• 제목/요약/키워드: Muscle-tendon interaction

검색결과 3건 처리시간 0.016초

7Hz 진동자극 운동이 정상 성인의 다리 근육과 힘줄의 두께에 미치는 영향 (The Effects of Leg Muscles and Tendon Thickness on 7Hz Vibration Exercise Application in the Normal Adult)

  • 박재철;유진호;황태연
    • PNF and Movement
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    • 제18권3호
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    • pp.425-433
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    • 2020
  • Purpose: The purpose of this study was to investigate the effect of 7Hz vibration on the thickness of the rectus femoris, medial femur, rectus femoris tendon, and Achilles tendon. Methods: The statistical methods before and after working around the average value of each of the legs included repeated measures ANOVA. The subjects were 26 males residing in the N area, and we measured the change in muscle thickness and tendon thickness before, four weeks, and eight weeks after the experiment in two groups of 13 subjects each. The analysis method was a two-way repeated measurement variance analysis (ANOVA) with a significance level of 0.05 Results: The rectus femoris, medial broad muscle, rectus femur, and Achilles tendon showed significant increases in the interaction between the periods as well as between the periods and groups (p < 0.05). Conclusion: As a result of this study, the 7Hz vibration had a positive effect on the thickness of the rectus femoris and the vastus medialis muscle as well as the thickness of the rectus femoris tendon and Achilles tendon. It is expected to be used as basic data for vibrational exercises in the future studies and is expected to be used as an exercise to strengthen the leg muscles and tendons.

보행과 한발·두발 수직점프 수행 시 내측비복근 근-건 복합체와 근섬유다발의 길이 변화 패턴의 차이 (Differences in the Length Change Pattern of the Medial Gastrocnemius Muscle-Tendon Complex and Fascicle during Gait and One-legged and Two-legged Vertical Jumping)

  • 이해동;한보람;김진선;오정훈;조한엽;윤소야
    • 한국운동역학회지
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    • 제25권2호
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    • pp.175-182
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    • 2015
  • Objective : The purpose of this study was to investigate difference in fascicle behavior of the medial gastrocnemius during the locomotion with varying intensities, such as gait and one-legged and two-legged vertical jumping. Methods : Six subjects (3 males and 3 females; age: $27.2{\pm}1.6yrs.$, body mass: $62.8{\pm}9.8kg$, height: $169.6{\pm}8.5cm$) performed normal gait (G) at preferred speed and maximum vertical jumping with one (OJ) and two (TJ) legs. While subjects were performing the given tasks, the hip, knee and ankle joint motion and ground reaction force was monitored using a 8-infrared camera motion analysis system with two forceplates. Simultaneously, electromyography of the triceps surae muscles, and the fascicle length of the medial gastrocnemius were recorded using a real-time ultrasound imaging machine. Results : Comparing to gait, the kinematic and kinetic parameters of TJ and OJ were found to be significantly different. Along with those parameters, change in the medial gastrocnemius (MG) muscle-tendon complex (MTC) length ($50.57{\pm}6.20mm$ for TJ and $44.14{\pm}5.39mm$ for OJ) and changes in the fascicle length of the MG ($18.97{\pm}3.58mm$ for TJ and $20.31{\pm}4.59mm$ for OJ) were observed. Although the total excursion of the MTC and the MG fascicle length during the two types of jump were not significantly different, however the pattern of length changes were found to be different. For TJ, the fascicle length maintained isometric longer during the propulsive phase than OJ. Conclusion : One-legged and two-legged vertical jumping use different muscle-tendon interaction strategies.

형상기억합금 구동기를 이용한 로봇 손 개발 (Development of a Robotic Hand using Shape Memory Alloy Actuators)

  • 전창국;유동상
    • 한국지능시스템학회논문지
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    • 제26권2호
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    • pp.147-152
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    • 2016
  • 형상기억합금은 가열되거나 냉각될 때 모양과 강도가 변화하면서 큰 힘을 발생한다. 와이어 형태의 형상기억합금은 열을 가하면 길이가 축소되면서 상당히 큰 힘을 발휘하며, 소음없는 운동을 발생시킬 수 있으므로 모터를 대체할 수 있는 구동기로 활용가능하다. 이런 형상기억합금 구동기는 전기로 직접 가열할 수 있으며, 큰 범위의 운동을 만들어내는데 사용될 수 있다. 본 논문에서는 형상기억합금 구동기를 이용하여 3 개의 손가락을 가진 6 자유도의 로봇 손을 개발하고 제어하는 것에 대해 기술한다. 각 손가락은 2 개의 관절을 가지고 있으며, 각 관절은 길항(拮抗) 운동을 위해 서로 반대로 동작하는 두 개의 힘줄에 의해 구동된다. 부드러운 운동을 위한 충분한 힘을 만들어 내기 위해 각 힘줄은 2 개의 형상기억합금 구동기가 병렬로 구성된다. 형상기억합금 구동기를 가열하기 위한 전류를 제어하기 위해 PWM 드라이버를 채용하였으며, 실험을 통해 손가락의 길항 작용을 평가한다.