• 제목/요약/키워드: Muscle force

검색결과 821건 처리시간 0.035초

측두하악장애환자의 최대교합력에 대한 교근및 전측두근 활성도의 양상 (A Pattern of Electromyographic Activities of Masseter Muscle and Temporalis Anteriors to Maximum Bite Force in TMD Patients)

  • Sun-Hee Kim;Jae-Kap Choi
    • Journal of Oral Medicine and Pain
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    • 제15권1호
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    • pp.37-44
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    • 1991
  • The author has synchronously recorded average electromyographic activities of temporalis anteriors and masseter muscles and the maximum bite force on the mandibular first molar on the prferred chewing side. These activities were recorded in order to study the EMG activity pattern of the working side and the balancing side to maximum bete force and functioning state of muscle in 30 patients with TMD and in 30 healthy subjects as controls. The results were as follows : 1. The maximum bite force on the mandibular first molar on the preferred chewing side was 20.63kg in TMD patients and 53.30kg in the healthy subjects(p<0.01). The maximum bite force in TMD patients was 38.7% of the healthy subjects. 2. The average electromyographic activities of temporalis anterioris and masseter muscles on the working side and the balancing side during maximum bite force were lower in TMD patients than in the healthy subjects(p<0.01). The average electromyographic activities of each muscle in TMD patients were 61.0%-62.8% of the healthy subjects. 3. The proportionalities of average electromyographic activities of temporalis anteriors and masseter muscles on the working side and the balancing side to maximum bite force were greater in TMD patients than in the healthy subjects(p<0.01). 4. Between the working side and the balancing side, the proportionality of average electromyographic activity of temporalis anterior to maximum bite force on the working healthy subjects (p<0.01). The proportionality of average electromyographic activity of working side and the balancing side in both groups (p<0.05).

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보행 시 하지근육 역할에 대한 최적화 기법적 해석 (Analysis of Lower Extremity Muscle Force Variations during the Gait Cycle with Optimization Method)

  • 전응식;김영은
    • 대한의용생체공학회:의공학회지
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    • 제24권6호
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    • pp.509-514
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    • 2003
  • 보행시 하지 주요 근육내의힘의 변화를 계산하기 위한 수학적 모델을 개발하였다. 인체는 7개의 운동 분절로 모델링 하였으며, 하지 당 8개의 수요 근육을 고려한 모델을 사용하였다. 보행시 하지 근육의 발생되는 힘의 변화는 최적화 기법을 적용하여 계산하였으며, 계산 결과는 기존의 EMG 데이터와 비교 검토하여 모델의 타당성을 확인하였다. 또한 보행시 각 운동 분절의 운동 데이터를 이용하여 역동력학적 기법으로 구해진 하지 관전내의 토크량의 변화와 비교에서도 본 연구에서의 계산 결과는 만족할 만한 일치를 보이고 있었다.

The Kinematic Factors of Physical Motions During Air Pistol Shooting

  • Kim, Min-Soo
    • 한국운동역학회지
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    • 제26권2호
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    • pp.197-204
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    • 2016
  • Objective: The purpose of this study was to analyze the kinematic factors of motion during air pistol shooting. Method: This study aimed to investigate changes in forces during movement and determine the factors that affect changes in force during the first, middle, and last periods of shooting an air pistol. Two ground reaction force systems (force platform), SCATT (a shooting training system), and EMG (electromyogram) to measure the action potentials in the muscles of the upper body were used in this study. Four university air pistol players (age: 19.75 years, height: 175.50 cm, body mass: $69.55{\pm}11.50kg$, career length: $6.25{\pm}6years$) who are training to progress to a higher rank were enrolled. Results: In terms of the actual shooting results, the mean score in the middle section was $42.48{\pm}1.74$ points, higher than those in the first and the last periods when using SCATT. The gunpoint moved 13.48 mm more vertically than horizontally in the target trajectory. With respect to action potentials of muscles measured using EMG, the highest action potentials during the aiming-shooting segments, in order higher to lower, were seen in the trapezius (intermediate region), trapezius (superior region), deltoid (lateral), and triceps brachii (long head). The action potentials of biceps brachii and brachioradialis turned out to be high during grasping motion, which is a preparatory stage. During the final segment, muscle fatigue appeared in the deltoid (lateral), biceps brachii (long head), brachioradialis, and trapezius (intermediate region). In terms of the ground reaction force, during the first period of shooting, there was a major change in the overall direction (left-right $F_x$, forward-backward $F_y$, vertical $F_z$) of the center of the mass. Conclusion: The development and application of a training program focusing on muscle groups with higher muscle fatigue is required for players to progress to a higher rank. Furthermore, players can improve their records in the first period if they take part in a game after warming up sufficiently before shooting in order to heighten muscle action potentials, and are expected to maintain a consistent shooting motion continuously by restoring psychological stability.

하체서포터 착용 이동 시의 운동역학적 분석 (Biomechanical Analysis on Locomotion with Lower Extremity Supporter)

  • 이경일;홍완기;이철갑
    • 한국운동역학회지
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    • 제21권2호
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    • pp.215-222
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    • 2011
  • The purpose of this study was to analyze the effects of the use of the lower extremity supporter to ground reaction force(GRF) & EMG in women. Five women participated in the experiment conducted in the study(age: $46.7{\pm}3.5$ yrs, weight: $52.3{\pm}2.2$ kg, lower extremity height: $74.1{\pm}0.9$ cm, knee height: $40.7{\pm}1.4$ cm). The Ground reaction force was measured by AMTI ORG-6 and the Muscle activity of the lower extremity was measured by an 8-channel surface EMG system(Noraxon Myoresearch, USA, 1000Hz). We statistically compared muscle activity and ground reaction force with and without the lower-extremity supporter by one-way repeated ANOVA. The results were as follows. First, the use of the lower extremity supporter affects the ground reaction force along the anterior-posterior axis(Y). Second, the vertical(Z-axis) reaction force on the upper part of the lower extremity supporter increase because of the difference between the interval of vertical movement. Third, the muscle activity of the lateral gastrocnemius and rectus femoris was higher in the upper part of the lower extremity supporter. Further research for example, on a comparative analysis of joint moments, the effects of direct stressor on joints. and the relationship between muscle activity and joint movement, is necessary for a better understanding of the effects of the lower-extremity supporter.

보행과 달리기 시 신발의 크기가 족저압과 지면반발력, 하지의 근피로에 미치는 영향 (Effect of Shoe Size on Foot Pressure, Ground Reaction Force, and Fatigue During Walking and Running)

  • 김택훈
    • 한국전문물리치료학회지
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    • 제15권1호
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    • pp.1-11
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    • 2008
  • The purpose of this study was to assess the influence of two shoe size conditions on foot pressure, ground reaction force (GRF), and lower extremity muscle fatigue. Seven healthy men participated. They randomly performed walking and running in two different conditions: proper shoe size and 10 mm greater than proper shoe size. Peak foot pressure, and vertical, anterior and mediolateral force components were recorded with the Parotec system and Kisler force platform. To assess fatigue, the participants performed treadmill running for twenty-five minutes twice, each time wearing a different shoe size. Surface electromyography was used to confirm localized muscle fatigue using power spectral analysis of four muscles (tibialis anterior, gastrocnemius medialis, rectus femoris, and biceps femoris). The results were as follows: 1) In walking conditions, there was a significantly higher peak pressure in the 10 mm greater than proper shoe size insole sensor 1, 2, 14, and 18 (p<.05). 2) In running conditions, there was a significantly higher peak pressure in the 10 mm greater than proper shoe size insole sensor 5, 14, and 15 (p<.05). 3) In walking conditions, there was a significantly higher first maximal vertical GRF in the 10 mm greater than proper shoe size (p<.05). 4) In running conditions, no GRF components were significantly different between each shoe size condition (p>.05). 5) Muscle fatigue indexes of the tibialis anterior and rectus femoris were significantly increased in the 10 mm greater than proper shoe size condition. These results indicate that wearing shoes that are too large could further exacerbate the problems of increased foot pressure, vertical GRF, and muscle fatigue.

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과개교합자의 저작근 활성도 및 교합력에 관한 연구 (A STUDY ON THE BITE FORCE AND THE ELECTROMYOGRAPHIC ACTIVITY OF MASTICATORY MUSCLE IN DEEPBITE)

  • 정동기;김광원
    • 대한치과교정학회지
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    • 제26권1호
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    • pp.95-104
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    • 1996
  • 본 연구의 목적은 T-Scan system과 근전도를 이용하여 정상교합자와 과개교합자의 최대교합력과 근활성도간의 상관관계를 조사하기 위함이다. 연구대상은 두 집단으로 구성 되었다. 한 집단은 20명의 정상교합자이고 다른 집단은 30명의 과개교합자이다. 과개교합자는 Class I deepbite(9명의 남자와 7명의 여자)와 Class II div. 1 deepbite(8명의 남자와 6명의 여자)로 구성되었다. 이 연구로부터 얻어진 결과는 다음과 같다. 1. 최대교합력은 정상교합군에서 155.93 N, I급 과개교합군에서 165.11 N, II 1류 과개교합군에선 111.55 N이었으며, II급 1류 과개교합군의 최대교합력은 정상교합군에 비해 유의성 있게 낮았다(P<0.01). 2. 정상교합군과 과개교합군 모두에서 치야접촉점이 증가할수록 교합력은 증가하였다(표 3). 3. 최대교합시 II급 1류 과개교합군의 교근 및 전측두근의 근활성도는 전상교합군에 비해 현저히 낮았고(P<0.01),모든 군에서 교근의 활성도가 전측두근보다 높았다(P<0.05). 4. 모든 군에서 교합력과 근활성도, 치아접촉점의 수와 근활성도는 높은 상관관계를 보였다(표 5).

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발목각도 Toe 0°, Toe in 10°, Toe out 10°에 따른 스쿼트 운동이 안쪽넓은근과 가쪽넓은근의 근두께와 지면반발력에 미치는 영향 (The Effect of Squat Exercise According to Ankle Angle-Toe 0°, Toe In 10°, Toe Out 10°-on Muscle Thickness and Ground Reaction Force of Vastus Medialis Oblique and Vastus Lateralis Oblique Muscles)

  • 안수홍;이수경
    • PNF and Movement
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    • 제18권1호
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    • pp.65-75
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    • 2020
  • Purpose: The purpose of this study was to investigate the differences in muscle thickness and ground reaction force of the vastus medialis oblique and vastus lateral oblique muscles during squats at ankle angles of toe 0°, toe in 10°, and toe out 10°. Methods: In this study, 9 male and 17 female students in their 20s participated in a randomized controlled trial and were compared according to the ankle angles of toe 0°, toe in 10°, and toe out 10°. To determine the reliability and measurement of muscle thickness according to ankle angle using ultrasound equipment and muscle thickness, the participants' ankle angles-toe 0°, toe in 10°, and toe out 10°-were measured three times at the vastus medialis oblique and vastus lateralis oblique muscles during squats. At the same time, the maximum vertical ground reaction force was measured with a force plate. A total of three measurements were taken and averaged, and two minutes of squat movements were assessed between ankle angles to prevent target action. Results: The results of this study illustrated that the reliability of the vastus medialis oblique muscles and vastus lateralis oblique muscles in ankle angle was high. The difference in muscle thickness was significantly greater in comparing the toe out 10° angle with the toe 0° angle than between toe in 10° and toe out 10° in vastus medialis oblique and vastus lateralis oblique (p < 0.05). There was no statistically significant difference between the ankle angle of toe 0° and toe in 10° (p > 0.05). The maximum vertical ground reaction force was significantly greater at toe out 10° than at the ankle angle of toe 0° and toe out 10° and between toe in 10° and toe out 10° (p < 0.05). There was no statistically significant difference in the comparison between toe 0° and toe in 10° (p > 0.05). Conclusion: Squatting at an ankle angle of toe out 10° increases the dorsi flexion; thus, the stability of the ankle and the thickness of both oblique muscles increased to perform more effective squats. In addition, as the base of support widens, it is thought that the stability of the posture increases so that squat training can be performed safely.

근전도의 정량적 분석시 사용되는 수리적 파라미터의 민감도 비교 (The Comparison of Sensitivity of Numerical Parameters for Quantification of Electromyographic (EMG) Signal)

  • 김정룡;정명철
    • 대한산업공학회지
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    • 제25권3호
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    • pp.330-335
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    • 1999
  • The goal of the study is to determine the most sensitive parameter to represent the degree of muscle force and fatigue. Various numerical parameters such as the first coefficient of Autoregressive (AR) Model, Root Mean Square (RMS), Zero Crossing Rate (ZCR), Mean Power Frequency (MPF), Median Frequency (MF) were tested in this study. Ten healthy male subjects participated in the experiment. They were asked to extend their trunk by using the right and left erector spinae muscles during a sustained isometric contraction for twenty seconds. The force levels were 15%, 30%, 45%, 60%, and 75% of Maximal Voluntary Contraction (MVC), and the order of trials was randomized. The results showed that RMS was the best parameter to measure the force level of the muscle, and that the first coefficient of AR model was relatively sensitive parameter for the fatigue measurement at less than 60% MVC condition. At the 75% MVC, however, both MPF and the first coefficient of AR Model showed the best performance in quantification of muscle fatigue. Therefore, the sensitivity of measurement can be improved by properly selecting the parameter based upon the level of force during a sustained isometric condition.

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Effects of Hydrostatic Pressure Treatment on the Physicochemical, Morphological, and Textural Properties of Bovine Semitendinosus Muscle

  • Kim, Yun-Ji;Lee, Eun-Jung;Lee, Nam-Hyouck;Kim, Young-Ho;Yamamoto, Katsuhiro
    • Food Science and Biotechnology
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    • 제16권1호
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    • pp.49-54
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    • 2007
  • The effects of hydrostatic pressure (HP) treatment on the physicochemical, morphological, and textural properties of bovine semitendinosus (ST) muscle were assessed. Based on SDS-PAGE, the decrease in HP-treated ST muscle protein solubility in 0.1 M KCl buffer (pH 7.0) was attributable to a reduction in the levels of sarcoplasmic protein, and the protein solubility decrease observed in 0.6 M KCl buffer (PH 7.0) was attributable to a reduction in the levels of myosin heavy-chain and actin. Scanning electron microscope (SEM) observations showed that muscle fibers became finer and more compact with increasing pressures. The shear force and hardness of ST muscle pressurized to 300 MPa decreased significantly (p<0.05), however samples pressurized at 100 and 500 MPa exhibited a significant increase in both attributes relative to the control sample (p<0.05).