• Title/Summary/Keyword: BIOMECHANICS

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Kinematic Sequence Patterns according to Movement Time of Choku-tsuki in Karate Kumite (카라테 구미테 정면 지르기의 동작수행시간에 따른 운동학적 시퀀스 패턴)

  • Kim, Tae-Whan;Kim, Mi-Sun;Kim, Joo-Nyeon
    • Korean Journal of Applied Biomechanics
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    • v.30 no.3
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    • pp.225-234
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    • 2020
  • Objective: The purpose of this study was to investigate the kinematic sequence patterns according to movement times during Karate choku-tsuki. Method: Ten Korea national Karate athletes participated in this study. Participants asked to perform jodan and chudan choku-tsuki. 30 infrared cameras were used to measure angular kinematic of elbow, shoulder, trunk, pelvis, hip, knee, ankle. Results: The two-way repeated measures ANOVA revealed significant effects for the joints (p<.05). But no significant effect for the movement time and interaction of joints x movement time existed for the kinematic sequence variables. Conclusion: For karate kumite players to reduce the movement time of punch, it is necessary to train kinematic sequences that allow each joint to rotate at a relatively similar timing.

Electro-osmotic pump in osteo-articular tissue engineering: A feasibility study

  • Lemonnier, Sarah;Naili, Salah;Lemaire, Thibault
    • Advances in biomechanics and applications
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    • v.1 no.4
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    • pp.227-237
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    • 2014
  • The in vitro construction of osteo-articular large implants combining biomaterials and cells is of great interest since these tissues have limited regeneration capability. But the development of such organoids is particularly challenging, especially in the later time of the culture, when the extracellular matrix has almost filled the initial porous network. The fluid flow needed to efficiently perfuse the sample can then not be achieved using only the hydraulic driving force. In this paper, we investigate the interest of using an electric field to promote mass transport through the scaffold at the late stage of the culture. Based on the resolution of the electrokinetics equations, this study provides an estimation of the necessary electric driving force to reach a sufficient oxygen perfusion through the sample, thus analyzing the feasibility of this concept. The possible consequences of such electric fields on cellular activities are then discussed.

The Role of Biomechanics in Tissue Engineering (조직공학에서 생체역학의 역할)

  • Park, Kwi-Deok
    • Proceedings of the KSME Conference
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    • 2008.11a
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    • pp.1458-1460
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    • 2008
  • Tissue engineering is an interdisciplinary field that utilizes the principles of engineering and life sciences toward the creation of biological substitutes. Traditionally, major components of tissue engineering are cells, scaffolds, growth factors and recently biomechanical aspects have been given much attention. A large number of studies have reported that mechanical signals are of particular interest in either encouraging or inhibiting cellular responses. In tissue engineering, cell adhesion is a very important step, because quality of adhesion may determine a cell fate in the future. Elasticity of cell-adhesive substrate is found critical in regulating stem cell differentiation. Cells exert different contractile forces for cell migration, depending on substrate mechanics. Though tissue engineering is very interactive with diverse expertise, for a breakthrough, principles of biomechanics in tissue and cell level needs to be fully understood.

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Recent Trends in Multibody Dynamics Researches reviewed from the papers presented in the Multibody2003 and in the 2003 ASME DETC (Multibody2003와 2003 ASME DETC의 논문들을 통해본 다물체동역학 연구의 세계적 연구추세)

  • Yoo, Wan-Suk
    • Proceedings of the KSME Conference
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    • 2003.11a
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    • pp.1714-1717
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    • 2003
  • ECCOMAS Thematic Conference Multibody 2003 was held at IST (Instituto Superior Technico), Lisbon, Portugal from July 1 to July 4. 2003. And MBDV(Multibody Dynamics and Vibration) in the 2003 ASME DETC was held at Chicago, U.S.A. from September 2 to September 6. In this paper, the presented papers in these conferences were reviewed and the trends in the multibody dynamics are summarized. The session titles in these conferences include Flexible Multibody Dynamics, Vehicle Dynamics, Contact, Biomechanics, Real-time Challenges, Spatial manipulator and Control, Multidisciplinary Applications, and Advanced Education. The poster session was also organized for more discussions in the Multibody2003 conference.

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Throwing Mechanics (투구 동작의 역학)

  • Moon Young-Lae;Lee Kyung-Il;Lee Kwang-Chul
    • Journal of Korean Orthopaedic Sports Medicine
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    • v.2 no.2
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    • pp.113-118
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    • 2003
  • Throwing motion divided by 6 phases such as wind-up, (early and late) cocking, acceleration, deceleration, follow-through. Overuse injuries in baseball result most often from pitching. Poor mechanics is the leading cause of arm injuries. The purpose of this article is to analyze the each joint motion and evaluate the biomechanics and pathomechanics during pitching.

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The Effects of Upper Limb, Trunk, and Pelvis Movements on Apkubi Momtong Baro Jireugi Velocity in Taekwondo

  • Yoo, Si-Hyun
    • Korean Journal of Applied Biomechanics
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    • v.26 no.3
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    • pp.273-284
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    • 2016
  • Objective: The purpose of this study was to investigate effects of upper limb, trunk, and pelvis kinematic variables on the velocity of Apkubi Momtong Baro Jireugi in Taekwondo. Method: Twenty Taekwondo Poomsae athletes (age: $20.8{\pm}2.2years$, height: $171.5{\pm}7.0cm$, body weight: $66.2{\pm}8.0kg$) participated in this study. The variables were upper limb velocity and acceleration; trunk angle, angular velocity, and angular acceleration; pelvis angle, angular velocity, and angular acceleration; and waist angle, angular velocity, and angular acceleration. Pearson's correlation coefficient was calculated for Jireugi velocity and kinematic variables; multiple regression analysis was performed to investigate influence on Jireugi velocity. Results: Angular trunk acceleration and linear upper arm punching acceleration had significant effects on Jireugi velocity (p<.05). Conclusion: We affirmed that angular trunk acceleration and linear upper arm punching acceleration increase the Jireugi velocity.

Effects of 12-week Aquatic Exercise on Gait in the Falls Experienced Elderly Women (12주간 수중운동이 낙상 경험 여성 노인들의 보행에 미치는 영향)

  • Kim, Chang-Bum;Shin, Jun-Yong
    • Korean Journal of Applied Biomechanics
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    • v.17 no.4
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    • pp.9-16
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    • 2007
  • The purpose of this study was to analyze the effects of after aquatic exercise on gait in the Falls Experienced elderly. There were one group : Fall Experienced Elderly Women(n=8). They were tested on their gait (Elapse time of each phase, Stance time of limb, Stride length, Velocity of segment). we took video and analyzed their movement using Ariel Performance Analysis System and compared gait parameters. For data analysis, mean and standard deviation scores were calculated, and correspondence sample t-test and pearson's correlation analysis were used. First, after exercise is short than before exercise on Elapse time of each phase, fall-experience subjects showed meaningful total time. Second, after exercise is short than before exercise on Stance time of limb and Stride length, fall-experience subjects showed meaningful Stride length. Third, after exercise is fast than before exercise on Velocity of segment.

The Effects of Knee Brace on the Knee Muscular Neuro-Biomechanical Variables during the Rebound in Female Highschool Basketball Players (여자 고등학교 농구 선수들이 리바운드 점프 후 착지할 때 무릎보호대가 무릎의 근신경 생체역학적 변인에 미치는 효과)

  • Han, Ki-Hoon;Lim, Bee-Oh
    • Korean Journal of Applied Biomechanics
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    • v.17 no.4
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    • pp.107-113
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    • 2007
  • The purpose of this study were to investigate the effects of knee brace on the knee muscular neuro-biomechanical variables during the rebound in female highschool basketball players. Twelve high school female ($17.9{\pm}0.8years$) basketball players rebound jumped for maximal vertical height to sufficiently stress the anterior cruciate ligament with and without knee brace. Kinematic data were collected to estimate the knee flexion, abduction angles and jump height. The EMG data from the biceps femoris and rectus femoris was used to estimate the ratio of quadriceps muscle activity. Female athletes with knee brace showed more reduced the knee abduction angle and the ratio of quadriceps muscle activity at foot contact phase than without knee brace. In conclusion, Female athletes with brace reduced knee anterior cruciate ligament loads.

The Effects of Elastic Resistance and Pilates Exercise on EMG in Baseball Pitcher (탄성저항 및 필라테스 운동이 야구투수의 근전도에 미치는 영향)

  • Park, Il-Bong;Kim, Jung-Tae
    • Korean Journal of Applied Biomechanics
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    • v.17 no.4
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    • pp.127-139
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    • 2007
  • The purpose of this study was to examine the pitching ability of baseball player by analysing the effect of elastic resistance exercise and pilates exercise on EMG. Five out of currently active highschool baseball player performed 5 times a week of elastic resistance exercise and pilates for 8 weeks, each for 100 minutes. They demonstrated significant increase in EMG after 8 weeks of exercise. Especially, in extensor carpi radialis brevis and flexor carpi radialis of fore arm, they demonstrated significant increase of inning figure after exercise. These results suggested that elastic resistance exercise and pilates exercise can improve pitching ability of baseball player according to inning.

Biomechanics and Neurophysiology of Polyometrics (플라이오메트릭스의 생역학과 신경생리)

  • Bae Sung-Soo;Lee Han-Suk;Kim Kyoung;Kim Soo-Min;Choi Jae-Won
    • The Journal of Korean Physical Therapy
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    • v.12 no.2
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    • pp.219-228
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    • 2000
  • Successful return to work or athletic sports after rehabilitation of an orthopeadic condition and sports injury of the lower extremities requires that the therapist understand the mechanical requirements of high level Physical activity. High level Physical activity need resistance exercise Program in the treatment approaching methods. One of them, the plyometrics training is the best way that will be magnifing the musculotendon unit. So it is important understanding of biomechanics and neurophysiology of plyometrics.

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