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Quantification Technique of 3D Lung Motion Using Vessel Bifurcation Pattern Matching

https://repo.qst.go.jp/records/53632
https://repo.qst.go.jp/records/53632
c2885358-517a-40bc-bf99-edaa0d691692
Item type 会議発表論文 / Conference Paper(1)
公開日 2006-01-19
タイトル
タイトル Quantification Technique of 3D Lung Motion Using Vessel Bifurcation Pattern Matching
言語
言語 eng
資源タイプ
資源タイプ識別子 http://purl.org/coar/resource_type/c_5794
資源タイプ conference paper
アクセス権
アクセス権 metadata only access
アクセス権URI http://purl.org/coar/access_right/c_14cb
著者 Tashiro, Mutsumi

× Tashiro, Mutsumi

WEKO 547367

Tashiro, Mutsumi

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Minohara, Shinichi

× Minohara, Shinichi

WEKO 547368

Minohara, Shinichi

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Yusa, Ken

× Yusa, Ken

WEKO 547369

Yusa, Ken

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Sakurai, Hideyuki

× Sakurai, Hideyuki

WEKO 547370

Sakurai, Hideyuki

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Kanai, Tatsuaki

× Kanai, Tatsuaki

WEKO 547371

Kanai, Tatsuaki

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Nakano, Takashi

× Nakano, Takashi

WEKO 547372

Nakano, Takashi

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蓑原 伸一

× 蓑原 伸一

WEKO 547373

en 蓑原 伸一

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遊佐 顕

× 遊佐 顕

WEKO 547374

en 遊佐 顕

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櫻井 英幸

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WEKO 547375

en 櫻井 英幸

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金井 達明

× 金井 達明

WEKO 547376

en 金井 達明

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中野 隆史

× 中野 隆史

WEKO 547377

en 中野 隆史

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内容記述タイプ Abstract
内容記述 A quantification technique of three-dimensional (3D) lung motion by means of tracking the anatomical features inside the lung using a set of sequential 3D-CT images (a 4D-CT image) is presented. The method is based on the conservation of topology, such as connection and junction of vessels, during the motion. Lung volume modeling, lung vessel extraction and thinning are processed, and vessel bifurcations are derived as feature points. Such feature points are tracked in a series of 3D-CT images, individually between two successive 3D-CT images, in which the lung is deformed. Consequently, 3D displacement vectors are obtained. The feature point tracking is carried out using point pattern matching with a probabilistic relaxation method. The error of the vectors is estimated to be within ~1-voxel (<1 mm). The accuracy is high enough for radiation therapy. This technique enables us to quantify the realistic 3D organ motion without any fiducial markers. It is applied to the quantification of tumor (target volume) deformation by gridding interpolation into all voxels. It is expected to be useful for dose estimation in mobile organs and 4D treatment planning for radiation therapy.
書誌情報 Japanese Journal of Medical Physics. Supplement

巻 25, 号 3-2, p. 153-156, 発行日 2005-09
ISSN
収録物識別子タイプ ISSN
収録物識別子 1345-5362
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