• Title/Summary/Keyword: Deltoid muscle

검색결과 167건 처리시간 0.023초

러닝웨어 재킷의 슬릿 위치가 통기성과 착용감에 미치는 영향 (Ventilation and Comfort Sensation by Slit Positions of Running Wear Jackets)

  • 임지혜;노의경;유화숙;김은애
    • 한국의류학회지
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    • 제33권11호
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    • pp.1794-1805
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    • 2009
  • This study investigates the influence of slit positions on the microclimate temperature/humidity of garments. To design the slits, a market survey was performed to indicate the method to apply the slits, in addition to a literature survey about muscles and body surface variation through body movements. Based on the survey, three positions of slits were selected, shoulder slit, lowback slit, and midback slit, a slit width of 1cm and length to 30cm was used. The results showed that microclimate temperatures/humidity on the back according to the slit positions were in the order of, lowback, midback, and the shoulder. The lowback slit showed the highest effect on the temperature/humidity of a front trunk. Lowback slits affected on localized areas of the glutaeus maximus, erector spinae, and latissimus dorsi. Midback slits affected the back muscle and deltoid. Shoulder slits showed a more significant effect on the localized area of the deltoid versus other localized areas. In the subjective sensations, the lowback slit was cooler, dryer, and more comfortable than the other slits. For the subjective sensations by fabric characteristics, the slit positions correlated at |r|${\geq}.8$ and were significant at p<.001 The results show that the lowback slit has a superior air exchange effect and thermoregulation qualities.

테이핑 유무에 따른 견관절 등척성 굴곡.신전 시 주동근의 근전도 비교 (Comparative Analysis of the Shoulder Joint on Agonists' EMG Activities with and without Taping during Isometric Flexion and Extension)

  • 하용인;강영택;이경순;서국웅;서국은;이일구
    • 한국운동역학회지
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    • 제18권1호
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    • pp.85-95
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    • 2008
  • 이 연구는 6개월 이상 웨이트 트레이닝을 한 남자 대학생을 사이벡스와 EMG 시스템으로 견관절 $0^{\circ}{\cdot}45^{\circ}{\cdot}90^{\circ}$에서 굴곡 신전 시 측정된 극상근, 전 후면 삼각근, 상완 이두근 삼두근, 광배근의 MVIC를 비교, 견관절 등척성 수축 시키네시오 테이핑을 적용하여 상지근육의 활성도를 분석하는데 그 목적이 있다. 테이핑 전 후 각 근육별 MVIC는 1. 굴곡시 극상근은 $0^{\circ}{\cdot}45^{\circ}{\cdot}90^{\circ}$, 전면 삼각근은 $0{\circ}{\cdot}45^{\circ}$, 상완 이두근은 $0{\circ}{\cdot}90^{\circ}$에서 테이핑이 유의하다. 2. 신전시 상완 삼두근은 $0^{\circ}$, 광배근은 $90^{\circ}$, 후면 삼각근은 $45^{\circ}{\cdot}90^{\circ}$에서 테이핑이 유의하다. 3. 각도별 차이에서 광배근 신전시 노테이핑 $90^{\circ}<45^{\circ}{\cdot}0^{\circ}$, 테이핑 $90^{\circ}<0^{\circ}$, 후면 삼각근 신전시 노테이핑 $90^{\circ}<45^{\circ}<0^{\circ}$, 테이핑 $90^{\circ}<0^{\circ}$ 순으로 유의하다.

수양명경근(手陽明經筋)의 해부학적(解剖學的) 고찰(考察) (Anatomy of Large Intestine Meridian Muscle in human)

  • 심영;박경식;이준무
    • Korean Journal of Acupuncture
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    • 제19권1호
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    • pp.15-23
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    • 2002
  • This study was carried to identify the component of Large Intestine Meridian Muscle in human, dividing into outer, middle, and inner part. Brachium and antebrachium were opened widely to demonstrate muscles, nerve, blood vessels and the others, displaying the inner structure of Large Intestine Meridian Muscle. We obtained the results as follows; 1. Meridian Muscle is composed of the muscle, nerve and blood vessels. 2. In human anatomy, it is present the difference between a term of nerve or blood vessels which control the muscle of Meridian Muscle and those which pass near by Meridian Muscle. 3. The inner composition of meridian muscle in human arm is as follows. 1) Muscle; extensor digitorum tendon(LI-1), lumbrical tendon(LI-2), 1st dosal interosseous muscle(LI-3), 1st dosal interosseous muscle and adductor pollicis muscle(LI-4), extensor pollicis longus tendon and extensor pollicis brevis tendon(LI-5), adductor pollicis longus muscle and extensor carpi radialis brevis tendon(LI-6), extensor digitorum muscle and extensor carpi radialis brevis mucsle and abductor pollicis longus muscle(LI-7), extensor carpi radialis brevis muscle and pronator teres muscle(LI-8), extensor carpi radialis brevis muscle and supinator muscle(LI-9), extensor carpi radialis longus muscle and extensor carpi radialis brevis muscle and supinator muscle(LI-10), brachioradialis muscle(LI-11), triceps brachii muscle and brachioradialis muscle(LI-12), brachioradialis muscle and brachialis muscle(LI-13), deltoid muscle(LI-14, LI-15), trapezius muscle and supraspinous muscle(LI-16), platysma muscle and sternocleidomastoid muscle and scalenous muscle(LI-17, LI-18), orbicularis oris superior muscle(LI-19, LI-20) 2) Nerve; superficial branch of radial nerve and branch of median nerve(LI-1, LI-2, LI-3), superficial branch of radial nerve and branch of median nerve and branch of ulna nerve(LI-4), superficial branch of radial nerve(LI-5), branch of radial nerve(LI-6), posterior antebrachial cutaneous nerve and branch of radial nerve(LI-7), posterior antebrachial cutaneous nerve(LI-8), posterior antebrachial cutaneous nerve and radial nerve(LI-9, LI-12), lateral antebrachial cutaneous nerve and deep branch of radial nerve(LI-10), radial nerve(LI-11), lateral antebrachial cutaneous nerve and branch of radial nerve(LI-13), superior lateral cutaneous nerve and axillary nerve(LI-14), 1st thoracic nerve and suprascapular nerve and axillary nerve(LI-15), dosal rami of C4 and 1st thoracic nerve and suprascapular nerve(LI-16), transverse cervical nerve and supraclavicular nerve and phrenic nerve(LI-17), transverse cervical nerve and 2nd, 3rd cervical nerve and accessory nerve(LI-18), infraorbital nerve(LI-19), facial nerve and infraorbital nerve(LI-20). 3) Blood vessels; proper palmar digital artery(LI-1, LI-2), dorsal metacarpal artery and common palmar digital artery(LI-3), dorsal metacarpal artery and common palmar digital artery and branch of deep palmar aterial arch(LI-4), radial artery(LI-5), branch of posterior interosseous artery(LI-6, LI-7), radial recurrent artery(LI-11), cephalic vein and radial collateral artery(LI-13), cephalic vein and posterior circumflex humeral artery(LI-14), thoracoacromial artery and suprascapular artery and posterior circumflex humeral artery and anterior circumflex humeral artery(LI-15), transverse cervical artery and suprascapular artery(LI-16), transverse cervical artery(LI-17), SCM branch of external carotid artery(LI-18), facial artery(LI-19, LI-20)

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로잉운동 시 상지 운동궤적에 따른 근육활성 전략에 관한 연구 (Study on the Strategy of Muscular Activity for Motor Track of Upper Limbs during Rowing Exercise)

  • 강승록;김의령;문동안;권대규
    • 재활복지공학회논문지
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    • 제7권2호
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    • pp.91-99
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    • 2013
  • 본 논문에서는 로잉 운동 시 팔의 운동 궤적별 상 하지 근육활성화와 근력변화를 고찰하였다. 피험자는 로잉운동이나 운동관련 상해경험이 없는 20대 남성 20명을 대상으로 진행하였다. 피험자들은 기존의 운동궤적으로 운동을 하는 대조군과 새로운 운동궤적으로 운동을 하는 훈련으로 각각 10명씩 나누어 실험을 진행하였다. 운동은 총 8주간 주 3일 운동을 실시하였다. 운동 중 실시간 근전도를 측정하였으며 매주 1회 관절토크를 측정하였다. 실시간 근전도 결과 운동궤적에 따라 서로 다른 근육활성개시구간을 나타냈다. 이는 운동궤적에 따라 운동추진력을 다른 근육에서 활성화 하는 것을 의미하며, 관절토크 변화에서도 운동궤적에 따라 다른 변화를 나타냈다. 직선궤적운동에서는 상지 보다는 하지의 토크 변화가 컸으며 이는 운동 추진력을 하지 위주로 발생되는 것을 의미한다. 타원궤적운동에서는 상지, 요추, 하지 모두에서 큰 토크 변화가 나타났으며 이는 운동 추진력을 단관절이 아닌 다관절에서 발생되는 것으로 판단된다.

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밸런스 핸들 장치를 이용한 상지 운동 기능의 근전도 신호 분석 (EMG Signal Analysis of Upper Extremity Motor Function using Balance-handle Device)

  • 이충근;송기호;안재용;신성욱;정성택
    • 재활복지공학회논문지
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    • 제10권4호
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    • pp.295-303
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    • 2016
  • 편마비 환자의 상지 운동 기능 재활 치료에 대한 지속적인 관심과 훈련의 정량적인 평가를 위한 다양한 장치가 요구되고 있다. 이러한 문제를 해결하기 위해서 본 논문에서는 거치대와 핸들, 밸런스 볼을 결합한 밸런스 핸들 장치를 개발하였다. 피험자 7명을 대상으로, 개발된 상지 훈련 장치를 기울일 때 주요 상지 근육에 대한 근전도 신호의 변화를 측정하여 재활 훈련 장치로 사용이 가능한지에 대한 유효성을 검토하였다. 밸런스 핸들 장치를 앞뒤로 기울였을 때의 상지 신전 굴곡 운동 동작과 좌우 기울임을 이용한 상지 운동 동작에서 근 수축과 이완이 기준이 되는 주동근과 길항근에서 근 활성화 신호를 분석하였다. 실험결과, Fugl-Meyer Assessment(FMA)의 신전 굴곡 운동 평가 항목에서 편마비 환자의 상지 운동 기능 평가에 이용되는 이두근, 삼두근, 삼각근에서 근 활성화 경향을 보였다. 이러한 결과를 바탕으로 개발된 장치를 활용하여 편마비 환자의 상지 재활 훈련에 도움이 될 수 있다고 볼 수 있다.

Electromyographic Analysis of Upper and Lower Limb Muscles during Gardening Tasks

  • Park, Sin-Ae;Lee, A-Young;Kim, Jai-Jeong;Lee, Kwan-Suk;So, Jae-Moo;Son, Ki-Cheol
    • 원예과학기술지
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    • 제32권5호
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    • pp.710-720
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    • 2014
  • Movements of the upper and lower limb muscles during five common gardening tasks were analyzed by using electromyography (EMG). Twenty adults aged in their twenties (mean age, $24.8{\pm}2.4$ years) were recruited. On two separate occasions, subjects visited a garden plot to perform digging, raking, troweling, weeding, and hoeing; all tasks were performed three times with 20 s intervals for each trial. To measure muscle activation during the five gardening tasks, surface EMG was used. Bipolar surface EMG electrodes were attached to eight upper limb muscles (bilateral anterior deltoid, biceps brachialis, brachioradialis, and flexor carpi ulnaris) or eight lower limb muscles (bilateral vastus lateralis, vastus medialis, biceps femoris, and gastrocnemius) on both sides of the body, for a total of 16 muscles. During the five tasks, photographs were taken of movement phases using a digital video camera. The right flexor carpi ulnaris and brachioradialis showed higher activation than the other upper and lower limb muscles measured during the tasks. All 16 upper and lower limb muscles were actively used only during digging. According to movement analysis of each activity, digging was classified into four movement phases, whereas raking, troweling, weeding, and hoeing each were divided into three movement phases. In each activity, there were high-impact phases in terms of muscle activation; the flexor carpi ulnaris and brachioradialis were identified as major muscles in each impact phase. This analysis may be used to generate biomechanical profiles of gardening tasks for practitioners when designing efficient gardening interventions for physical health or rehabilitation.

Reproducibility of Electromyography Signal Amplitude during Repetitive Dynamic Contraction

  • Mo, Seung-Min;Kwag, Jong-Seon;Jung, Myung-Chul
    • 대한인간공학회지
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    • 제30권6호
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    • pp.689-694
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    • 2011
  • Objective: The aim of this study is to evaluate the fluctuation of signal amplitude during repetitive dynamic contraction based on surface electromyography(EMG). Background: The most previous studies were considered isometric muscle contraction and they were difference to smoothing window length by moving average filter. In practical, the human movement is dynamic state. Dynamic EMG signal which indicated as the nonstationary pattern should be analyzed differently compared with the static EMG signal. Method: Ten male subjects participated in this experiment, and EMG signal was recorded by biceps brachii, anterior/posterior deltoid, and upper/lower trapezius muscles. The subject was performed to repetitive right horizontal lifting task during ten cycles. This study was considered three independent variables(muscle, amplitude processing technique, and smoothing window length) as the within-subject experimental design. This study was estimated muscular activation by means of the linear envelope technique(LE). The dependent variable was set coefficient of variation(CV) of LE for each cycle. Results: The ANOVA results showed that the main and interaction effects between the amplitude processing technique and smoothing window length were significant difference. The CV value of peak LE was higher than mean LE. According to increase the smoothing window length, this study shows that the CV trend of peak LE was decreased. However, the CV of mean LE was analyzed constant fluctuation trend regardless of the smoothing window length. Conclusion: Based on these results, we expected that using the mean LE and 300ms window length increased reproducibility and signal noise ratio during repetitive dynamic muscle contraction. Application: These results can be used to provide fundamental information for repetitive dynamic EMG signal processing.

푸시업과 무릎 푸시업, 벽 푸시업 운동시 어깨안정근 활성도의 비교 (Comparison of Scapular Stabilizer Muscles Activity among Push-Up, Knee Push-Up and Wall push-Up)

  • 김용권
    • 산업융합연구
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    • 제21권4호
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    • pp.123-131
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    • 2023
  • 이 연구는 일반 푸시업과 무릎 푸시업, 벽 푸시업 운동시 어깨 안정근의 활성도 차이를 알아보는데 목적이 있다. 연구대상은 어깨관절에 통증이 없고 푸시업 운동을 하지 않은 대학생 남자 8명을 대상으로 하였으며, 어깨 안정근의 활성도를 알아보기 위하여 표면 근전도를 이용하여 위등세모근, 아래등세모근, 중간등세모근, 앞톱니근, 앞세모근, 뒤세모근, 큰가슴근, 가시아래근에 부착하였다. 일반 푸시다운은 무릎 푸시다운과 벽 푸시다운 보다 근활성도가 유의하게 더 큰 것으로 나타났다. 푸시업 동작에서는 앞톱니근과 가시아래근이 다른 어깨안정근에 비해 근활성도가 유의하게 더 컸으며, 일반 푸시업 동작이 무릎 푸시업과 벽 푸시업 보다 근활성도가 유의하게 더 큰 것으로 나타났다. UT/LT 비율에서는 무릎 푸시다운이 벽 푸시다운 보다 유의하게 낮았으며, UT/SA 비율은 푸시다운과 푸시업 모두 통계적으로 유의한 차이는 없었다. 결론적으로 푸시업과 푸시다운 동작 시에는 앞톱니근과 앞어깨세모근, 가시아래근이 다른 어깨안정근보다 근활성도가 높고, 일반적인 푸시업 운동이 무릎 푸시업과 벽 푸시업 운동보다 근활성도 측면에서는 더 효과적이다. 그러나 푸시다운을 할 경우에는 어깨안정화를 위해 무릎을 굽힌 상태에서 푸시다운을 하는 것이 더 효과적인 것으로 사료된다.

The Effects of Coordinated Upper-limb Postures of Back, Shoulder, and Elbow Flexion Angles on the Subjective Discomfort Rating, Heart Rate, and Muscle Activities

  • Kong, Yong-Ku;Lee, Soo-Jin;Lee, Kyung-Suk;Seo, Min-Tae
    • 대한인간공학회지
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    • 제30권6호
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    • pp.695-703
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    • 2011
  • Objective: This study was to investigate the effects of coordinated upper-limb body postures on the subjective discomfort rating, heart rate, and muscle activities. Background: Although generally many checklists such as OWAS, RULA, and REBA were applied to evaluate various body postures, the body postures were might be overestimated or underestimated because each body part(i.e., back, shoulder, and elbow etc.) was evaluated separately, and then added all rates of individual body parts to assess an overall risk level for the body posture in these methodologies. Methods: A total of 20 participants maintained 14 postures which were combinations of back, shoulder, and elbow flexion angles and then muscle activities, subjective discomfort, and heart rates were collected every three minute during a sustained 15 minute and 0.5kg weight holding task. Four muscle groups were investigated: erector spine, anterior deltoid, upper trapezius, triceps brachii. Results: Results showed that subjective discomfort was the lowest when the angle of back and shoulder were both $0^{\circ}s$, while the body posture with $45^{\circ}$ of back angle and $45^{\circ}$ shoulder angle was rated as the most subjective discomfort posture. In general, the subjective discomfort ratings increased as back and shoulder flexion angles increased. It was noted that, however, the subjective discomfort of body posture with a $45^{\circ}$ back angle and $45^{\circ}$ shoulder flexion angle was lower than that of body posture with a $0^{\circ}$ back and $45^{\circ}$ shoulder flexion angle. The research findings of heart rates and muscle activities showed similar results for the analyses of subjective discomfort ratings. Conclusions: The possible limitations of the current ergonomics evaluation techniques which assessing a body posture with summing all body part score after individually analyzed in this study. Based on the analyses of subjective discomfort, heart rate, and muscle activities, it was recommended that a use of effects of coordinated upper-limb body postures would be considered when one evaluates work-load for various working postures. Application: These findings can be used for developing a more accurate assessment checklist for working posture as well as preventing musculoskeletal disorders of workers in workplaces.

Effect of a Combined Functional Electrical Stimulation with Action Observation Training on the Upper Limb Global Synkinesis and Function of Patients with Stroke

  • Kang, Jeongil;Kim, Huikyeong;Jeong, Daekeun;Park, Seungkyu;Yang, Daejung;Kim, Jeho;Moon, Youngjun
    • 국제물리치료학회지
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    • 제11권1호
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    • pp.2012-2020
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    • 2020
  • Background: Multifaceted approaches will be needed, such as global synkinesis (GS) achieve functional improvements in the arms of stroke patients from involuntary movements during exercise. Objective: To identify changes in arm GS and muscle activity, functional evaluation and the correlation with variables through action observation training, combined with functional electrical stimulation (FES), thereby verifying the effect on stroke patients. Design: A quasi-experimental study. Methods: The subjects of this study were 20 stroke patients who were divided into two groups: Control group (n=10) and experimental group (n=10). Before the intervention, arm GS and muscle activity were measured using surface electromyography (EMG), and arm function was evaluated using the Fugl-Meyer Assessment (FMA) scale. At the end of the intervention, which lasted 4-wk, arm GS and muscle activity were measured again using the same scale. Results: There was a decrease statistically significant difference in GS during the bending action in experimental group (P<.01). Both groups showed a significant difference increased only in the activity of the anterior deltoid (AD) and biceps brachii (BB) (P<.05). The results of the arm functional assessment revealed a significant difference increase in both groups (P<.05). In the between-group comparison, there was a significant difference decrease in GS during the bending action (P<.05). Only the muscle activity of the AD and BB were significantly increase different (P<.05). There was a significant between-group difference increase in the arm functional assessment (P<.05). There was a positive correlation between GS and muscle activity on the FMA in the control group (r=.678, P<.05). In experimental group, GS during the bending arm action exhibited a negative correlation (r=-.749, P<.05), and the muscle activity of the AD and BB showed a positive correlation (r=.701, P<.05). Furthermore, in experimental group, the activity of the extensor carpi radialis increased, and the activity of the flexor carpi radialis decreased, which exhibited a negative correlation (r=-.708, P<.05). Conclusion: These results suggest that brain plasticity could be more efficiently stimulated by combining surface stimulation in the affected arm of stroke patients.