• 제목/요약/키워드: Medial Surface

검색결과 206건 처리시간 0.021초

Transient effects of jumping lunge on sand on balance ability in healthy adults: a preliminary study

  • Choi, Min-hyeok;Shin, Ho-jin;Hahm, Suk-Chan;Lee, Min-Goo;Cho, Hwi-young
    • Physical Therapy Rehabilitation Science
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    • 제7권4호
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    • pp.172-178
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    • 2018
  • Objective: The purpose of this study was to show the temporary effects of performing jumping lunges on a sand surface on static balance and dynamic balance. Design: Randomized controlled trial. Methods: Twenty healthy subjects volunteered in the study and was randomly assigned into either the sand group (n=10) or the control group (n=10). The subjects in the sand group performed jumping lunges on a sand surface and the subjects in the control group performed jumping lunges on a firm surface. The intervention was performed for 3 sets of 8 repetitions by both groups. To measure static balance, the force plate was employed to measure the center of pressure (CoP) area, and the CoP velocity during one-legged standing. Anterior, postero-medial, postero-lateral movements was assessed using the Star Excursion Balance Test (SEBT) to measure dynamic balance. Results: After the intervention, the sand group showed statistically significant improvements on all variables (CoP area, CoP velocity) in static balance (p<0.05). There were statistically significant changes in CoP area and CoP velocities between the two groups (p<0.05). In the sand group, there were significant improvements in the postero-medial and postero-lateral directions (p<0.05) except for anterior direction on dynamic balance. In the control group, there was a significant improvement in the postero-lateral and anterior directions (p<0.05). In comparison of the two groups, there was no statistically significant improvement in all variables. Conclusions: This study demonstrated that performing jumping lunges on a sand surface was effective in improving static and dynamic balance temporarily.

하퇴부와 족관절 및 족부의 피부 결손에 대한 역행성 표재 비복동맥 피판을 이용한 재건의 장점 (Advantage of Distally Based Superficial Sural Artery Flap in the Soft Tissue Defect of the Lower Leg, Ankle, Foot)

  • 하대호;김상수;전철홍;김동철;최유선;김경진
    • Archives of Reconstructive Microsurgery
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    • 제10권2호
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    • pp.118-123
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    • 2001
  • Introduction : We report advantages of distally based superficial sural artery flap in the soft tissue defect in lower leg, ankle and foot. They are easier and less complicated technique than others. Material & Method : Total 26 patients were operated and their soft tissue defect site were 10 cases of anterior tibial surface, 6 cases of Achilles tendon area, 3 cases of lateral and medial surface of tibia, 3 cases of foot dorsum surface, 3 cases of sole, 1 case of medial aspect of ankle. Average pedicle distance was 12.8 cm(range $8{\sim}21cm$) and follow up period was mean 18 months. Result : We obtained 24 cases of excellent and good results. The two cases were reported low complication rate, which were one case of skin necrosis covered full thickness skin graft, and the other case of infection. Conclusion : The advantage of distally based superficial sural artery flap in soft tissue defect are long distant pedicle, short operation time, easy elevation of pedicle, constant and reliable blood supply and good cosmetic result with thin-thickness flap.

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키높이 인솔두께에 따른 족부의 생체역학적 특성변화에 대한 연구 (A Study on Changes in Biomechanical Characteristics of the Foot with Respect to Wedge-type Insole Thickness)

  • 박태현;정태곤;한동욱;이성재
    • 대한의용생체공학회:의공학회지
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    • 제34권2호
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    • pp.80-90
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    • 2013
  • Recently, functional insoles of wedge-type it is for the young to raise their height inserted between insole and heel cause foot pain and disease. Additionally, these have a problem with stability and excessively load-bearing during gait like high-heel shoes. In this study, we compared the changes in biomechanical characteristics of foot with different insole thickness then we will utilize for the development of the insole with the purpose of relieving the pain and disease. Subjects(male, n = 6) measured COP(center of pressure) and PCP(peak contact pressure) on the treadmill(140cm/s) using F-scan system and different insole thickness(0~50 mm) between sole and plantar surface during gait. Also, we computed changes of stresses at the foot using finite element model with various insole thickness during toe-off phase. COP moved anterior and medial direction and, PCP was increased at medial forefoot surface, $1^{st}$ and $2^{nd}$ metatarsophalangeal, ($9%{\uparrow}$) with thicker insoles and it was show sensitive increment as the insole thickness was increased from 40 mm to 50 mm. Change of the stress at the soft-tissue of plantar surface, $1^{st}$ metatarsal head represents rapid growth($36%{\uparrow}$). Also, lateral moments were increased over the 100% near the $1^{st}$ metatarsal as the insole thickness was increased from 0 mm to 30 mm. And it is show sensitive increment as the insole thickness changed 10 mm to 20 mm. As a result, it was expected that use of excessively thick insoles might cause unwanted foot pain at the forefoot region. Therefore, insole thickness under 30 mm was selected.

외곽선을 이용한 효율적인 기하모델 재구성 기법 (Efficient Geometric Model Reconstruction using Contour Lines)

  • 정회상;권구주;신병석
    • 한국정보과학회논문지:시스템및이론
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    • 제32권8호
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    • pp.418-425
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    • 2005
  • 표면 재구성은 2차원 기하정보로 부터 3차원 물체의 형상을 복원하는 방법이다. 기존의 표면 재구성 알고리즘 중 많이 사용되는 Barequet의 방법은 정합되는 부분을 먼저 타일화 하고, 정합되지 않는 부분인 클레프트는 동적 계획법으로 타일화 한다. 그러나 이 방법은 클레프트를 처리하는 시간이 오래 걸리기 때문에 모델이 복잡할 경우 수행속도가 저하되는 단점이 있다. 본 논문에서는 분기가 없는 단순영역을 한 번의 연산으로 외곽선의 최단거리 정점을 따라 타일화 하고, 분기가 있는 경우에는 정합이 잘되는 기본영역과 정합이 되지 않는 클레프트로 나눈다. 클레프트는 최단거리 정점들의 중점을 이용하여 간단하고 신속하게 타일화 하는 방법을 제안한다. 실험결과 기존 방법보다 메쉬 재구성 속도와 정확도가 높아진 것을 확인할 수 있었다.

견관절 장애와 관절 가동운동 (Joint mobilization techniques of the shoulder joint dysfunction)

  • 김선엽;두정희
    • 한국전문물리치료학회지
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    • 제2권2호
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    • pp.108-118
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    • 1995
  • The techniques of joint mobilization and traction are used to improve joint mobility or to decrease pain by restoring accessory movements to the shoulder joints and thus allowing full, nonrestriced, pain-free range of motion. In the glenohumeral joint, the humeral head would be the convex surface, while the glenoid fossa would be the concave surface. The medial end of the clavicle is concave anterioposteriorly and convex superioinferiorly, the articular surface of the sternum is reciprocally curved. The acromioclavicular joint is a plane synovial joint between a small convex facet on lateral end of the clavicle and a small concave facet on the acromion of the scapula. The relationship between the shape of articulating joint surface and the direction of gliding is defined by the Convex-Concave Rule. If the concave joint surface is moving on a stationary convex surface, gliding occur in the same direction as the rolling motion. If the convex surface is moving on a stationary concave surface, gliding will occur in an opposite direction to rolling. Hypomobile shoulder joints are treated be using a gliding technique.

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보행 중 인체 슬관절의 3차원 접촉 모델 개발 (Development of Three-Dimensional Contact Model of Human Knee Joint During Locomotion)

  • 김효신;박성진;문정환
    • 한국정밀공학회지
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    • 제22권11호
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    • pp.182-189
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    • 2005
  • The human knee joint is the intermediate joint of the lower limb that is the largest and most complex joint in the body. Understanding of joint-articulating surface motion is essential for the joint wear, stability, mobility, degeneration, determination of proper diagnosis and so on. However, many studies analyzed the passive motion of the lower limb because of the skin marker artefact and some studies described medial and lateral condyle of a femur as a simple sphere due to the complexity of geometry. Thus, in this paper, we constructed a three-dimensional geometric model of the human knee from the geometry of its anatomical structures using non-uniform B-spline surface fitting as a study for the kinematic analysis of more realistic human knee model. In addition, we developed and verified 6-DOF contact model of the human knee joint using $C^2$ continuous surface of the inferior region of a femur, considering the relative motion of shank to thigh during locomotion.

불안정면에서 시각차단이 체간과 하지의 근활성도에 미치는 영향 (The Effect of Visual Deprivation on Trunk and Lower Extremity Muscle Activity on an Unstable Surface)

  • 한진태
    • PNF and Movement
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    • 제16권3호
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    • pp.433-439
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    • 2018
  • Purpose: Visual information is one of the most important factors for postural balance. The purpose of this study was to investigate the effect of visual deprivation on the lower extremities and trunk muscle activity on an unstable surface during quiet standing. Methods: Fifteen healthy males from a university population participated in this study. Surface electromyography of the rectus abdominis, the erector spinalis, the vastus femoris oblique, the semitendinosis, the tibialis anterior, and the medial gastrocnemius was measured using EMG equipment (Telemyo 2400, Noraxon, USA). The participants were asked to maintain postural balance on an unstable surface (Balance pad, Airex, USA) for 30 seconds with eyes open and with eyes closed during quiet standing. The Wilcoxon test was used to compare the muscle activity of the lower extremities and the trunk between open and closed eyes on an unstable surface. Results: The muscle activity of the trunk and the lower extremities was increased more with eyes closed than with eyes open on the unstable surface during quiet standing. Conclusion: The findings from this study suggest that visual information could alter lower extremity and trunk muscle activity. Therefore, visual deprivation can be used as a method to improve postural balance.

다면체의 중립면 계산 (Medial Surface Computation of Polyhedra)

  • 이용구;이건우
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 1996년도 추계학술대회 논문집
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    • pp.833-840
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    • 1996
  • 중립면은 셸 (솔리드 모델) 유한 요소 생성, 로보트 이동 경로 계산, 특징 형상 판별 등에서 사용될 수 있다. 그러나 기존 중립면 계산 알고리즘들은 연립 방정식을 수렴성이 보장되지 않는 수치 해법으로 풀어야 했기 때문에 발전이 미비했다. 본 논문은 복셀-이등분 면의 교자성을 이용한 중립면 계산 알고리즘을 제시한다. 교차성은 보로노이 영역을 사용, 단순한 기하학적 요소간의 거리 비교로 판별한다. 이런 기하학적인 접근 방법은 기본적으로 수렴성 문제가 배제된다.

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미드솔의 반발탄성이 러닝화의 생체역학적 특성에 미치는 영향 (Effects for Running Shoes with Resilience of Midsole on Biomechanical Properties)

  • 유찬일;원용관;김정자
    • 한국운동역학회지
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    • 제25권1호
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    • pp.103-111
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    • 2015
  • Objective : The purpose of this study was to evaluate the effect for running shoes with resilience of midsole on biomechanical properties. Methods : 10 healthy males who had no history of injury in the lower extremity with an average age of 26.5 year(SD=1.84), height of 172.22 cm(SD=4.44) and weight of 67.51 kg(SD=6.17) participated in this study. All subjects ran on the treadmill wearing three different running shoes. Foot pressure data was collected using Pedar-X system(Novel Gmbh, Germany) operating at 100 Hz. Surface EMG signals for biceps femoris, rectus femoris, vastus lateralis, medial lateralis, tibialis anterior, medial gastrocnemius, soleus and peroneus longus were acquired at 1000 Hz using Bignoli 8 System(Delsys Inc., USA). To normalize the difference of the magnitude of muscle contractions, it was expressed as a percentage relative to the maximum voluntary contraction (MVC). The impact resilience of the midsole data was collected using Fastcam SA5 system(Photron Inc., USA). Collected data was analyzed using One-way ANOVA in order to investigate the effects of each running shoes. Results : TPU midsole was significantly wider in contact area than EVA, TPE midsole in midfoot and higher in EMG activity than EVA midsole at biceps femoris. TPE midsole was significantly wider in contact area than EVA midsole in rearfoot and higher in peak pressure than EVA midsole in forefoot. EVA midsole was significantly higher in EMG activity than TPU midsole at tibia anterior. In medial resilience of midsoles, TPE midsole was significantly higher than EVA, TPU midsole. Conclusion : TPU midsole can reduce the load on the midfoot effectively and activate tibialis anterior, biceps femoris to give help to running.

전후방 및 내외측 방향의 동적 움직임에 따른 균형 및 근육 활성도 특성 (Characteristics of Balance and Muscle Activation responded to Dynamic Motions in Anterior-Posterior and Medial-Lateral Directions)

  • 김충연;정호현;이범기;정덕영;전경진;임도형
    • 대한의용생체공학회:의공학회지
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    • 제34권4호
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    • pp.212-217
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    • 2013
  • Falling is one of the major public problems to the elderly, resulting in limitations of daily living activities. It can be induced by the functional loss of the balance ability and muscle strength in the elderly. It has been, however, not well investigated to suggest an effective methodology improving the balance ability and muscle strength for the prevention of the falling due to lack of information about the characteristics of the balance and muscle activations responded to the dynamic motions. The aim of the current study is, therefore, to identify the characteristics of the balance and muscle activations responded to the dynamic motions in Anterior-Posterior(AP) and Medial Lateral(ML) directions. For that, a motion capture system with eight infrared cameras, surface electromyogram system and Wii Fit system with a customized variable unstable base were used and kinematic and kinetic data obtained from the systems were analyzed for five healthy male($24.8{\pm}3.3years$, $177.4{\pm}2.0cm$, $73.9{\pm}12.9kg$, $23.5{\pm}4.0kg/m$). The results showed that the characteristics of the balance and muscle activations were differently responded to between the dynamic motions in Anterior-Posterior(AP) and Medial Lateral(ML) directions. These findings may indicate that customized dynamic motions should be applied to the training of the balance ability and muscle strength for the effective prevention of the falling. This study may be meaningful to providing basic information to establish a guideline improving effectively the balance ability and muscle strength.