Practical Realization of a Novel DICOM File for Intraoral Radiographic Image
Objectives: The purpose of this study was to develop a digital imaging and communications in medicine (DICOM) file for intraoral radiographic images and to develop a universal viewer system for the new DICOM file. Methods: Three kinds of intraoral digital systems were involved: an imaging plate usin...
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Published in | Shika Hoshasen Vol. 52; no. 2; pp. 23 - 29 |
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Main Authors | , , , , |
Format | Journal Article |
Language | Japanese |
Published |
Japanese Society for Oral and Maxillofacial Radiology
2012
特定非営利活動法人 日本歯科放射線学会 |
Subjects | |
Online Access | Get full text |
ISSN | 0389-9705 2185-6311 |
DOI | 10.11242/dentalradiology.52.23 |
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Abstract | Objectives: The purpose of this study was to develop a digital imaging and communications in medicine (DICOM) file for intraoral radiographic images and to develop a universal viewer system for the new DICOM file. Methods: Three kinds of intraoral digital systems were involved: an imaging plate using photostimulable phosphor (IP), a charge-coupled device (CCD) sensor and a film digitizing system. Three types of projections were involved: periapical, bitewing and occlusal. The images obtained by intraoral radiography were mapped to a template for 14 series by a newly developed DICOM file for intraoral radiographic images. The DICOM file for intraoral radiographic images, which was developed in cooperation with healthcare industry companies, had a newly defined tag with template code for image mapping and a location code in addition to the conventional tags. The images mapped were sent to an image server for PACS through networks and could be viewed in each terminal display by using a newly developed dental viewer. Result: The periapical images could be viewed as the same pattern of the mapping, and bite-wing and occlusal images could be arranged to be easily viewed on each terminal display based on the new tag information. The new DICOM file for intraoral radiographic images corresponded in the three digital systems and the three projection types. Conclusion: The newly developed DICOM file will be useful as a universal DICOM file for intraoral radiographic image. |
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AbstractList | Objectives: The purpose of this study was to develop a digital imaging and communications in medicine (DICOM) file for intraoral radiographic images and to develop a universal viewer system for the new DICOM file. Methods: Three kinds of intraoral digital systems were involved: an imaging plate using photostimulable phosphor (IP), a charge-coupled device (CCD) sensor and a film digitizing system. Three types of projections were involved: periapical, bitewing and occlusal. The images obtained by intraoral radiography were mapped to a template for 14 series by a newly developed DICOM file for intraoral radiographic images. The DICOM file for intraoral radiographic images, which was developed in cooperation with healthcare industry companies, had a newly defined tag with template code for image mapping and a location code in addition to the conventional tags. The images mapped were sent to an image server for PACS through networks and could be viewed in each terminal display by using a newly developed dental viewer. Result: The periapical images could be viewed as the same pattern of the mapping, and bite-wing and occlusal images could be arranged to be easily viewed on each terminal display based on the new tag information. The new DICOM file for intraoral radiographic images corresponded in the three digital systems and the three projection types. Conclusion: The newly developed DICOM file will be useful as a universal DICOM file for intraoral radiographic image. |
Author | Hosoki, Hidehiko Yoshida, Midori Honda, Eiichi Yamamoto, Yuichiro Maeda, Naoki |
Author_FL | 前田 直樹 吉田 みどり 山本 勇一郎 細木 秀彦 誉田 栄一 |
Author_FL_xml | – sequence: 1 fullname: 誉田 栄一 – sequence: 2 fullname: 山本 勇一郎 – sequence: 3 fullname: 細木 秀彦 – sequence: 4 fullname: 吉田 みどり – sequence: 5 fullname: 前田 直樹 |
Author_xml | – sequence: 1 fullname: Yoshida, Midori organization: Department of Oral and Maxillofacial Radiology, The University of Tokushima Graduate School – sequence: 1 fullname: Maeda, Naoki organization: Department of Oral and Maxillofacial Radiology, The University of Tokushima Graduate School – sequence: 1 fullname: Yamamoto, Yuichiro organization: Department of Medical Information Science, Graduate School of Medicine, Osaka University – sequence: 1 fullname: Hosoki, Hidehiko organization: Department of Oral and Maxillofacial Radiology, The University of Tokushima Graduate School – sequence: 1 fullname: Honda, Eiichi organization: Department of Oral and Maxillofacial Radiology, The University of Tokushima Graduate School |
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References | 2. 日本画像医療システム工業会:DICOM入門.初版.東京:篠原出版;2008 6. 早川吉彦.第7回アジア口腔顎顔面放射線学会議“Digital interoperability, DICOM and IHE”のまとめ.NPO法人 日本歯科放射線学会ニュースレター.2009;8:1-8 8. 鈴木真人.DICOM規格入門―基礎と運用方法―.(http://www.jira-net.or.jp/dicom/file/dicom_201007_nyumon_shika.pdf), 2011. 1. DICOM homepage: http://medical.nema.org, 2012. 9. 日本医用画像管理学会JSMIM:医用画像PACS.初版.東京:日本放射線技師会出版会;2006 4. Farman AG. Raising standards: digital interoperability and DICOM. Oral Surg Oral Med Oral Pathol Oral Radiol Endod. 2005; 99: 525-526. 11. 野地 保,荻野 正,周藤安造.医用画像工学における医療クラウドの展望.Medical Imaging Technology.2010;28:189-193 7. 医療情報システム開発センター・日本PACS研究会,IS&C標準化委員会Working Group 2-5:デジタル投影X線画像データフォーマット(DICOM 3.0,2000);2001 3. Farman AG. Use and implication of the DICOM standard in dentistry. Dent Clin North Am. 2002; 46: 565-573. 5. Farman AG. Applying DICOM to dentistry. J Digit Imaging. 2005; 18: 23-27. 10. PS 3.6-2009 Digital imaging and communications in medicine (DICOM) part 6: data dictionary. National Electrical Manufacturers Association. Rosslyn, Virginia; 2009. |
References_xml | – reference: 1. DICOM homepage: http://medical.nema.org, 2012. – reference: 4. Farman AG. Raising standards: digital interoperability and DICOM. Oral Surg Oral Med Oral Pathol Oral Radiol Endod. 2005; 99: 525-526. – reference: 7. 医療情報システム開発センター・日本PACS研究会,IS&C標準化委員会Working Group 2-5:デジタル投影X線画像データフォーマット(DICOM 3.0,2000);2001. – reference: 10. PS 3.6-2009 Digital imaging and communications in medicine (DICOM) part 6: data dictionary. National Electrical Manufacturers Association. Rosslyn, Virginia; 2009. – reference: 8. 鈴木真人.DICOM規格入門―基礎と運用方法―.(http://www.jira-net.or.jp/dicom/file/dicom_201007_nyumon_shika.pdf), 2011. – reference: 9. 日本医用画像管理学会JSMIM:医用画像PACS.初版.東京:日本放射線技師会出版会;2006. – reference: 11. 野地 保,荻野 正,周藤安造.医用画像工学における医療クラウドの展望.Medical Imaging Technology.2010;28:189-193. – reference: 6. 早川吉彦.第7回アジア口腔顎顔面放射線学会議“Digital interoperability, DICOM and IHE”のまとめ.NPO法人 日本歯科放射線学会ニュースレター.2009;8:1-8. – reference: 2. 日本画像医療システム工業会:DICOM入門.初版.東京:篠原出版;2008. – reference: 5. Farman AG. Applying DICOM to dentistry. J Digit Imaging. 2005; 18: 23-27. – reference: 3. Farman AG. Use and implication of the DICOM standard in dentistry. Dent Clin North Am. 2002; 46: 565-573. |
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SubjectTerms | DICOM file DICOM tag DICOMタグ image /DICOMファイル Intraoral radiographic Mapping template マッピングテンプレート 口内法X線画像 |
Title | Practical Realization of a Novel DICOM File for Intraoral Radiographic Image |
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