• Title/Summary/Keyword: Physical com

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Effects of the Traditional Play-centered Obesity Control Program for Obese Elementary School Children based on Cooperative Learning Theory (비만학생을 위한 전통놀이 중심 비만관리 협동학습프로그램의 효과)

  • Seong, Jeong Hye;Choi, Yeon Hee
    • Journal of Korean Public Health Nursing
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    • v.27 no.3
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    • pp.513-526
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    • 2013
  • Purpose: The purpose of this study was to determine the effects of the Traditional Play-centered Obesity Control Cooperative Learning Program based on the cooperative learning theory on obesity rate, physical fitness, self-esteem, and body image specifically in obese elementary school children. Methods: The research design for this study was based on a non- equivalent control group pretest-posttest design. The study was conducted from September, 5 to November 30, 2012. The subjects included 74 obese children ($Exp.=25^{(a)}$, $Com.=24^{(b)}$, $Cont.=25^{(c)}$) with an obesity rate above 20% at an elementary school in G City. Data analysis was performed using SPSS/WIN 18.0, using Chi-square test, one-way ANOVA, and Scheffe test. Results: The obesity rate (F=4.033, p<.022) in the experimental group was significantly lower than that in the group (Com, Cont), in which the Traditional Play-Centered Obesity Control Cooperative Learning Program was not implemented. Self-esteem (F=4.310, p<.017) also caused significant differences. However, physical fitness (Muscular endurance F=1.545, p=.220; Flexibility F=.671, p=.514; Agility F=1.594, p=.210; Speed F=5.386, p<.007, scheffe (a,b

Anterior Talofibular Ligament and Superior Extensor Ankle Retinaculum Thicknesses: Relationship with Balance

  • Malloy, Brooke;Furrow, David;Cook, Haily;Smoot, Elizabeth;Cash, Lindsey;Aron, Adrian;Jagger, Kristen;Harper, Brent
    • Journal of Korean Foot and Ankle Society
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    • v.23 no.4
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    • pp.173-182
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    • 2019
  • Purpose: This study determined if anterior talofibular ligament (ATFL)/superior extensor ankle retinaculum (SEAR) thicknesses are related to dynamic balance in individuals with chronic ankle instability (CAI). Materials and Methods: The subjects were 14 males and 15 females (age=24.52±3.46 years). Ankle instability was assessed using the Cumberland Ankle Instability Tool (CAIT) with a cut off score of 25 to define two groups. SonoSite MTurbo (Fugifilm Sonosite, Inc.) musculoskeletal ultrasound (MSKUS) unit was used to assess ATFL and SEAR thicknesses. Dynamic balance was measured with the Y Balance Test (YBT) and two NeuroCom balance tests. Results: There were no significant differences in the average ATFL thickness between stable and unstable ankles in those subjects with CAI (0.25±0.03 cm and 0.21±0.05 cm, respectively) or in the SEAR thickness (0.09±0.04 cm and 0.10±0.03 cm, respectively). There were also no significant differences in the right and left ATFL thicknesses (0.23±0.07 cm and 0.21±0.04 cm, respectively) or the SEAR thicknesses (0.09±0.01 cm and 0.09±0.01 cm, respectively) in those without CAI. There were no differences between limbs in composite scores on YBT in those with CAI (p=0.35) and those without CAI (p=0.33). There was a moderate correlation between the left SEAR thickness and the large forward/backward perturbations on the NeuroCom (Natus) motor control test (r=0.51, p=0.006 and r=0.54, p=0.003, respectively). Conclusion: There were no differences in the ATFL/SEAR thicknesses or balance measures between or within the groups, likely because CAI is multi-factorial and related to mechanisms other than tissue changes alone. More sensitive technology and a better definition of the measurement process may provide more definitive results.

The Comparison Effects between Electrical Stimulation Therapy and Isometric Exercise on Improvement of Biceps brachii Muscle Strength (EST와 등척성 운동이 상완이두근의 근력증진에 미치는 효과에 관한 비교연구)

  • Kim, Jeong-Seon;Park, Ji-Whan
    • The Journal of Korean Academy of Orthopedic Manual Physical Therapy
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    • v.16 no.1
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    • pp.20-25
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    • 2010
  • Purpose : To compare the effect between isometric exercise group(n=10) and electrical stimulation therapy group(n=10) on improvement of biceps brachii muscle strength. Methods : The experiments were performed for 4 weeks and three times a week. The participants of this study were 20 students(10 male, 10 female) who had not any medical problems. We divided into the two groups. One group received isometric exercise and the other group received EST for 4 weeks. The biceps brachii muscle strength was evaluated by making use of the KIN-COM. Results : The results were as follows 1. One group which received isometric exercise increased 36% for biceps brachii muscle strength. 2.The other group which received EST increased 54% for biceps brachii muscle strength. Conclusion : The results of this study showed that EST group was more effective than isometric exercise group.

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Complex Dynamical Networks: An Overview

  • Chen, Guanrong
    • 제어로봇시스템학회:학술대회논문집
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    • 2002.10a
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    • pp.94.5-94
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    • 2002
  • The current study of complex dynamical networks is pervading all kinds of sciences today, ranging from physical to biological, even to social sciences. its impact on modern engineering and technology is prominent and will be far-reaching. Typical complex dynamical networks include the World Wide Web, the Internet, various wireless communication networks, meta-bolic networks, biological neural networks, social connection networks, scientific cooperation and citation networks, and so on. Research on fundamental properties and dynamical features of such complex networks have become overwhelm ing. This talk will provide a brief overview of some basic concepts about com plex dynamical netwo...

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Kinematic Analysis of Back Somersault Pike According to Skill Level in Platform Diving

  • Park, Jiho;Yoon, Sukhoon
    • Korean Journal of Applied Biomechanics
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    • v.27 no.3
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    • pp.157-164
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    • 2017
  • Objective: The purpose of this study was to investigate kinematic differences in back pike somersault in platform diving according to skill level and to apply the findings to improve performance. Method: Korean divers participating in this study were divided into a skilled group (age: $21.6{\pm}4.16y$, height: $1.68{\pm}0.03m$, weight: $62.0{\pm}3.94kg$, career: $12.6{\pm}5.13y$) and a less-skilled group (age: $20.6{\pm}2.7y$, height: $1.72{\pm}0.05m$, weight: $64.8{\pm}6.76kg$, career: $12.2{\pm}2.49y$) and an independent t-test was performed to analyze differences between groups at the moment of takeoff. Results: The two groups showed significant differences in displacement and velocity of center of mass (COM), takeoff angle, hip joint angle, knee joint angular velocity, and hip joint angular velocity at the takeoff (p<.05), and significant differences in displacement of COM, hip joint, and ankle joint during flight (p<.05). Conclusion: For a successful back pike, the COM should rise quickly in the vertical direction and the hip joint angle and angular velocity should increase. To improve performance, the back pike turn should be practiced on the ground before an attempt on a 10-m platform, to stretch the ankle and knee joints and enable quick flexion of the hip joint when turning in flight.

Effects of the Functional Garment Wear on Cobb's Angle and COM of Trunk and Pelvic during Gait for Adolescent Idiopathic Scoliosis Patients (청소년 특발성 척추 측만증 환자를 위한 보정웨어가 측만각도와 보행 시 몸통과 골반의 중심이동에 미치는 영향)

  • Park, Yang-Sun;Lim, Young-Tae
    • Korean Journal of Applied Biomechanics
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    • v.24 no.3
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    • pp.269-275
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    • 2014
  • The purpose of this study is to develop functional garment wear for patients with adolescent idiopathic scoliosis (AIS) and to analyze changes in Cobb's angle and the COM of the body and the pelvis during gaits in order to identify the effects of the functional garment wear. The subjects of the study were 9 patients with adolescent idiopathic scoliosis, who wore the functional garment wear for 12 weeks 12 hours a day. As for the research methods, the scoliotic angle was measured using Cobb's angle, and the shoulder angle and the COM of the body and the pelvis during gaits for the AIS patients were calculated using five high speed infrared cameras. As a result of the study, it was found that the scoliotic angle (Cobb's angle) was reduced significantly and that the smaller the original scoliotic angle, the greater the effects. As for the shoulder motion angle, a significantly larger angle was found 12 weeks after wearing the functional garment wear, and particularly, larger shoulder motion (activity) was observed at the phase of right heel contact. As for the motion of the body and the pelvis, the moving ranges were significantly reduced after wearing the functional garment wear for 12 weeks, which stabilized gait in the patients with adolescent idiopathic scoliosis.

Human-like Whole Body Motion Generation of Humanoid Based on Simplified Human Model (단순인체모델 기반 휴머노이드의 인간형 전신동작 생성)

  • Kim, Chang-Hwan;Kim, Seung-Su;Ra, Syung-Kwon;You, Bum-Jae
    • The Journal of Korea Robotics Society
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    • v.3 no.4
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    • pp.287-299
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    • 2008
  • People have expected a humanoid robot to move as naturally as a human being does. The natural movements of humanoid robot may provide people with safer physical services and communicate with persons through motions more correctly. This work presented a methodology to generate the natural motions for a humanoid robot, which are converted from human motion capture data. The methodology produces not only kinematically mapped motions but dynamically mapped ones. The kinematical mapping reflects the human-likeness in the converted motions, while the dynamical mapping could ensure the movement stability of whole body motions of a humanoid robot. The methodology consists of three processes: (a) Human modeling, (b) Kinematic mapping and (c) Dynamic mapping. The human modeling based on optimization gives the ZMP (Zero Moment Point) and COM (Center of Mass) time trajectories of an actor. Those trajectories are modified for a humanoid robot through the kinematic mapping. In addition to modifying the ZMP and COM trajectories, the lower body (pelvis and legs) motion of the actor is then scaled kinematically and converted to the motion available to the humanoid robot considering dynamical aspects. The KIST humanoid robot, Mahru, imitated a dancing motion to evaluate the methodology, showing the good agreement in the motion.

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LIFE-SPAN SIMULATION AND DESIGN APPROACH FOR REINFORCED CONCRETE STRUCTURES

  • An, Xuehui;Maekawa, Koichi;Ishida, Tetsuya
    • Proceedings of the Computational Structural Engineering Institute Conference
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    • 2007.04a
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    • pp.3-17
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    • 2007
  • This paper provides an introduction to life-span simulation and numerical approach to support the performance design processes of reinforced concrete structures. An integrated computational system is proposed for life-span simulation of reinforced concrete. Conservation of moisture, carbon dioxide, oxygen, chloride, calcium and momentum is solved with hydration, carbonation, corrosion, ion dissolution. damage evolution and their thermodynamic/mechanical equilibrium. Coupled analysis of mass transport and damage mechanics associated with steel corrosion is presented for structural performance assessment of reinforced concrete. Multi-scale modeling of micro-pore formation and transport phenomena of moisture and ions are mutually linked for predicting the corrosion of reinforcement and volumetric changes. The interaction of crack propagation with corroded gel migration can also be simulated. Two finite element codes. multi-chemo physical simulation code (DuCOM) and nonlinear dynamic code of structural reinforced concrete (COM3) were combined together to form the integrated simulation system. This computational system was verified by the laboratory scale and large scale experiments of damaged reinforced concrete members under static loads, and has been applied to safety and serviceability assessment of existing structures. Based on the damage details predicted by the nonlinear finite element analytical system, the life-span-cost of RC structures including the original construction costs and the repairing costs for possible damage during the service life can be evaluated for design purpose.

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The Effects of Quadriceps Setting Exercise and Electrical Stimulation on Improvement of Quadriceps Muscle Strength (대퇴사두근 등척성 운동(QSE)과 전기자극(ES)이 대퇴사두근의 근력 증진에 미치는 효과)

  • Choi, Jae-Cheong;Han, Dong-Uck
    • The Journal of Korean Physical Therapy
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    • v.13 no.2
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    • pp.273-280
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    • 2001
  • The purpose of this study was to analyze the effect of quadriceps setting exercise(N= 10) and electrical stimulation(N= 10) on improvement of quadriceps muscle strength. The experiment were performed for 6weeks. The subject of this study was 20 college students(male) who had not any medical problems. The quadriceps muscle strength was evaluated by make use of the KIN COM(Isokinetic dynamometer). The electrical stimulator was used to stimulate the quadriceps muscle. The results were as follows: 1. The mean increment ratio was 29.6% for concentric muscle strength and 36.4% for eccentric muscle strength after quadriceps setting exercise(p<0.05). 2. The mean increment ratio was 21.2% for concentric muscle strength and 24.3% for eccentric muscle strength after electrical stimulation, but did not significantly higher than pre-electrical stimulation In this study, we have found that quadriceps setting exercise on left side affect the improvement of the muscle strength in college students(male). However, electrical stimulation did not affect on the muscle strength.

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Noodle Making Characteristics of Buckwheat Composite Flours (메밀복합분을 이용한 제면 특성)

  • 김복란;최용순;김종대;이상영
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.28 no.2
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    • pp.383-389
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    • 1999
  • To determine the optimum condition for buckwheat noodle making, we prepared noodle from com posite flours of buckwheat, wheat and corn starch, and those physical properties and sensory evalua tion were investigated. The weights of cooked noodle became lower with increasing buckwheat content level indicating that elution of its components to soup was high. Wheat flour in the composite flours probably caused to drop gelatinization temperature and maximum viscosity compared to buck wheat flours. Corn starch in the composite flours increase gelatinization temperature and maximum viscosity compared to buckwheat flours. From the result of farinogram, buckwheat flour lower water absorption ability, and increased dough development time compared to composite flours. Adhesiveness of the cooked noodle with wheat flour was decreased. Cohesiveness of the cooked noodle was decrea sed with increasing buckwheat flour level. In sensory evaluation, chewing and softness of noodle with 100% buckwheat flour was evaluated the best. In taste, BW1 and BSW1 noodles showed slightly higher preference although there was no significant differences.

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