumes. Phys Med Biol 2002; 47(8): N99–N105. – reference: 17) Hutton BF, Lau YH. Application of distance-dependent resolution compensation and post-reconstruction filtering for myocardial SPECT. Phys Med Biol 1998; 43(6): 1679–1693. – reference: 20) 前田壽登,山木範泰,東眞.教育,研究用核医学データ処理解析ソフトウエアパッケージの開発について.日放技学誌2012; 68(3): 299–306. – reference: 1) 寺岡悟見,柳沢正道,大屋信義,他.機器メーカーに対する画像の収集・処理・表示・出力の標準化に関するアンケート調査報告.核医技2005; 25(1): 30–40. – reference: 15) Vandenberghe S, D’Asseler Y, Van de Walle R, et al. Iterative reconstruction algorithms in nuclear medicine. Comput Med Imaging Graph 2001; 25(2): 105–111. – reference: 28) 松友紀和,古谷洋晃,山尾太一郎,他.SPECT データ評価用ディジタルファントムを用いた異なる処理装置間のOS-EM 再構成アルゴリズムの比較.日放技学誌2008; 64(11): 1361–1368. – reference: 8) 大西英雄,高橋雅文,松尾悟,他.テクスチャー解析法を用いたSPECT 画像評価.日放技学誌1995; 51(6): 710–716. |
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| Title | シミュレーションデータを用いた逐次近似画像再構成法に対するノイズ除去処理の検証 |
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