Terahertz (THz) imaging technology for therapeutic and diagnostic applications of cancer incorporating with radiopharmaceutical fields
Radiopharmaceuticals include therapeutic radiopharmaceuticals and diagnostic radiopharmaceuticals. Therapeutic radiopharmaceuticals are administered to the body and ingested at specific organs to detect radiation emitted from the site and to construct an image to diagnose the disease. Diagnostic rad...
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Published in | Journal of radiopharmaceuticals and molecular probes : JRMP Vol. 5; no. 2; pp. 120 - 128 |
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Main Authors | , , , , , , , , , |
Format | Journal Article |
Language | Korean |
Published |
대한방사성의약품학회
01.12.2019
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Subjects | |
Online Access | Get full text |
ISSN | 2384-1583 2508-3848 |
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Abstract | Radiopharmaceuticals include therapeutic radiopharmaceuticals and diagnostic radiopharmaceuticals. Therapeutic radiopharmaceuticals are administered to the body and ingested at specific organs to detect radiation emitted from the site and to construct an image to diagnose the disease. Diagnostic radiopharmaceuticals are used to treat diseases by killing cells with radiation emitted from radiopharmaceuticals, such as cancer cells, vascular endothelial cells, arthritis, and Alzheimer's disease. The application possibilities of terahertz imaging technology for the combination of radiopharmaceuticals and molecular imaging medicine are discussed and experimental methods are presented. Terahertz imaging is expected to be a powerful technique because of the effective piercing feasibility, which enables to perform safe and high resolutive imaging. To investigate the response of cell to the terahertz wave, both the pulsed and CW THz wave systems are employed. THz imaging of a rat's paraffin-embedded epithelial cell with tumor is studied in advance. |
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AbstractList | Radiopharmaceuticals include therapeutic radiopharmaceuticals and diagnostic radiopharmaceuticals. Therapeutic radiopharmaceuticals are administered to the body and ingested at specific organs to detect radiation emitted from the site and to construct an image to diagnose the disease. Diagnostic radiopharmaceuticals are used to treat diseases by killing cells with radiation emitted from radiopharmaceuticals, such as cancer cells, vascular endothelial cells, arthritis, and Alzheimer's disease. The application possibilities of terahertz imaging technology for the combination of radiopharmaceuticals and molecular imaging medicine are discussed and experimental methods are presented. Terahertz imaging is expected to be a powerful technique because of the effective piercing feasibility, which enables to perform safe and high resolutive imaging. To investigate the response of cell to the terahertz wave, both the pulsed and CW THz wave systems are employed. THz imaging of a rat's paraffin-embedded epithelial cell with tumor is studied in advance. Radiopharmaceuticals include therapeutic radiopharmaceuticals and diagnostic radiopharmaceuticals. Therapeutic radiopharmaceuticals are administered to the body and ingested at specific organs to detect radiationemitted from the site and to construct an image to diagnose the disease. Diagnostic radiopharmaceuticals areused to treat diseases by killing cells with radiation emitted from radiopharmaceuticals, such as cancer cells,vascular endothelial cells, arthritis, and Alzheimer's disease. The application possibilities of terahertz imagingtechnology for the combination of radiopharmaceuticals and molecular imaging medicine are discussed andexperimental methods are presented. Terahertz imaging is expected to be a powerful technique because ofthe effective piercing feasibility, which enables to perform safe and high resolutive imaging. To investigate theresponse of cell to the terahertz wave, both the pulsed and CW THz wave systems are employed. THz imagingof a rat’s paraffin-embedded epithelial cell with tumor is studied in advance. KCI Citation Count: 0 |
Author | Lee, Kyo Chul Hong, Bong Hwan Min, Sun-Hong Lim, Sang Moo Kim, Minho Jung, Wongyun Park, Chawon Cho, Ilsung Lee, Yong Jin Hwang, Won Taek |
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Keywords | Terahertz (THz) imaging Nonionizing radiation Compact imaging devices |
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Title | Terahertz (THz) imaging technology for therapeutic and diagnostic applications of cancer incorporating with radiopharmaceutical fields |
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