• Title/Summary/Keyword: Curriculum for the Radiological Sciences

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Radiological Science Curriculum on the Digital Radiology Environments : Problems and Suggestions (디지털 방사선 환경에서의 방사선학과의 교육과정에 대한 현황과 개선 방향)

  • Kim, Chang-Soo;Kim, Hwa-Gon
    • Journal of radiological science and technology
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    • v.28 no.2
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    • pp.129-135
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    • 2005
  • IT communication industries of current society are developed in enormous growth, our country leading the world in the number of super high speed internet equipments in use. In the pride oneself on communication network of those, mobile terminal technology and wireless phone production hold a high rank. Data communication and networking may be the fastest growing technologies in our culture today. In this way, IT fields conjugated in the daily quick, the fact that department of radiological science didn't discharged one's duties on current IT education. The curriculum of radiological technologists that play an important part between skill and occupation's education as major and personality didn't performed one's part most effectively on current IT environments and digital radiological equipments interface. Therefore, in this paper current curriculum of radiological science are catched hold of trend and problems on digital radiology environments, on fact the present state of problems, for radiological engineering and HIS manager, new curriculum course are suggested a reform measure of culture and major education curriculum introduction.

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Study of Graduate Curriculum in the Radiological Science : Problems and Suggestions (방사선학과의 대학원 교육과정에 대한 연구)

  • Ko, Seong-Jin;Kim, Hwa-Gon;Kang, Se-Sik;Park, Byeong-Rae;Kim, Chang-Soo
    • Journal of radiological science and technology
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    • v.29 no.4
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    • pp.293-301
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    • 2006
  • Currently, Educational program of radiological science is developed in enormous growth, our educational environments leading allied health science education program in the number of super high speed medical industry. Radiological science may be the fastest growing technologies in our medical department today. In this way, Medical industry fields converged in the daily quick, the fact that department of radiological science didn't discharged ones duties on current educational environments. The curriculum of radiological technologists that play an important part between skill and occupation's education as major and personality didn't performed one's part most effectively on current medical environments and digital radiological equipments interface. We expect improvement and suggestion to grow natural disposition as studies in the graduate of radiological science. Therefore, in this paper, current curriculum of radiological science are catched hold of trend and problems on digital radiology environments, on fact the present state of problems, for Graduate program of radiological science, graduate courses of MS and Ph.D. are suggested a reform measure of major education curriculum introduction.

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Analysis of the Importance of Subjects to Improve the Educational Curriculum in the Radiological Science - Focused on Radiological Technologists - (방사선(학)과 교육과정 개선을 위한 교과목 중요도 분석 - 방사선사를 중심으로 -)

  • Kim, Jung-Hoon;Ko, Seong-Jin;Kang, Se-Sik;Kim, Dong-Hyun;Kim, Chang-Soo
    • Journal of radiological science and technology
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    • v.35 no.2
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    • pp.125-132
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    • 2012
  • In this study a group of experts and clinical radiological technologists were surveyed to evaluate the clinical importance of current subjects in the radiological sciences. For the data collection and analysis, an open-ended questionnaire was distributed to the group of experts, and a multiple choice questionnaire was distributed to radiological technologists. Subjects were classified into 9 groups for analysis of the importance of subjects, and in regard to the questionnaire design for measurement of variables, departments and type of hospital were set up as independent variables, and the 9 groups of subjects were set up as dependent variables. As a result, clinical radiological technologists perceived Diagnostic Imaging Technology and practical courses, including general radiography, CT and MRI, as the most clinically necessary subjects, and the group of experts placed most weight on basic courses for the major. The result of this study suggests that the curriculum should be revised in a way that combines theory and practice in order to foster radiological technologists capable of adapting to the rapidly changing healthcare environment.

Study on The Planning and Operation of Training Education in Radiologic Science for Reduced x-ray Exposure (방사선(학)과 실습교육에서 X선 피폭 감소를 위한 운영방법에 대한 연구)

  • Kil, Jong-Won;Park, Jung-Ho;Kim, Yong-Gwon
    • Journal of the Institute of Electronics and Information Engineers
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    • v.51 no.12
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    • pp.174-179
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    • 2014
  • In this study, we measure the radiation dose for every experiments performed during the training education in radiologic science and estimate the radiation dose to each participant in the training education to propose a safe curriculum including operation of the training education. In this paper, we optimized the three parameters and the results show the dramatically reduced radiation dose to each participant. The proposed arrangement of the subjects and operation of the training education will be very helpful to reorganize the curriculum and the subject operation and will protect the students from the radiation dose.

An Analysis on the Satisfaction of Radiology Students with their Major (방사선(학)과 학생들의 전공만족도분석)

  • Kim, JungHoon;Kang, SeSik;Kim, ChangSoo
    • Journal of radiological science and technology
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    • v.39 no.2
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    • pp.247-256
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    • 2016
  • This study was conducted with a goal to identify the factors that determine radiology students' satisfaction with their major and to provide the basic data for efficient education and career guidance. The result indicated that the students' satisfaction with the professors' roles was high. However, overall, the level of satisfaction with the curriculum was found to be low. In addition, it was analyzed that there was a large gap between recognition and practice of self-directed learning. In the correlation analysis, the professors' roles were also found to be a very important factor. Based on the result, the professors' roles of center(teaching or state examination, students with questions etc.,), it was concluded that improvement of the radiology students' satisfaction with their major would help the students adapt themselves to the major and school successfully and develop a positive character to perform as professionals in the future.

A Study on Four-year College Curriculum for the Education of Radiological Technology in Korea (방사선학과(放射線學科)의 4년제(年制) 대학(大學) 교육과정(敎育課程)에 대한 연구(硏究))

  • Choi, Jong-Hak;Lee, Sang-Suk;Kim, Young-Il;Kwon, Dal-Gwan;Kim, Heung-Tae;Lim, Han-Young
    • Journal of radiological science and technology
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    • v.18 no.2
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    • pp.87-102
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    • 1995
  • The education of radiologic technology began in the regular institute of higher education in Korea in 1963. Up to now from then, our education to bring up the radiologic technologists has developed greatly in quality and quantity, and now departments of radio-technology are founded in the 16 junior colleges in March, 1995. This study was done to verify the necessity and propriety to reform the education system of radiologic technology which was run as two or three year system of college curriculum for 32 years since 1963, and to search for the method to reform in the future. We got the following results from this research. 1. In the survey, on the desirable education year for radiologic technologists, 63.9 % of professors of department of radio-technology and 63.0 % of radiologic technologists chose the 4 year system, 27.9 % of professors and 34.6 % of radiologic technologists chose the 4 year system added to graduate school. 2. In the survey, on the future development of radiologic equipments and technique, 67.2 % of professors of department of radiologic technology and 86.4 % of radiologic technologists have a view of "revolutional development". Also, on the future tasks or roles of radiologic technologists 95.1% of professors and 94.9% of radiologic technologists have a view that "They will increase". 3. On the necessity of extension of education year to 4 years from 3 years, the factor is that development of medical technique and machinery and tools, advance of qualification of radiologic technologists, enlargement and specialization of the business of the radiologic technologists, ballance of education year with other medical sciences, international competitive power and cooperation of radiologic technology, and education continuation of the graduates of department of radiologic technology. 4. They suggested that in the 4 year curriculum of department of radiologic technology, clinical medicine, quality control of radiation and radiologic equipment, related subjects to the radiologic application and computer application should be enforced and clinical practice should be extended more. 5. On the device to found the 4 year college curriculum of radiologic technology, they suggested that first, 4 year curriculum should be founded through the variety of educational year, secondly, department of radiologic technology should be founded in the 4 year health sciences college, thirdly, educational continuation of the radiologic technologists should be systematized on the basis of life-long education.

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Current condition of humanities and social sciences classes in the pubic health curricula (보건계열 교육과정에서의 인문사회학 교과목 현황)

  • Moon, Sang-Eun;Kim, Yun-Jeong;Kim, Seon-Young
    • Journal of Korean society of Dental Hygiene
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    • v.14 no.6
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    • pp.961-966
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    • 2014
  • Objectives: The purpose of the study was to investigate the classes of humanities and social sciences in the public health curricula. Methods: Data were collected through online received from 329 public health curricula from July to August, 2014. Categorized are introduction, management of hospital, medical health law, and ethics, patient psychology, others(communication, behavioral science, administration). The data were analyzed by a descriptive analyses and ${\chi}^2$-test(SPSS 12.0). Results: As a result of evaluate the classes of humanities and social sciences in the public health curriculum, 86.0% of department of occupational therapy, 71.4% of department of radiological technology and 72.6% of department of dental hygiene established more 4 classes. 92.1% of department physical therapy and 64.9% of department medical technology established more 5 credits. Numbers and credits of courses showed no differences by educational system. Conclusions: Humanities and social sciences are not popularly introduced in the most departments of public health sciences. Humanities and social sciences are very important and necessary for training competent future professionals in the public health sciences. So this study will provide the basic data for the introduction of humanities and social sciences in the public health curricula.

A Study on the Extension of School Years, Two to Three Years, for the Education of Radiologic Technology in Korea (전문대학(專門大學) 방사선과(放射線科)의 수업년한(修業年限) 연장(延長)에 관한 연구(硏究))

  • Choi, Jong-Hak;Lee, Sang-Suk;Kim, Young-Il;Jeon, Man-Jin;Kwon, Dal-Gwan;Park, Young-Sun;Lim, Han-Young;Kang, Se-Sik
    • Journal of radiological science and technology
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    • v.13 no.2
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    • pp.1-14
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    • 1990
  • As the institute of education teaching radiologic technology in Korea, different from others, junior college is the only institute which has been managed for it as a two-year educational course for 27 years since 1963 when it was established for the first time in our country irrespective of the needs of the times. But according to the development of medical equipment, variety of medical skill, increase of medical demands now a days, the supply of radiologic technology in modern medicine not only makes it advance as an inevitable factor but also broadens the area of its business systematically. Therefore, we got the following results after we had considered the necessity to lengthen the term of education and searched for the most reasonable way. 1. The term of study of the radiologic technologists in junior college must be lengthened to 3 years from 2 or 3 years regulated in the law of education. 2. In three-year curriculum, the subjects like basic medical science, science and engineering and ultramodern science, etc., which are lated to the new radiologic science must be taught in the junior colleges, and hospital practice also must be a compulsory subject in curriculum. 3. As the school years becomes longer, a lot of programs to make the study effective must be searched, researched and propelled forward.

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