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The application of RFID on drug safety of inpatient nursing healthcare

The application of RFID on drug safety of inpatient nursing healthcare. Advisor : Dr. Hsu Presenter : Yu-San Hsieh Author : Fan Wu, Frank Kuo and Lie-Wei Liu. 2005. ICEC.85-92. Outline. Motivation Objective Approach Efficiency analysis Introduction System Function Conclusions.

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The application of RFID on drug safety of inpatient nursing healthcare

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  1. The application of RFID on drug safety of inpatient nursing healthcare Advisor : Dr. Hsu Presenter : Yu-San Hsieh Author : Fan Wu, Frank Kuo and Lie-Wei Liu 2005. ICEC.85-92

  2. Outline • Motivation • Objective • Approach • Efficiency analysis • Introduction • System Function • Conclusions

  3. Motivation • The medical mistakes would happen in each hospital, i.e., mismatch, over-dosage, or drug-errors, and the factors causing the mistake are different from one to one.

  4. Objective • Reducing medical error is the primary goal to enhance patient safety.

  5. 915MHZ Approach • System Development • On the doubts and worries about patient’s health problem, from the electromagnetic wave passive 915 MHZ EIRP is lower than 500mW than Wireless, blue tooth, etc.

  6. Approach After the doctor make the order • System Structure

  7. Efficiency analysis • The core benefit and efficiency of intervening RFID drug safety system in hospital • Drug stock control management • The time limit of drugs management • Immediately suggestion • Recognition for drug info • Right drug in time • High dangerous drug control • Pharmaceutical Counterfeit

  8. Introduction • Australia Wilson(1995) roughly divided the medical mistakes into two type • Errors of omission • Errors of commission • Albert Wu(1991) made a questionnaire to 254 internists in American hospital • 45% of the doctor have experiences in making seriously medical mistake. • 29% of these mistakes are the medicine mistakes.

  9. Introduction • Bedell (1991)indicated that taking the wrong medicine is one of the main reasons causing the unexpected death of the patient. • Because of the numerous inpatients and limited nurses to care them, the drug mistake such as wrong dosage, missing or passing feeding time, giving the drug to the wrong patient and so on, occurs so often.

  10. Introduction • Two mechanism are used to facility the matching between the drug and patients • The patients hangs a ring on the wrist upon which there is a bar code for identification. • The parcel of drug are printed with a bar code for description. • The bar code has some shortcomings • It is subject to damage and covering. • It contains fixed and limited information.

  11. Introduction • RFID can provide a direct and continuing recognition, including the identification, position, and trace of patient, drug or medical utilities. • Frank Kuo et. al.(2004) indicated that the application of RFID to the medicine can be divided into many categories, including the patient identification, the avoidance of wrong usage of drugs, the warehouse management of medicine objects and the prevention of the fake drugs.

  12. System Function

  13. System Function

  14. Conclusions • The system can reduce the cost and increase the efficiency in collecting data in the front end of the traditional MIS. • Through the introduction of RFID into MIS, the drug safety of inpatient nursing healthcare can improve.

  15. My opinion • Advantage: • Disadvantage: • Apply: • Operation room(手術室) management • Arrangement in emergency department • Controlling and isolating of disease (SARS)

  16. Journal and Conference

  17. Paper命名規則 • <西元年份>.<出版刊物縮寫>.<頁數>.<論文題目> • 出版刊物縮寫:未出現在清單中,取刊物的第一個字母為縮寫 • Journal • International Journal of Electronic Business (IJEB) • Journal of Computer Information Systems (JCIS) • Australian Journal of Information Systems (AJIS) • Conferences • Hawaii International Conference on System Sciences (HICSS) • International Conference on Artificial Intelligence and Law (ICAIL) • International Conference On Knowledge Capture (ICKC)

  18. 電子期刊資料庫 • Science Direct OnSite (SDOS) • 提供全球最大出版商 Elsevier 發行的 1,300 種電子期刊,涵蓋主題包括科技、醫學、經濟及商業管理等;透過網際網路,使用者可線上查詢、瀏覽、列印、及下載所需要的期刊論文。 • Science Direct • 與SDOS為同一電子期刊系統, 但Science Direct 連線速度與系統功能較SDOS更快捷且完整。 • 為SDOS之原始系統。

  19. 電子期刊資料庫 • ACM Digital Library • Association for Computing Machinery 所出版之電子資料庫,收錄該學會所出版之 27 種從 1985 年至最近一期之 ACM期刊全文和雜誌,以及相關之會議論文集。 • IEEE Xplore (IEEE/IEE Electronic Library online) • 提供 IEEE 及 IEE 自1988年以來所出版之120種期刊、600種會議論文集及875 種IEEE 工業標準之Web 版全文資料。

  20. Search • Google Scholar • http://scholar.google.com.tw/ • CiteSeer • http://citeseer.ist.psu.edu/?&fc • citeseer收錄現今電腦工程與電腦科學重要研究資料,至今超過30萬筆的文件資料以及4百萬筆的引用文獻,收錄涵蓋電子計算機科學、工程、科學相關電子文獻 • 搜尋關鍵字有大小寫的差別;”datamining”及”DataMining”是不相同的 • 搜尋“science”和“computer”是否同時在文章中出現過,請將個別字串用空白隔開輸入,例如:”science computer” • 搜尋個別字串"science"和"computer"字串是否同時在文章中出現過,請在個別字串中間加上and輸入,例如:”science and computer”

  21. Search • Digital Bibliography & Library Project (DBLP) • http://www.informatik.uni-trier.de/~ley/db/index.html • 提供電腦科學相關書籍、期刊、會議論文等書目、尚可查詢此領域內電腦專家的個人網頁

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