• Title/Summary/Keyword: Posture management

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Impact of Korean Workers' Experience of Exposure to the Physical Work Factors on Absence

  • Choi, Seo-Yeon;Lee, Seong-Jin
    • Journal of the Korea Society of Computer and Information
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    • v.22 no.6
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    • pp.149-156
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    • 2017
  • In this paper, we propose to enhance a Physical working conditions to decrease absence from work. we demonstrated the correlation of worker's absence with various environmental factors in workplace by surveying 6,962 workers. As result, first, concerning exposure to physical work factors, most of them complained of vibration, and concerning exposure to improper working posture, most of them complained of repetitive arm and hand motions. Second, the absence experience had correlations with age, monthly income, smoking, number of employees, long term working, and shift work, and of the physical factors, hand vibration, noise, high temperature, low temperature and improper working posture had correlations with physical pain posture, movement of people and carrying heavy materials. Third, experience of exposure to hand vibration, noise and low temperature of the physical factors had impact on absence, and of the improper working posture, physical pain posture and carrying heavy stuff had impacts on absence. Through this study, it was found that of the work factors of Korean workers, physical factors and improper working posture had impacts on absence. The results of this study confirmed that physical factors and inappropriate working posture among work factors influenced the absenteeism. Therefore, it is required to improve the work environment regarding physical risk factors and prepare a systematic management plan.

Evaluation of posture based on musculoskeletal system and design of customized exercise prescription (근골격계 기반의 자세 평가 및 맞춤형 운동 처방 전송 및 저장 시스템 설계)

  • Sim, Jong-seong;Kim, Hee-chul
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2018.05a
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    • pp.528-532
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    • 2018
  • In order to manage the correct posture in daily life, it is necessary to evaluate the objective posture and appropriate prescription and management. The posture evaluation program is widely used as a method to evaluate posture relatively easily and safely. However, the existing posture evaluation program is evaluated by utilizing the position of the skeletal system, but lacks feedback on the result of the evaluation because the muscle information causing the posture is lacking and the efficiency of the program is decreased. Therefore, we will improve the existing posture evaluation program and design the system that helps the correct posture management by the appropriate exercise prescription based on the feedback that the server measures and stores the evaluation result through the SOAP message.

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Evaluation of posture based on musculoskeletal system and design of customized exercise prescription (근골격계 기반의 자세 평가 및 맞춤형 운동 처방 전송 및 저장 시스템 설계)

  • Sim, Jong-seong;Kim, Hee-chul
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2018.10a
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    • pp.272-277
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    • 2018
  • In order to manage the correct posture in daily life, it is necessary to evaluate the objective posture and appropriate prescription and management. The posture evaluation program is widely used as a method to evaluate posture relatively easily and safely. However, the existing posture evaluation program is evaluated by utilizing the position of the skeletal system, but lacks feedback on the result of the evaluation because the muscle information causing the posture is lacking and the efficiency of the program is decreased. Therefore, we will improve the existing posture evaluation program and design the system that helps the correct posture management by the appropriate exercise prescription based on the feedback that the server measures and stores the evaluation result through the SOAP message.

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Ergonomics of Office Seating and Postures

  • Jeong, Byung Yong;Yoon, Ara
    • Journal of the Ergonomics Society of Korea
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    • v.33 no.2
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    • pp.167-174
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    • 2014
  • Objective: This research focuses on the working environment of office workers and aims to propose an ideal seating posture and chair design. Background: Generally, office workers having to seat in a fixed posture for long periods of time tend to suffer from an increased rate of musculoskeletal disorders. Method: The measurement and survey of 123 office workers on their working conditions and literature survey will lead to a suggestion of an ideal seating posture and workstation design theory. Results: Work environment satisfaction appeared low for chair and desks. Work-related pain over the last year was experienced among 47.2% of the respondents in shoulder (34.2%), neck (30.9%). Observation of working posture revealed that only 27.6% of workers utilize backrest during work. Conclusion: Office work embodies many situations where risks of musculoskeletal disorders may be high. Thus, the seated workplace must be set up to allow proper seating posture for workers. Application: The results of this study can be applied as baseline data for preventing musculoskeletal disorders of office workers.

The Study on Selection of human Model for Controllability Evaluation According to Working Postures

  • Kim, Do-Hoon;Park, Sung-Joon;Lim, Young-Jae;Jung, Eui-S.
    • Journal of the Ergonomics Society of Korea
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    • v.31 no.3
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    • pp.437-444
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    • 2012
  • The purpose of this study was to suggest appropriate human model for ergonomic evaluation considering working postures on 3D space. Background: Traditionally extreme design rules have been widely utilized at the stage of designing products. Body size of 5th percentile and 95th percentile in stature has been generally selected for controllability and clearance evaluation, respectively. However, these rules had limitations in reflecting working posture in ergonomic evaluation. Method: In order to define working posture on 3D space, not only sagittal plane but also lateral plane was considered. Kinematic linkage body model was utilized for representation of working posture. By utilizing the anthropometric data of 2,836 South Korean male populations, the point cloud for end points of linkage models was derived. The individuals who were lacking in certain controllability were selected as human models for the evaluation. Result: In case of standing posture it was found that conventional approach is proper for all controllability evaluations. Contrary to standing posture, tall people had less controllability on control location below shoulder point in sitting posture. Conclusion: From the derived proper range on controllability, ergonomic evaluation rule was suggested according to working posture especially in standing and sitting. Application: The results of the study are expected to aid in selection of appropriate human model for ergonomic evaluation and to improve the usability of products and work space.

Effects of Yoga Exercise on Physical Flexibility and Perception of Posture Management in Adolescents (요가운동이 청소년의 신체 유연성과 자세관리 인지에 미치는 효과)

  • Jung, Hyang-Mi;Kim, Yi-Soon
    • Child Health Nursing Research
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    • v.12 no.1
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    • pp.96-103
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    • 2006
  • Purpose: This study was done to evaluate the effects of Yoga exercise on improvements in physical flexibility, posture management behavior, and self-efficacy in adolescents. Method: In this study, the design was a quasi-experimental research design with a one group pretest-posttest design. Participants were 32 students from one high school in Busan Metropolitan City, Korea, who did not engage in regular aerobic exercise and were willing to participate in this study. Yoga exercise was conducted for 70 minutes twice a week for 15 weeks. The data were collected from March 16 to June 22, 2004. The data were analyzed using descriptive statistics, and paired t-test with SPSS Win 12.0. Results: Trunk flexibility, posture management behavior, and self-efficacy significantly increased after the yoga exercise. Conclusion: Yoga exercise is recommended as a useful nursing intervention that could help prevent spinal-curvature-related disorders among adolescents.

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Musculoskeletal pain and discomfort of dental hygiene students during scaling (일부 치위생학과 학생들의 스케일링 실습 과정에서의 근골격계 통증과 불편감)

  • Kang, Chae-Rim;Kang, Han-Sol;Kim, Ye-Bim;Kim, Ji-Hye;Ryu, Su-Bin;Park, Ji-Ho;Baek, Ye-Rim;Lee, Woo-Jeong;Lee, Jeong-Min;Choi, Eun-Jeong;Sim, Seon-Ju
    • Journal of Korean Academy of Dental Administration
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    • v.7 no.1
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    • pp.21-28
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    • 2019
  • The purpose of this study was to investigate the association between wrong postures and pain during scaling and encourage dental hygienists and students to exercise scaling in a good position. After obtaining informed consent, 107 students (3rd and 4th grade students) who had an experience with scaling practice were enrolled. The questionnaire included three general items, four items related to the posture during scaling, and nine items related to pain management (total 16 items), for which the five-point Likert scale was used. Through the questionnaire, we examined the preference of posture during scaling, posture education during scaling, pain in each part during scaling, pain management, and pain management method. In the scaling exercise, 86.3% of the subjects were instructed on the correct posture, and 87.9% of the subjects perceived the possibility of inducing musculoskeletal disorders based on the scaling posture. The percentage of subjects who responded that they performed scaling in the correct posture was 33.6% and that of subjects who answered that they bowed or turned their head by more than 15° was 64.4%. Further, 45.7% of the subjects answered that they bent their shoulders, and 29.9% of the subjects answered that their postures were not parallel to the floor. Pain during scaling was still higher when they bent their head, they bent their waist, and they bent their wrist (p<0.05). During scaling, pain was most frequent in the fingers and hands (15%), followed by the neck (14%), shoulders (11.2%), waist (9.3%), and feet and legs (2.8%). The percentage of subjects who performed regular exercise (or stretching) to prevent pain was 29.9% and that of subjects who managed pain after scaling was 12.1%. Further, exercise (24.6%) and self-massage (20.3%) were highly used as the pain management methods, and the school practice was preferred to education media for pain management (79.4%). In the scaling practice, there was a training on pain management, but the frequency of practicing in the wrong posture was high. Moreover, pain increased upon practicing in an incorrect posture. Therefore, more in-depth and systematic education on the necessity and method of musculoskeletal disease management during scaling is required.

Psychophysical cost function of joint movement for arm reach posture prediction

  • 최재호;김성환;정의승
    • Proceedings of the Korean Operations and Management Science Society Conference
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    • 1994.04a
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    • pp.561-568
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    • 1994
  • A man model can be used as an effective tool to design ergonomically sound products and workplaces, and subsequently evaluate them properly. For a man model to be truly useful, it must be integrated with a posture prediction model which should be capable of representing the human arm reach posture in the context of equipments and workspaces. Since the human movement possesses redundant degrees of freedom, accurate representation or prediction of human movement was known to be a difficult problem. To solve this redundancy problem, a psychophysical cost function was suggested in this study which defines a cost value for each joint movement angle. The psychophysical cost function developed integrates the psychophysical discomfort of joints and the joint range availability concept which has been used for redundant arm manipulation in robotics to predict the arm reach posture. To properly predict an arm reach posture, an arm reach posture prediction model was then developed in which a posture configuration that provides the minimum total cost is chosen. The predictivity of the psychophysical cost function was compared with that of the biomechanical cost function which is based on the minimization of joint torque. Here, the human body is regarded as a two-dimensional multi-link system which consists of four links ; trunk, upper arm, lower arm and hand. Real reach postures were photographed from the subjects and were compared to the postures predicted by the model. Results showed that the postures predicted by the psychophysical cost function closely simulated human reach postures and the predictivity was more accurate than that by the biomechanical cost function.

Machine-Learning based Smart Seat for Correction of Driver's Posture while Driving (기계학습 기반의 주행중 운전자 자세교정을 위한 지능형 시트)

  • Park, Heum;Lee, Changbum
    • Journal of Korea Society of Digital Industry and Information Management
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    • v.13 no.4
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    • pp.81-90
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    • 2017
  • This paper presents a smart seat for correction of driver posture while driving. We introduce good postures with seat height, seat angle, head height, back of knees, distances of foot pedals, tilt of seat, etc. There have been some studies on correction of good posture while driving, effects of driving environment on driver's posture, sitting strategies based on seating pressure distribution, estimation of driver's standard postures, and others. However, there are a few studies on guide of good postures while driving for problem of driver's posture using machine leaning. Therefore, we suggest a smart seat for correction of driver's posture based on machine leaning, 1) developed the system to get postures by 10 piezoelectric effect element, 2) collect piezoelectric values from 37 drivers and 28 types of cars, 3) suggest 4 types of good postures while driving, 4) analyze test postures by kNN. As the results, we can guide good postures for bad or problems of postures while driving.

인간-기계 인터페이스 모형의 개발을 위한 Reach posture의 예측

  • 기도형;정의승;정민근
    • Proceedings of the Korean Operations and Management Science Society Conference
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    • 1992.04b
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    • pp.592-601
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    • 1992
  • Reach posture의 정확한 예측은 인간모형이 구현되어 있는 CAD시스템에서 인간공학적 평가를 하는데 있어서 중요한 역할을 한다. 인간 골격구조의 복잡성과 그 행위의 특성에 대한 연구의 부족으로 인해 연구성과가 미미한 어려운 분야라 하겠다. 본 연구에서는 인간을 로보트와 같은 Multi-link system으로 간주하고, 로보트 Kinematics를 적용하여 Reach posture를 예측하고자 한다. 상지는 Hip, 어깨, 팔꿈치와 손목관절로 구성된 8자유도의 Redundant manipulator가 되고, 하지는 Hip, 무릎과 발목관절의 6자유도 link system이 된다. 상지의 Reach posture는 Resolved motion method를 이용하고, 하지는 Pieper's method를 사용하여 예측한다. 상지에 대한 Reach posture예측결과를 인간이 실제로 취하는 자세를 Motion Analysis system으로 검증해 본 결과 유사한 결과를 보였다.

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