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Development of Respiratory Signal Analysis Program for Accurate Phase Reassignment in 4D CT Reconstruction / 의학물리
Korean Journal of Medical Physics ; : 241-246, 2008.
Article in Korean | WPRIM | ID: wpr-93135
ABSTRACT
Patient's respiration can have an effect on movement of tumor range and peripheral organs. Therefore, the respiratory signal was acquired by relation between external markers and movement of patient's abdomen during radiational therapy in order to minimize the effect of respiration. Based on this technique, many studies of rational therapy to irradiate at particular part of stable respiratory signals have executed and they have been clinically applied. Nevertheless, the phase-based method is preferred to the amplitude-based method for the rational therapy related to respiration. Because stabilization of the respiratory signal are limited. In this study, a in-house respiratory signal analysis program was developed for the phase reassignment and the analysis of the irregular respiratory signals. Various irregular respiratory patterns was obtained from clinical experimental volunteers. After then, the in-house program analyzed the factors affecting to phase assignment which is directly related to irradiated sector. Subsequently, accuracy of phase assignment was improved with removement of irregular signals by self-developed algorithm. This study is considered to be useful for not only image reconstruction and elevation of irradiating accuracy through phase assignment of RPM system but also analysis of respiratory signals. Moreover, development of 4D CT image is planed with phantom researches or clinical experiments based on this program.
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Full text: Available Index: WPRIM (Western Pacific) Main subject: Respiration / Image Processing, Computer-Assisted / Abdomen / Four-Dimensional Computed Tomography Language: Korean Journal: Korean Journal of Medical Physics Year: 2008 Type: Article

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Full text: Available Index: WPRIM (Western Pacific) Main subject: Respiration / Image Processing, Computer-Assisted / Abdomen / Four-Dimensional Computed Tomography Language: Korean Journal: Korean Journal of Medical Physics Year: 2008 Type: Article