• 제목/요약/키워드: lifting level

검색결과 128건 처리시간 0.025초

등척성 신전운동 시 요부근의 근 활성도 (Muscle Activity of Low Back Muscles During Isometric Back Extension Exercises)

  • 유원규;정영종;이재호;김창인
    • 한국전문물리치료학회지
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    • 제8권1호
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    • pp.76-88
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    • 2001
  • Back extension exercises have been used for rehabilitation of the injured low back, prevention of injury, and fitness training programs. However, excessive loading on low back can exacerbate existing structural weakness. The purpose of this study was to compare muscle activity of low back muscles during back extension exercises. Twenty healthy male subject s were evaluated. Electromyographic (EMG) activities of low back muscles at L1 and L5 level were recorded during seven different back extension exercises and two reference tasks by surface EMG and saved for data analysis. Reference tasks of lifting 20% and 40% of their body weight were included for comparison. The result were as follows: 1) Single-arm extension and single-leg extension exercises on quadruped position appeared to constitute a low-risk exercise for initial extensor strengthening. 2) When arm extension was combined with contralateral leg extension on quadruped position, EMG activities of low back muscles were increased. 3) EMG activity of low back muscles was highest during the trunk extension exercises on prone position. 4) EMG activities of low back muscles during arm and leg extension exercises on quadruped position were less than those of reference task of lifting 40% of their body weight. These result s have important implications for progressive back extensor muscle strengthening exercises in patients with back pain.

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사건연구를 활용한 한·중 FTA의 경제적 영향에 관한 연구 (A Review on the Korea·China FTA Economic Effects Using Event Study)

  • 민유주아나;서민교;양오석
    • 통상정보연구
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    • 제18권3호
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    • pp.73-100
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    • 2016
  • 본 연구는 한 중 FTA가 유발하는 효과를 주식시장을 중심으로 개별 기업 및 산업에 미치는 시장파급효과 탐색에 주목하였다. 분석결과는 다음과 같다. 첫째, 전반적으로 한 중 FTA가 한국경제에 긍정적 영향을 미칠 것이라는 예상과는 달리 발효정보(보도유보 해제일자)는 한국 유가증권시장 상장기업에게 부정적으로 작용하여 향후 양국의 FTA가 유발할 영향력을 간접적으로 보여주었다. 둘째, 산업별로 외국인 투자자의 입장에서 유인력이 있는 중국의 산업군은 한국 기업에게 비교열위로 작용하여 수익률이 하락하는 양상을 보였다. 이와 관련하여 외국인 보유 주식 비중은 국내투자자에게 기업경쟁력을 나타내는 신호효과를 주는 것으로 파악되었다. 셋째, 한 중 FTA를 통해 부정적 영향이 기대되는 산업군은 정보가 유출과 동시에 증권가격에 반영된 반면, 긍정적 영향이 기대되는 산업군은 실제 발효일에 이르기까지 정보의 확정적 영향력이 유보되는 성향을 보였다.

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면섬유가 보강된 폴리우레탄계 복합시트의 기초 물성 평가 (Evaluation on the Basic Properties of Polyurethane Composite Sheet Reinforced with Non-Woven Fabric)

  • 김지현;도승배;박정원;남기융;정철우
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2017년도 춘계 학술논문 발표대회
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    • pp.238-239
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    • 2017
  • Waterproofing is a very important process in terms of durability of buildings. The materials used for waterproofing work to protect the concrete structure from external deterioration factors. In particular, the waterproofing materials applied to the exterior of the concrete structure have various problems due to changes in the external environment and variables in the construction process. The waterproof layer is repeatedly dried and shrunk according to changes in the external moisture environment, and the surface may be deteriorated due to exposure to long-term sunlight. In the case of the roof waterproofing in the structure, the waterproof layer which does not have a sufficient curing period shows much swelling and floating phenomenon. These defects, such as swelling and lifting, account for most of the defects that occur in the waterproof layer of the concrete slabs. Generally, it is difficult to expect the same level of performance as the initial state even if the waterproofing work is repaired when a defect occurs. Therefore, it is possible to reduce the defects of the waterproof layer such as swelling and lifting by forming a waterproof layer which can be integrated with the concrete surface by using a polyurethane type waterproofing material having a relatively low defective ratio compared to other waterproofing materials. So in this study, the basic properties of polyurethane waterproof sheet reinforced with non-woven fabric are investigated in order to understand field applicability.

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상지의 움직임과 저항 적용에 따른 Formetric 4D를 이용한 척추의 3차원적 분석 (Three-dimensional Analysis of the Spine using Formetric 4D according to Upper Limb Movement and Resistance Application)

  • 김현진;신원섭
    • 대한물리의학회지
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    • 제15권3호
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    • pp.69-77
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    • 2020
  • PURPOSE: The aim of this study was to measure changes in spine inclination and thoracolumbar structure and morphology according to upper-extremity movements with and without resistance in order to evaluate the spine stability in workers. METHODS: Forty-eight middle-aged male workers (mean age, 40.48 ± 6.27 years) participated in this study. Using the spine analysis system, changes in the inclination of the spine and structure as well as shape of the thoracolumbar spine were measured. For posture measurement, the postures of standing, lifting the right and left arms (shoulder joint 90° flexion), and lifting with both arms were measured in random order. In addition, variables were measured using a resistance of 3 kg for each posture. The statistical significance level was set at α = .05 for all variables. RESULTS: There were statistically significant differences between the front and back inclinations of the spine, kyphotic curve of the thoracic spine, lordotic curve of the lumbar spine, rotation changes in the thoracolumbar spine, and rotation changes in the T4 vertebra (p < .05). However, there was no significant difference in the left and right tilts of the spine. In the post-hoc analysis, rotation changes in the T4 vertebra showed a significant difference in posture when resistance was applied to the left and right sides CONCLUSION: Causes of musculoskeletal diseases include excessive thoracic spine rotation, torsion, and hyperlordosis of the lumbar spine. Therefore, it is necessary to improve the working environment in order to ensure a healthy posture and prevent musculoskeletal diseases that can reduce the ability to carry various and/or excessive loads.

A collaborative simulation in shipbuilding and the offshore installation based on the integration of the dynamic analysis, virtual reality, and control devices

  • Li, Xing;Roh, Myung-Il;Ham, Seung-Ho
    • International Journal of Naval Architecture and Ocean Engineering
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    • 제11권2호
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    • pp.699-722
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    • 2019
  • It is difficult to observe the potential risks of lifting or turn-over operations in the early stages before a real operation. Therefore, many dynamic simulations have been designed to predict the risks and to reduce the possibility of accidents. These simulations, however, have usually been performed for predetermined and fixed scenarios, so they do not reflect the real-time control of an operator that is one of the most important influential factors in an operation; additionally, lifting or turn-over operations should be a collaboration involving more than two operators. Therefore, this study presents an integrated method for a collaborative simulation that allows multiple workers to operate together in the virtual world. The proposed method is composed of four components. The first component is a dynamic analysis that is based on multibody-system dynamics. The second component is VR (virtual reality) for the generation of realistic views for the operators. The third component comprises the control devices and the scenario generator to handle the crane in the virtual environment. Lastly, the fourth component is the HLA (high-level architecture)-based integrated simulation interface for the convenient and efficient exchange of the data through the middleware. To show the applicability of the proposed method, it has been applied to a block turn-over simulation for which one floating crane and two crawler cranes were used, and an offshore module installation for which a DCR (dual-crane rig) was used. In conclusion, the execution of the proposed method of this study is successful regarding the above two applications for which multiple workers were involved.

Comparison of Biomechanical Stress on Low Back(L5/S1) for One-hand and Two-hands Lowering Activity

  • Kim, Hong-Ki
    • 대한인간공학회지
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    • 제32권5호
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    • pp.413-420
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    • 2013
  • Objective: The objective of this study was to compare one-hand and two-hands lowering activity in terms of biomechanical stress for the range of lowering heights from knuckle height to 10cm above floor level. Background: Even though two-hands lifting/lowering activity of manual materials handling tasks are prevalent at the industrial site, many manual materials handling tasks which require the worker to perform one-hand lifting/lowering are also very common at the industrial site and forestry and farming. Method: Eight male subjects were asked to perform lowering tasks using both a one-handed as well as a two-handed lowering technique. Trunk muscle electromyographic activity was recorded while the subjects performed the lowering tasks. This information was used as input to an EMG-assisted free-dynamic biomechanical model that predicted spinal loading in three dimensions. Results: It was shown that for the left-hand lowering tasks, the values of moment, lateral shear force, A-P shear force, and compressive force were increased by the average 6%, as the workload was increased twice from 7.5kg to 15kg. For the right-hand lowering task, these were increased by the average 17%. For the two-hands lowering tasks, these were increased by the average 14%. Conclusion: Even though the effect of workload on the biomechanical stress for both one-hand and two-hands lowering tasks is not so significant for the workload less than 15kg, it can be claimed that the biomechanical stress for one-hand lowering is greater than for two-hands lowering tasks. Therefore, it can be concluded that asymmetrical lowering posture would give greater influence on the biomechanical stress than the workload effect for one-hand lowering activity. Application: The result of this study may be used to provide guidelines of recommended safe weights for tasks involved in one-hand lowering activity.

대역별 웨이블릿 계수특성을 이용한 장면전환점 검출기법 (Cut Detection Algorithm Using the Characteristic Of Wavelet Coefficients in Each Subband)

  • 문영호;노정진;유지상
    • 한국통신학회논문지
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    • 제29권10C호
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    • pp.1414-1424
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    • 2004
  • 본 논문에서는 동영상의 장면전환점 중 급진적인 장면전환점인 컷(cut)과 점진적인 장면전환점인 페이드(fade)와 디졸브(dissolve) 구간을 웨이블릿 변환영역에서 검출하는 알고리즘을 제안한다. 웨이블렷 변환을 이용한 기존의 연구들은 공간영역과 변환영역 각각의 특징을 이용하여 장면전환점을 검출한다. 그러나 본 논문은 입력된 컬러영상을 먼저 YW 공간으로 변환하고, Y 성분에 대해 리프팅기법을 적용하여 2 레벨 웨이블릿 변환 후, 변환영역에서 공간영역의 특징이 유지되는 저주파 부대역을 히스토그램 비교하고, 나머지 고주파 부대역에서 추출된 에지 정보를 전체(global), 부분(semi-global), 국부(local) 영역으로 정의하여 웨이블릿 에지 히스토그램 비교를 한다. 모의실험 결과 기존의 방법보다 recall에서는 약 17%, precision에서는 약 18%의 성능향상을 보였으며 점진적인 장면 전환점인 페이드와 디졸브 구간 검출에도 좋은 성능을 나타내었다.

무릎들기 작업 시 전신피로 감지 수준과 근육 피로도를 활용한 다면적 피로현상 모델링 (Modeling the Multi-Dimensional Phenomenon of Fatiguing by Assessing the Perceived Whole Body Fatigue and Local Muscle Fatigue During Squat Lifting)

  • 임란아흐마드;김정룡
    • 산업경영시스템학회지
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    • 제41권4호
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    • pp.1-8
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    • 2018
  • Whole body fatigue detection is an important phenomenon and the factors contributing to whole body fatigue can be controlled if a mathematical model is available for its assessment. This research study aims at developing a model that categorizes whole body exertion into fatigued and non-fatigued states based on physiological and perceived variables. For this purpose, logistic regression was used to categorize the fatigued and non-fatigued subject as dichotomous variable. Normalized mean power frequency of eight muscles from 25 subjects was taken as physiological variable along with the heart rate while Borg scale ratings were taken as perceived variables. The logit function was used to develop the logistic regression model. The coefficients of all the variables were found and significance level was checked. The detection accuracy of the model for fatigued and non-fatigues subjects was 83% and 95% respectively. It was observed that the mean power frequency of anterior deltoid and the Borg scale ratings of upper and lower extremities were significant in predicting the whole body fatigued when evaluated dichotomously (p < 0.05). The findings can help in better understanding of the importance of combined physiological and perceived exertion in designing the rest breaks for workers involved in squat lifting tasks in industrial as well as health sectors.

Covid-19 Occupational Risk Incidence and Working Sectors Involved During the Pandemic in Italy

  • Fabio Boccuni;Bruna M. Rondinone;Giuliana Buresti;Adelina Brusco;Andrea Bucciarelli;Silvia D'Amario;Benedetta Persechino;Sergio Iavicoli;Alessandro Marinaccio
    • Safety and Health at Work
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    • 제14권4호
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    • pp.398-405
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    • 2023
  • Background: Starting from March 2020 until December 2021, different phases of Covid-19 pandemic have been identified in Italy, with several containing/lifting measures progressively enforced by the National government. In the present study, we investigate the change in occupational risk during the subsequent pandemic phases and we propose an estimate of the incidence of the cases by economic sector, based on the analysis of insurance claims for compensation for Covid-19. Methods: Covid-19 epidemiological data available for the general population and injury claims of workers covered by the Italian public insurance system in 2020-2021 were analyzed. Monthly Incidence Rate of Covid-19 compensation claims per 100,000 workers (MIRw) was calculated by the economic sector and compared with the same indicator for general population in different pandemic periods. Results: The distribution of Covid-19 MIRw by sector significantly changed during the pandemic related to both the strength of different waves and the mitigation/lifting strategies enforced. The level of occupational fraction was very high at the beginning phase of the pandemic, decreasing to 5% at the end of 2021. Healthcare and related services were continuously hit but the incidence was significantly decreasing in 2021 in all sectors, except for postal and courier activities in transportation and storage enterprises. Conclusion: The analysis of compensation claim data allowed to identify time trends for infection risk in different working sectors. The claim rates were highest for human health and social work activities but the distribution of risk among sectors was clearly influenced by the different stages of the pandemic.

향상된 장애물 극복형 실내 이·승강 전동휠체어의 설계 및 제작 (Design and Manufacture of Improved Obstacle-Overcoming type Indoor Moving and Lifting Electric Wheelchair)

  • 김영필;함헌주;홍성희;고석철
    • 한국산학기술학회논문지
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    • 제21권11호
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    • pp.851-860
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    • 2020
  • 인구 고령화와 건강 복지에 대한 사회적 관심이 높아지면서 재활복지기를 포함한 실버 및 헬스케어 산업과 관련한 연구들이 활발하게 진행되고 있다. 본 연구에서는 기존에 1차적으로 설계·제작되었던 이·승강 전동휠체어를 사용자 측면에서 보다 더 안전성과 편의성을 갖도록 개선하고자 하였다. 사용자 체형을 고려한 헤드레스트 높이조절 기능의 시트 디자인, 사용성 증대를 위한 암레스트의 길이조절 및 95° 회전 기능, 사용자 탑승 편의성을 위한 바닥까지의 시트하강 및 운행 시 승강할 수 있는 기능, 캐스터 회전반경 및 안전성 증대를 위한 발판 추가 및 풋레스트 길이 조절 기능, 승·하강 시 흔들림 방지를 위한 프레임 및 승·하강 링크 설계 등을 개선시켰다. 또한 안전주행을 위한 컨트롤러 및 드라이브 부문과 사용자 편의성 측면의 기능들을 추가적으로 설계·제작하였다. 추가 기능을 보완하여 제작된 실내 전동휠체어의 동작 상태를 평가하기 위해 구동 실험을 수행하였다. 연속 주행시간, 회전반경, 승·하강 최대 하중, 최대 승강 높이, 소음레벨, 운행 보조센서 센싱 최소거리, 서버 및 앱 프로그램 상호연동 및 기기호환성, 듀티 사이클 최대 오차율의 성능실험을 수행하였다. 실험 결과, 더 개선하여 설계·제작한 전동휠체어는 시험 목표 값을 달성하였으며, 성공적으로 동작하는 것을 확인할 수 있었다. 향후 연구로는 개선하여 제작된 이·승강 전동휠체어에 대해 사용자 측면에서의 사용성 평가를 수행할 것이다.