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Influences of Motion Artifacts on Three-Dimensional Reconstruction Volume and Conformal Radiotherapy Planning 被引量:9

Influences of Motion Artifacts on Three-Dimensional Reconstruction Volume and Conformal Radiotherapy Planning
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摘要 Objective:To investigate the influences of motion artifacts on three-dimensional (3D) reconstruction volume and conformal radiotherapy planning. Methods:A phantom which can mimic the clip motion of lung tumor along the cranial-caudal direction is constructed by step motor, small ball of polyethylene and potato. Ten different scan protocols were set and CT data of the phantom were acquired by using a commercial GE LightSpeed16 CT scanner. The 3D reconstruction of the CT data was implemented by adopting volume-rendering technology of GE AdvantageSim 6.0 system. The reconstructed volumes of each target in different scan protocols were measured through 3D measuring tools. Thus, relative deviations of the reconstruction volumes between moving targets and static ones were determined. The three-dimensional conformal radiation therapy (3D-CRT) plans and conformal fields were created and compared for a static/moving target with the WiMRT treatment planning system (TPS). Results:For a static target, there was no obvious difference among the 3D reconstruction volumes when the CT data were acquired with different pitches and slices. The appearance of 3D reconstruction volume and 3D conformal field of a moving target was quite different from that of static one. The maximum relative deviation is nearly 90% for a moving target scanned with different scan protocols. The relative deviations are variable among the different targets, about from -39.8% to 89.5% for a smaller target and from -18.4% to 20.5% for a larger one. Conclusion:The motion artifacts have great effects on 3D-CRT planning and reconstruction volume, which will greatly induce distorted conformal radiation fields and false DVHs for a moving target. Objective :To investigate the influences of motion artifacts on three-dimensional (3D) reconstruction volume and conformal radiotherapy planning. Methods: A phantom which can mimic the clip motion of lung tumor along the cranial-caudal direction is constructed by step motor, small ball of polyethylene and potato. Ten different scan protocols were set and CT data of the phantom were acquired by using a commercial GE LightSpeedl6 CT scanner. The 3D reconstruction of the CT data was implemented by adopting volume-rendering technology of GE AdvantageSim 6.0 system. The reconstructed volumes of each target in different scan protocols were measured through 3D measuring tools. Thus, relative deviations of the reconstruction volumes between moving targets and static ones were determined. The three-dimensional conformal radiation therapy (3D- CRT) plans and conformal fields were created and compared for a static/moving target with the WiMRT treatment planning system (TPS). Results:For a static target, there was no obvious difference among the 3D reconstruction volumes when the CT data were acquired with different pitches and slices. The appearance of 3D reconstruction volume and 3D conformal field of a moving target was quite different from that of static one. The maximum relative deviation is nearly 90% for a moving target scanned with different scan protocols. The relative deviations are variable among the different targets, about from -39.8% to 89.5% for a smaller target and from - 18.4% to 20.5% for a larger one. Conclusion :The motion artifacts have great effects on 3 D-CRT planning and reconstruction volume, which will greatly induce distorted conformal radiation fields and false DVHs for a moving target.
出处 《Chinese Journal of Biomedical Engineering(English Edition)》 2007年第3期123-130,共8页 中国生物医学工程学报(英文版)
基金 Grant sponsor:Guangzhou Municipal Medicin &Health Program Grant number:2006-YB-177
关键词 放射线疗法 医学图像 图像处理 三维重建 motion artifact phantom three-dimensional conformal radiation therapy ( 3 D-CRT) four-dimensional computed tomography ( 4 D-CT)
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  • 1Duan J,Shen S,Fiveash JB,et al.Dosimetric and radiobiological impact of dose fractionation on respiratory mo- tion induced IMRT delivery errors: a volumetric dose measurement study[].Medical Physics.2006
  • 2Shirato H,Suzuki K,Sharp G,et al.Speed and amplitude of lung tumor motion precisely detected in four-dimen- sional setup and in real-time tumor-tracking radiotherapy[].International Journal of Radiation Oncology Biology Physics.2006
  • 3Underberg RWM,Lagerwaard FJ,Cuijpers JP,et al.4-dimensional CT scans for treatment planning in ster- eotactic radiotherapy for stage I lung cancer[].International Journal of Radiation Oncology Biology Physics.2004
  • 4Rietzel E,Chen GT,Choi NC,et al.Four-dimensional image-based treatment planning: target volume segmen- tation and dose calculation in the presence of respiratory motion[].IntJ RadiatOncol Biol Phys.2005
  • 5Rietzel E,Liu AK,Doppke KP,et al.Design of 4D treatment planning target volumes[].International Journal of Radiation Oncology Biology Physics.2006
  • 6Giraud P,Yorke E,Jiang S,et al.Reduction of organ motion effects in IMRT and conformal 3D radiation delivery by using gating and tracking techniques[].Cancer Radiotherapie.2006
  • 7LowDA,Nystrom M,Kalinin E,et al.Amethod for the reconstruction of four-dimensional synchronized CTscans acquired during free breathing[].Medical Physics.2003
  • 8Rietzel E,Pan T,Chen GT.Four-dimensional computed tomography: image formation and clinical protocol[].Medical Physics.2005
  • 9Mageras GS,Pevsner A,York ED,et al.Measurement of lung tumor motion using respiration-correlated CT[].International Journal of Radiation Oncology Biology Physics.2004
  • 10Jiang S B,Pope C,A l Jarrah K M,et al.An experimental investigation on intra-fractional organ motion effects in lung IMRT treatments[].Physics in Medicine and Biology.2003

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