Dynamic MR Based Analysis of Tumor Movement in Upper and Mid Lobe Localized Lung Cancer

Background and purpose : Tumor motion is a very important factor in the radiotherapy of lung cancer. Uncertainty resulting from tumor movement must be considered in 3D therapy planning especially in case of IMRT or stereotactic therapy. The aim of our dynamic MR based study was to detect tumor movem...

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Published inPathology oncology research Vol. 15; no. 2; pp. 269 - 277
Main Authors Kovacs, A., Hadjiev, J., Lakosi, F., Antal, G., Vandulek, C., Somogyine Ezer, E., Bogner, P., Horvath, A., Repa, I.
Format Journal Article Web Resource
LanguageEnglish
Published Dordrecht Springer Netherlands 01.06.2009
Springer Nature B.V
W.B. Saunders
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Abstract Background and purpose : Tumor motion is a very important factor in the radiotherapy of lung cancer. Uncertainty resulting from tumor movement must be considered in 3D therapy planning especially in case of IMRT or stereotactic therapy. The aim of our dynamic MR based study was to detect tumor movements in upper and mid lobe lung tumors. Patient and methods : Twenty-four patients with newly diagnosed stage II-IV lung cancer were enrolled into the study. According to tumor localization in the right S1–S3 segments 9, in the right S4–S6 segments 2, in the left S1–S3 segments 9 and in the left S4–S6 segments 4 lesions were detected. In normal treatment position individual dynamic MR examinations were performed in axial, sagittal and coronal planes (100 slices/30 sec). For tumor motion analysis E-RAD PAC's software was used. Results : Movements of the tumor under normal breathing conditions were registered in the three main directions. The mean antero-posterior deviation was 0,109 cm (range: 0,063 cm–0,204 cm), the mean medio-lateral deviation was 0,114 cm (range: 0,06 cm– 0,244 cm). The greatest deviation was measured in cranio–caudal direction (mean: 0,27 cm, range: 0,079 cm– 0,815 cm). The mean direction independent deviation was 0,18 cm (range: 0,09 cm– 0,48 cm). Conclusion : Dynamic MR is a sensitive and well tolerated method for tumor motion monitoring in high precision 3D therapy planning of lung cancer patients. Our results demonstrate that tumors located in the upper and mid lobes have moderate breath synchronous movements. The greatest deviation occur in cranio–caudal direction.
AbstractList Background and purpose: Tumor motion is a very important factor in the radiotherapy of lung cancer. Uncertainty resulting from tumor movement must be considered in 3D therapy planning especially in case of IMRT or stereotactic therapy. The aim of our dynamic MR based study was to detect tumor movements in upper and mid lobe lung tumors. Patient and methods: Twenty-four patients with newly diagnosed stage II-IV lung cancer were enrolled into the study. According to tumor localization in the right S1-S3 segments 9, in the right S4-S6 segments 2, in the left S1-S3 segments 9 and in the left S4-S6 segments 4 lesions were detected. In normal treatment position individual dynamic MR examinations were performed in axial, sagittal and coronal planes (100 slices/30 sec). For tumor motion analysis E-RAD PAC's software was used. Results: Movements of the tumor under normal breathing conditions were registered in the three main directions. The mean antero-posterior deviation was 0,109 cm (range: 0,063 cm-0,204 cm), the mean medio-lateral deviation was 0,114 cm (range: 0,06 cm- 0,244 cm). The greatest deviation was measured in cranio-caudal direction (mean: 0,27 cm, range: 0,079 cm- 0,815 cm). The mean direction independent deviation was 0,18 cm (range: 0,09 cm- 0,48 cm). Conclusion: Dynamic MR is a sensitive and well tolerated method for tumor motion monitoring in high precision 3D therapy planning of lung cancer patients. Our results demonstrate that tumors located in the upper and mid lobes have moderate breath synchronous movements. The greatest deviation occur in cranio-caudal direction.[PUBLICATION ABSTRACT]
Background and purpose : Tumor motion is a very important factor in the radiotherapy of lung cancer. Uncertainty resulting from tumor movement must be considered in 3D therapy planning especially in case of IMRT or stereotactic therapy. The aim of our dynamic MR based study was to detect tumor movements in upper and mid lobe lung tumors. Patient and methods : Twenty-four patients with newly diagnosed stage II-IV lung cancer were enrolled into the study. According to tumor localization in the right S1–S3 segments 9, in the right S4–S6 segments 2, in the left S1–S3 segments 9 and in the left S4–S6 segments 4 lesions were detected. In normal treatment position individual dynamic MR examinations were performed in axial, sagittal and coronal planes (100 slices/30 sec). For tumor motion analysis E-RAD PAC's software was used. Results : Movements of the tumor under normal breathing conditions were registered in the three main directions. The mean antero-posterior deviation was 0,109 cm (range: 0,063 cm–0,204 cm), the mean medio-lateral deviation was 0,114 cm (range: 0,06 cm– 0,244 cm). The greatest deviation was measured in cranio–caudal direction (mean: 0,27 cm, range: 0,079 cm– 0,815 cm). The mean direction independent deviation was 0,18 cm (range: 0,09 cm– 0,48 cm). Conclusion : Dynamic MR is a sensitive and well tolerated method for tumor motion monitoring in high precision 3D therapy planning of lung cancer patients. Our results demonstrate that tumors located in the upper and mid lobes have moderate breath synchronous movements. The greatest deviation occur in cranio–caudal direction.
BACKGROUND AND PURPOSETumor motion is a very important factor in the radiotherapy of lung cancer. Uncertainty resulting from tumor movement must be considered in 3D therapy planning especially in case of IMRT or stereotactic therapy. The aim of our dynamic MR based study was to detect tumor movements in upper and mid lobe lung tumors.PATIENT AND METHODSTwenty-four patients with newly diagnosed stage II-IV lung cancer were enrolled into the study. According to tumor localization in the right S1-S3 segments 9, in the right S4-S6 segments 2, in the left S1-S3 segments 9 and in the left S4-S6 segments 4 lesions were detected. In normal treatment position individual dynamic MR examinations were performed in axial, sagittal and coronal planes (100 slices/30 sec). For tumor motion analysis E-RAD PAC's software was used.RESULTSMovements of the tumor under normal breathing conditions were registered in the three main directions. The mean antero-posterior deviation was 0,109 cm (range: 0,063 cm-0,204 cm), the mean medio-lateral deviation was 0,114 cm (range: 0,06 cm- 0,244 cm). The greatest deviation was measured in cranio-caudal direction (mean: 0,27 cm, range: 0,079 cm- 0,815 cm). The mean direction independent deviation was 0,18 cm (range: 0,09 cm- 0,48 cm).CONCLUSIONDynamic MR is a sensitive and well tolerated method for tumor motion monitoring in high precision 3D therapy planning of lung cancer patients. Our results demonstrate that tumors located in the upper and mid lobes have moderate breath synchronous movements. The greatest deviation occur in cranio-caudal direction.
Tumor motion is a very important factor in the radiotherapy of lung cancer. Uncertainty resulting from tumor movement must be considered in 3D therapy planning especially in case of IMRT or stereotactic therapy. The aim of our dynamic MR based study was to detect tumor movements in upper and mid lobe lung tumors. Twenty-four patients with newly diagnosed stage II-IV lung cancer were enrolled into the study. According to tumor localization in the right S1-S3 segments 9, in the right S4-S6 segments 2, in the left S1-S3 segments 9 and in the left S4-S6 segments 4 lesions were detected. In normal treatment position individual dynamic MR examinations were performed in axial, sagittal and coronal planes (100 slices/30 sec). For tumor motion analysis E-RAD PAC's software was used. Movements of the tumor under normal breathing conditions were registered in the three main directions. The mean antero-posterior deviation was 0,109 cm (range: 0,063 cm-0,204 cm), the mean medio-lateral deviation was 0,114 cm (range: 0,06 cm- 0,244 cm). The greatest deviation was measured in cranio-caudal direction (mean: 0,27 cm, range: 0,079 cm- 0,815 cm). The mean direction independent deviation was 0,18 cm (range: 0,09 cm- 0,48 cm). Dynamic MR is a sensitive and well tolerated method for tumor motion monitoring in high precision 3D therapy planning of lung cancer patients. Our results demonstrate that tumors located in the upper and mid lobes have moderate breath synchronous movements. The greatest deviation occur in cranio-caudal direction.
Author Kovacs, A.
Horvath, A.
Repa, I.
Bogner, P.
Vandulek, C.
Hadjiev, J.
Somogyine Ezer, E.
Lakosi, F.
Antal, G.
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CitedBy_id crossref_primary_10_1097_RTI_0b013e3182242b11
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Snippet Background and purpose : Tumor motion is a very important factor in the radiotherapy of lung cancer. Uncertainty resulting from tumor movement must be...
Tumor motion is a very important factor in the radiotherapy of lung cancer. Uncertainty resulting from tumor movement must be considered in 3D therapy planning...
Background and purpose: Tumor motion is a very important factor in the radiotherapy of lung cancer. Uncertainty resulting from tumor movement must be...
BACKGROUND AND PURPOSETumor motion is a very important factor in the radiotherapy of lung cancer. Uncertainty resulting from tumor movement must be considered...
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proquest
crossref
pubmed
springer
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StartPage 269
SubjectTerms Adenocarcinoma - pathology
Adenocarcinoma - radiotherapy
Aged
Biomedical and Life Sciences
Biomedicine
Cancer Research
Female
Human health sciences
Humans
Immunology
Lung cancer
Lung Neoplasms - pathology
Lung Neoplasms - radiotherapy
Magnetic Resonance Imaging
Male
Medical research
Middle Aged
Oncologie
Oncology
Original Paper
Pathology
Sciences de la santé humaine
Tumors
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Title Dynamic MR Based Analysis of Tumor Movement in Upper and Mid Lobe Localized Lung Cancer
URI https://link.springer.com/article/10.1007/s12253-008-9101-5
https://www.ncbi.nlm.nih.gov/pubmed/18814054
https://www.proquest.com/docview/1113887350
https://search.proquest.com/docview/67238106
http://orbi.ulg.ac.be/handle/2268/131500
Volume 15
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