• Title/Summary/Keyword: Medical technologists

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The Efficiency of BMD Cross-calibration for each different DEXA-System and Measurement of Precision used by Phantom (Phantom를 이용한 Precision의 측정과 서로 다른 DEXA System의 BMD 교차보정의 유용성)

  • Lee seung un;Choi yu jin;Lee pyeong jae;Kwon young he;Jung sun sun;Seo kil won;Whang seung yeon
    • Journal of The Korean Radiological Technologist Association
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    • v.30 no.1
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    • pp.41-48
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    • 2004
  • To know the Difference of BMD value actually measured by the Hologic equipment and the Lunar equipment that is the latest machine due to the acknowledgement for the difference of value when the follow-up test was performed by other different equipment aft

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The analysis of difference in the relative renal function based on total counts method and average counts method (총 계수 분석법과 평균 계수 분석법에 따른 신장 기능의 차이 분석)

  • JUNG WOO-YOUNG;CHO SHEE-MAN;PARK SEUNG-YONG;SHIM DONG-OH
    • Journal of The Korean Radiological Technologist Association
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    • v.29 no.1
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    • pp.44-49
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    • 2003
  • Purpose : $^{99m}Tc-DMSA$ renal scan can be used in the evaluation of relative renal function and some anatomy. The relative renal function can be assess by measurement of $^{99m}Tc-DMSA$ uptake by the individual kidney. Renal counts

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Requirements for Future Digital Radiology System

  • Kim, Y.M.;Park, H.W.;Haynor, D.R.
    • Progress in Medical Physics
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    • v.2 no.1
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    • pp.3-16
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    • 1991
  • Abstract. An area of particularly rapid technological growth in the last 15 years has been medical imaging (conventional X-ray, ultrasound, X-ray computed tomography (CT), magnetic resonance imaging (MRI). As the number and complexity of imaging studies rises, it becomes ever more important to distribute these images and the associated diagnoses in a timely and cost-effective fashion. The purpose of this paper is to describe the requirements for a future digital radiology system which will efficiently handle the large volume of images that generated, add new functionality to improve productivity of physicians, technologists, and other health care providers, and provide enough flexibility to allow the system to grow as medical image technology grows.

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Analysis of Research Papers Published in the Korean Journal of Clinical Laboratory Science from 1985 to 2012

  • Koo, Bon Kyung
    • Korean Journal of Clinical Laboratory Science
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    • v.45 no.4
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    • pp.180-187
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    • 2013
  • The author surveyed and analyzed the research papers of korean journal of clinical laboratory science (KJCLS) that have been posted for 28 years from 17 volumes in 1985 to 44 volumes in 2012 in the time of 50th anniversary of foundation of the korean association of medical technologists (KAMT) of in 2012. This study is aimed to provide members with basic materials helpful to research development and suggest development measures of journal. The author analyzed the number of papers, research field, type of papers, and number of authors based on the title of paper. The total number of papers is 916 and average number of paper is 33. The research field was biochemistry 167 (18.2%), microbiology 160 (17.4%), histology & cytology 99 (10.8%), molecular genetics 77 (8.5%), hematology 69 (7.5%), physiologic function 64 (7.0%), immunology 60 (6.5%), blood bank 33 (3.6%), radioimmunoassay 33 (3.6%), parasitology 27 (2.9%), quality control 18 (2.0%), urinalysis & body fluid 13 (1.4%), cytogenetics 12 (1.3%), flow cytometry analysis 6 (0.7%), and other articles were 78 (8.5%). Regarding the type of papers, original article was 777 (84.8%), case report 52 (5.7%), review 23 (2.5%), others 64 (7.0%). Regarding the number of paper authors, single author was 208 (22.7%), 2-man joint authors 178 (19.4%), 3-man joint authors 181 (19.8%), 4-man joint authors 151 (16.5%), over-5-man joint authors 198 (21.6%). The average number of papers was 33 for 28 years from 1985 to 2012, it is fewer than number of technologists and professors working currently regardless of the level of quantity and quality. The KAMT needs paper promoting measures and strategic investment on the scholarly journals that can aggressively promote to members and inspire research desire for korea citation index (KCI) registered article selection of KJCLS in the future.

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A Survey on Perception Level of the Radiological Technologist's about Culture of Patient Safety (환자안전 문화에 대한 방사선사의 인식도 조사)

  • Jeon, Min-Cheol;Kim, Young-Il;Jang, Jae-Uk;Han, Man-Seok;Seo, Sun-Youl
    • Journal of Digital Convergence
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    • v.12 no.2
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    • pp.423-430
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    • 2014
  • Patient safety culture for the general hospital to investigate the perception of radiological technologists, managing of the patient safety provides the Foundation for the safety activities as a basis to develop a program for providing. Patient safety culture for the general hospital to investigate the perception of Radiological technologists, the duration of the survey of the study on June 13, 2012 to June 20, and five general hospitals worked on Radiological technologists workers were material and analyzed the target of 198 (SPSS ver. 19.0). Patient safety activities within the Department, the factors affecting direct care, communication, medical malpractice, hospitals rated, safe for the patient safety culture and the reported accidents, dangerous and caused an accident, most feel that patient safety incident reporting system according to the results of evaluating medical accidents patient safety culture regarding recognition, work appeared in more than 25 years, even the most highly evaluated, the working period of 10 patient safety to 15 years the most highly. Therefore, General Hospital, Director of the patient safety culture improvement of radiation in order to have sufficient staffing, aggressive approach to patient safety issues, and safe working period of relapse prevention of accidents to the radiation as well as giving systematic consideration of mission medical accident reporting system will be active.

Study on the Fourth Industrial Revolution and Clinical Laboratory Science Techniques (4차 산업혁명과 임상검사과학기술에 관한 연구)

  • Sung, Hyun Ho;Choi, Kwang-Mo;Jung, You Hyun;Cho, Eun Kyung
    • Korean Journal of Clinical Laboratory Science
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    • v.51 no.3
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    • pp.386-395
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    • 2019
  • The aim of this study was to introduce clinical laboratory science techniques with the core technology of the 4th Industrial Revolution. Among the core technologies of the 4th Industrial Revolution, AI, IOT, block-chain, robotics, and nanotechnology were analyzed and linked by themes. The scope of the job of clinical laboratory technologists (also known as medical laboratory technologists and medical technologists) is laboratory medicine testing, pathology testing, and clinical physiology testing. Through a number of previous papers, 73 linkages in the laboratory medicine area, 27 linkages in the pathology area, and 47 linkages in the clinical physiology area were examined. In the 4th industrial revolution and clinical laboratory science techniques, AI (4), IOT (3), block-chain (4), robotics (3) and nanotechnology (15) sectors were surveyed. The limitation of this study was the limitation in collecting and analyzing all the data and non-clinical areas were not analyzed. In addition, there was no validity test and no similar study. In conclusion, the core technologies of the 4th industrial revolution and clinical laboratory science techniques are closely related. Therefore, further research on the future and social benefits of clinical laboratory science techniques is needed.

A study on the strategies to lower technologist occupational exposure according to the performance form in PET scan procedure (PET 검사실 종사자의 업무 행위 별 방사선피폭 조사에 따른 피폭선량 저감화를 위한 연구)

  • Ko, Hyun Soo;Kim, Ho Sung;Nam-Kung, Chang Kyeoung;Yoon, Soon Sang;Song, Jae Hyuk;Ryu, Jae Kwang;Jung, Woo Young;Chang, Jung Chan
    • The Korean Journal of Nuclear Medicine Technology
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    • v.19 no.1
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    • pp.17-29
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    • 2015
  • Purpose For nuclear medicine technologists, it is difficult to stay away from or to separate from radiation sources comparing with workers who are using radiation generating devices. Nuclear medicine technologists work is recognized as an optimized way when they are familiar with work practices. The aims of this study are to measure radiation exposure of technologists working in PET and to evaluate the occupational radiation dose after implementation of strategies to lower exposure. Materials and Methods We divided into four working types by QC for PET, injection, scan and etc. in PET scan procedure. In QC of PET, we compared the radiation exposure controlling next to $^{68}Ge$ cylinder phantom directly to controlling the table in console room remotely. In injection, we compared the radiation exposure guiding patient in waiting room before injection to after injection. In scan procedure of PET, we compared the radiation exposure moving the table using the control button located next to the patient to moving the table using the control button located in the far distance. PERSONAL ELECTRONIC DOSEMETER (PED), Tracerco$^{TM}$ was used for measuring exposed radiation doses. Results The average doses of exposed radiation were $0.27{\pm}0.04{\mu}Sv$ when controlling the table directly and $0.13{\pm}0.14{\mu}Sv$ when controlling the table remotely while performing QC. The average doses of exposed radiation were $0.97{\pm}0.36{\mu}Sv$ when guiding patient after injection and $0.62{\pm}0.17{\mu}Sv$ when guiding patient before injection. The average doses of exposed radiation were $1.33{\pm}0.54{\mu}Sv$ when using the control button located next to the patient and $0.94{\pm}0.50{\mu}Sv$ when using the control button located in far distance while acquiring image. As a result, there were statistically significant differences(P<0.05). Conclusion: From this study, we found that how much radiation doses technologists are exposed on average at each step of PET procedure while working in PET center and how we can reduce the occupational radiation dose after implementation of strategies to lower exposure. And if we make effort to seek any other methods to reduce technologist occupational radiation, we can minimize and optimize exposed radiation doses in department of nuclear medicine. Conclusion From this study, we found that how much radiation doses technologists are exposed on average at each step of PET procedure while working in PET center and how we can reduce the occupational radiation dose after implementation of strategies to lower exposure. And if we make effort to seek any other methods to reduce technologist occupational radiation, we can minimize and optimize exposed radiation doses in department of nuclear medicine.

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Calculation of Human Resources for Medical Technologist in Diagnostic Testing (진단검사분야의 임상병리사 인력산정에 관한 연구)

  • Yang, Byoung Seon;Lim, Yong;Kim, Yoon Sik;Oh, Yeon Suk;Bae, Do Hee;Choi, Se Mook
    • Korean Journal of Clinical Laboratory Science
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    • v.52 no.2
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    • pp.158-163
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    • 2020
  • This study examines and presents reasonable improvement measures for the operation and revision of the relative value scoring system, and the basis for performance of a medical technologist. Seven hospitals were enrolled in the study, and included 5 resident laboratory medicine specialists and 53 medical technologists, giving a ratio of 10.6 technologists per laboratory medicine specialist. The average of professional manpower scores was 18, and the average of each medical institution's total score was 78. Ratings and additional rates were in the range 2~3%, and quality-added ratios were 2~3%, with no significance. Excluding pathological testing and assessing physiological functions, the average number of diagnostic tests for health insurance claims were 9,618,062, including 4,378,146 points for 5% of the total relative value scores. According to the DEA, the appropriate number of medical technologist is one person per 49,974 points of relative value. In conclusion, our study results indicate that it would be desirable to set the appropriate workforce for medical technologist to one person per 50,000 points of relative value. Our data could be used as a basis for enhancing productivity of the workforce and balancing health care resources.

The Study on the Perceptions of Radiological Technologist in Medical Imaging Equipment Used by the Oriental Doctor (한의사의 의료영상장비 사용에 대한 방사선사의 인식도)

  • Choi, Jae-Ho;Kang, Gi-Bong;Kim, Sang-Hyun;Kim, Tae-Hee;Kim, Gyoo-Hyung;Lee, Mi-Hwa;Ahn, Jung-Seong;Hong, Seong-Wan;Lee, Jae-Seok;Kwon, Ick-Su;Park, Jae-Yoon
    • Journal of radiological science and technology
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    • v.40 no.1
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    • pp.109-120
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    • 2017
  • In order to examine how Radiological Technologists perceive the oriental doctor's use of Medical Imaging Equipment, surveys were conducted for the members of the Korean Radiological Technologists Association. The total number of respondents were 515 and 481, with 34 insincere responses removed caused of nonvalidated answer. The results of the analysis are as follows. Although there were no statistical significance in the difference in perception by location of residence, work place, and educational background, respondents with higher education showed a tendency to agree on the use of comprehensive medical imaging equipment, but tended to oppose the use of special medical imaging equipment. Differences in perception by gender showed a greater negative perception toward the oriental doctor's use of medical imaging equipment by women than men. In particular, women showed more negative tendency for oriental doctor's use of special medical imaging equipment such as MRI, CT, and ultrasound equipment compared to men, and this was statistically significant. The difference in perception by age showed that the oriental doctor's use of medical imaging equipment was negative in the 20~30s, neutral in the 40~50s, and positive in the 60s, which were statistically significant. The difference in perception by work experience showed that the longer the work experience was, the more positive it was toward oriental doctor's use of medical imaging equipment. Specifically, the most favorable tendency was found with work experience of more than 30 years, which was statistically significant. The results of this study revealed the Radiological Technologists' perceptions on the oriental doctor's use of Medical Imaging Equipment and this can contribute to the direction of public health promotion in the future.

Current Status and Future of PACS in Seoul National University Hospital

  • Cho Myung Soon;Kim Jong Hyo
    • Journal of The Korean Radiological Technologist Association
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    • v.25 no.1
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    • pp.18-18
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    • 1999
  • We have studied DR of medical science at SNUH since early 90's, founded the basis of Picture Archiving Communication System(PACS) used for actual clinic parts, has acquired images gradually since January H and came to acquire images in all examinations ex

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