加速部分乳房照射における外科用クリップを用いた位置照合精度
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Published in | 日本放射線技術学会雑誌 Vol. 70; no. 5; pp. 467 - 475 |
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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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Online Access | Get full text |
ISSN | 0369-4305 1881-4883 |
DOI | 10.6009/jjrt.2014_JSRT_70.5.467 |
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Author | 東村, 享治 吉村, 通央 井上, 実 平岡, 真寛 中田, 学 鶴田, 裕輔 矢野, 慎輔 佐々木, 誠 藤本, 隆広 中村, 光宏 佐藤, 清香 |
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References | 4) 日本医学物理学会QA/QC 委員会.画像誘導放射線治療臨床導入のためのガイドライン(略称:IGRT ガイドライン).医学物理 2010; 30(2): 49–53. 3) 加賀美芳和.外部照射によるAPBI - APBI の現状と臨床試験.Innervision 2011; 26(3): 55–57. 8) Weed DW, Yan D, Martinez AA, et al. The validity of surgical clips as a radiographic surrogate for the lumpectomy cavity in image-guided accelerated partial breast irradiation. Int J Radiat Oncol Biol Phys 2004; 60(2): 484–492. 9) 中村光宏.Vero4DRT(MHI-TM2000)を用いた動体追尾照射の臨床適用.Rad Fan 2012; 10(3): 11–14. 6) Leonard CE, Tallhamer M, Johnson T, et al. Clinical experience with image-guided radiotherapy in an accelerated partial breast intensity-modulated radiotherapy protocol. Int J Radiat Oncol Biol Phys 2010; 76(2): 528–534. 7) Cai G, Hu WG, Chen JY, et al. Impact of residual and intrafractional errors on strategy of correction for image-guided accelerated partial breast irradiation. Radiat Oncol 2010; 96(5): 1–8. 16) Yue NJ, Haffty BG, Kearney T, et al. Tracking the dynamic seroma cavity using fiducial markers in patients treated with accelerated partial breast irradiation using 3D conformal radiotherapy. Med Phys 2013; 40(2): 021717-1-10. 5) Yue NJ, Goyal S, Zhou J, et al. Intrafractional target motions and uncertainties of treatment setup reference systems in accelerated partial breast irradiation. Int J Radiat Oncol Biol Phys 2011; 79(5): 1549–1556. 13) Gierga DP, Riboldi M, Turcotte JC, et al. Comparison of target registration errors for multiple image-guided techniques in accelerated partial breast irradiation. Int J Radiat Oncol Biol Phys 2008; 70(4): 1239–1246. 10) 小久保雅樹.展望動体追尾放射線治療.Isotope News 2013; 707: 8–12. 12) Prabhakar R, Ganesh T, Rath GK, et al. Impact of different CT slice thickness on clinical target volume for 3D conformal radiation therapy. Med Dosim 2009; 34(1): 36–41. 1) 日本乳癌学会 編.放射線療法.科学的根拠に基づく乳癌診療ガイドライン①治療編2013 年版.金原出版株式会社,東京,2013: 280–333. 15) Truong MT, Hirsch AE, Kovalchuk N, et al. Cone-beam computed tomography image guided therapy to evaluate lumpectomy cavity variation before and during breast radiotherapy. J Appl Clin Med Phys 2013; 14(2): 4243. 14) Park CK, Pritz J, Zhang GG, et al. Validating fiducial markers for image-guided radiation therapy for accelerated partial breast irradiation in early-stage breast cancer. Int J Radiat Oncol Biol Phys 2012; 82(3): 425–431. 11) Caivano R, Fiorentino A, Pedicini P, et al. The impact of computed tomography slice thickness on the assessment of stereotactic, 3D conformal and intensity-modulated radiotherapy of brain tumors. Clin Transl Oncol 2014; 16(5): 503–508. 2) 大西洋,唐澤久美子,唐澤克之 編著.7 章-33早期浸潤乳癌(乳房温存療法).がん・放射線療法 2010.篠原出版新社,東京,2010: 823–831. |
References_xml | – reference: 5) Yue NJ, Goyal S, Zhou J, et al. Intrafractional target motions and uncertainties of treatment setup reference systems in accelerated partial breast irradiation. Int J Radiat Oncol Biol Phys 2011; 79(5): 1549–1556. – reference: 7) Cai G, Hu WG, Chen JY, et al. Impact of residual and intrafractional errors on strategy of correction for image-guided accelerated partial breast irradiation. Radiat Oncol 2010; 96(5): 1–8. – reference: 12) Prabhakar R, Ganesh T, Rath GK, et al. Impact of different CT slice thickness on clinical target volume for 3D conformal radiation therapy. Med Dosim 2009; 34(1): 36–41. – reference: 13) Gierga DP, Riboldi M, Turcotte JC, et al. Comparison of target registration errors for multiple image-guided techniques in accelerated partial breast irradiation. Int J Radiat Oncol Biol Phys 2008; 70(4): 1239–1246. – reference: 2) 大西洋,唐澤久美子,唐澤克之 編著.7 章-33早期浸潤乳癌(乳房温存療法).がん・放射線療法 2010.篠原出版新社,東京,2010: 823–831. – reference: 6) Leonard CE, Tallhamer M, Johnson T, et al. Clinical experience with image-guided radiotherapy in an accelerated partial breast intensity-modulated radiotherapy protocol. Int J Radiat Oncol Biol Phys 2010; 76(2): 528–534. – reference: 1) 日本乳癌学会 編.放射線療法.科学的根拠に基づく乳癌診療ガイドライン①治療編2013 年版.金原出版株式会社,東京,2013: 280–333. – reference: 16) Yue NJ, Haffty BG, Kearney T, et al. Tracking the dynamic seroma cavity using fiducial markers in patients treated with accelerated partial breast irradiation using 3D conformal radiotherapy. Med Phys 2013; 40(2): 021717-1-10. – reference: 8) Weed DW, Yan D, Martinez AA, et al. The validity of surgical clips as a radiographic surrogate for the lumpectomy cavity in image-guided accelerated partial breast irradiation. Int J Radiat Oncol Biol Phys 2004; 60(2): 484–492. – reference: 14) Park CK, Pritz J, Zhang GG, et al. Validating fiducial markers for image-guided radiation therapy for accelerated partial breast irradiation in early-stage breast cancer. Int J Radiat Oncol Biol Phys 2012; 82(3): 425–431. – reference: 4) 日本医学物理学会QA/QC 委員会.画像誘導放射線治療臨床導入のためのガイドライン(略称:IGRT ガイドライン).医学物理 2010; 30(2): 49–53. – reference: 15) Truong MT, Hirsch AE, Kovalchuk N, et al. Cone-beam computed tomography image guided therapy to evaluate lumpectomy cavity variation before and during breast radiotherapy. J Appl Clin Med Phys 2013; 14(2): 4243. – reference: 3) 加賀美芳和.外部照射によるAPBI - APBI の現状と臨床試験.Innervision 2011; 26(3): 55–57. – reference: 11) Caivano R, Fiorentino A, Pedicini P, et al. The impact of computed tomography slice thickness on the assessment of stereotactic, 3D conformal and intensity-modulated radiotherapy of brain tumors. Clin Transl Oncol 2014; 16(5): 503–508. – reference: 9) 中村光宏.Vero4DRT(MHI-TM2000)を用いた動体追尾照射の臨床適用.Rad Fan 2012; 10(3): 11–14. – reference: 10) 小久保雅樹.展望動体追尾放射線治療.Isotope News 2013; 707: 8–12. |
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Title | 加速部分乳房照射における外科用クリップを用いた位置照合精度 |
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