• 제목/요약/키워드: shoes insole

검색결과 55건 처리시간 0.021초

제화의 최적설계에 관한 연구 -조립식 중창의 접착강도 및 흡수율을 중심으로- (A STUDY ON THE MOST SUITABLE DESIGNING OF SHOEMAKING -Centering around the adhesive tensile and absorption percentage of assembly insole-)

  • 이종철
    • 산업경영시스템학회지
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    • 제12권20호
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    • pp.33-38
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    • 1989
  • In order to achieve the most suitable designing of shoemaking, the structure of shoemaking is described in this study by inquiring into structural and functional effects given by shoes to human feet. Also, the role of insole that is an essential portion in view of function in shoemaking is described and. for the improvement of quality the fact that selection of material of insole has an effect to quality is substantiated through experiments of adhesive tensile and absorption percentage. Though identification of the qualify of insole with the naked eyes is impossible because it is inserted between the internal layers of a shoe. It is not only an essential portion for the improvement of the quality of shoemaking but it gives an essential effect to the sanitation and health of human body(feet) when insole of lower qualify is used. In view of these the improvement and enhancement of the quality of home-made material of insole are earnestly required.

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겔-타입 인솔이 무릎 골관절염 환자의 보행에 미치는 영향 (The Effects of Gel-type Insole on Patients with Knee Osteoarthritis during Gait)

  • 은선덕;유연주;신학수
    • 한국운동역학회지
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    • 제17권3호
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    • pp.181-188
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    • 2007
  • The purpose of this study was to investigate the biomechanical effects of wearing different type of insole shoes on gait characteristics in patients with knee osteoarthritis. Seven patients with knee osteoarthritis (Grade 3 & 4 by Kellgren & Lawrence) were participated in the study. They wore two different type of shoes (with Gel-type Insole: GIS, with Normal insole: NIS) during gait. Three dimensional cinematography and Ground Reaction Force(GRF) data were used to get the maximal value of horizontal distance between the center of pressure in GRF and knee joint center, GRF in mediolateral direction, peak value of GRF in frontal plane, vertical compressive force and adduction moment in knee joint. The results were as follows: The maximal value of horizontal distance between the center of pressure in GRF and knee joint center was smaller in GIS than NIS. The peak value of GRF in mediolateral direction was found in 30% of gait cycle, five subjects wearing GIS showed lower value of peak GRF in mediolateral direction than wearing NIS. The peak value of GRF in frontal plane and vertical compressive force in knee joint did not show any difference between GIS and NIS. The adduction moment in GIS decreased in the late stance of gait and the mean value of the adduction moment in GIS smaller than that in NIS. GIS may help to move quickly knee joint center to the center of pressure in GRF, therefore it may prevent increasing the adduction moment in knee joint.

20대 여성의 신발종류에 따른 족저압 영역별 비교 연구 (A comparison study for mask plantar pressure measures to the difference of shoes in 20 female)

  • 김용재;지진구;김정태;홍준희;이중숙;이훈식;박승범
    • 한국운동역학회지
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    • 제14권3호
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    • pp.83-98
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    • 2004
  • The purpose of this study was to investigate the test-retest of plantar pressures using the F-Scan system over speeds and plantar regions. 6 healthy female subjects in 20's were recruited for the study. Plantar pressure measurements during locomotor activities can provide information concerning foot function, particularly if the timing and magnitude of the loading profile can be related to the location of specific foot structures such as the metatarsal heads. The Tekscan F-Scan system consists of a flexible, 0.18mm thick sole-shape having 1260 pressure sensors, the sensor insole was trimmed to fit the subjects' right. left shoes - sneakers shoes & dress shoes. It was calibrated by the known weight of the test subject standing on one foot. The Tekscan measurements show the insole pressure distribution as a function of the time. This finding has important implications for the development of plantar pressure test protocols where the function of the forefoot is important. According to the result of analysis it is as follows 1) Center of force trajectory in women's dress shoes display direct movement, compare with center of force trajectory in Sneaker shoes displays a little bit curved slow pronation movement. Sneaker shoes in forefoot part display very quick supination movement, therefore, this shoes effects negative effectiveness for ankle's stability Considering center of force trajectory analyzing the more center of force close straight line, the more movement can be quick movement for locomotion. For foot pressure distribution, center of force trajectory in locomotion is better to curved trajectory with pronation movement. So sneaker shoes style is good shoes considering center of pressure distribution trajectory compare with women's dress shoes. 2) Women's dress shoes increased peak pressure in medial, this is effected by high hill's height. The more increased women's dress shoes's height, the more women's peak pressure will increase, pronation can increase compare with before. Supination movement increase, this focused pressure in lateral, also, supination increased more. If the supination movement increased, foot pressure focused in lateral, therefore, it is appeared force distribution in gait direction. This is bad movement in foot's stability. 3) Women's dress shoes in landing phase displayed a long time, this is when women's dress shoes wear, gait movement is unbalance, so, landing phase displayed a long time. For compensation in gait, swing phase quick movement. 4) Women's dress shoes displayed peak pressure distribution in lateral of rearfoot part, Sneakers shoes displayed peak pressure distribution in medial of forefoot part. Its results has good impact absorption compare with women's dress shoes. In forefoot part, sneakers shoes has good propulsive force compare with women's dress shoes.

The reliability test of a smart insole for gait analysis in stroke patients

  • Seo, Tae-Won;Lee, Jun-Young;Lee, Byoung-Hee
    • 대한물리치료과학회지
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    • 제29권1호
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    • pp.30-40
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    • 2022
  • Background: This study analyzed the reliability of smart guides for gait analysis in patients with stroke. Design: Cross-sectional study. Methods: The participants of the study were 30 patients with stroke who could walk more than 10 m and had an MMSE-K test score of ≥24. Prior to the experiment, the subjects or their guardians entered their demographic characteristics including gender, age, height, weight into the prepared computer. The experiment was conducted in a quiet, comfortable, and independent location, and the patient was reminded of the equipment description, precautions, and safety rules for walking. A smart insole was inserted into the shoes of the patients and the shoes were put on before the patients walked three times on the 5-m gait analysis system mat installed in the laboratory. Results: The reliability of the equipment was compared with that of the gait analysis system, and the results of this study are as follows: among the gait analysis items, velocity had an ICC=0.982, the cadence had an ICC=0.905, the swing phase on the side of the gait cycle had an ICC=0.893, the swing phase on the side of the gait had an ICC=0.839, that on the non-affected side had an ICC=0.939, single support on the affected side had an ICC=0.812, and support on the non-affected side had an ICC=0.767. Conclusion: The results of this study indicate no statistical difference between the smart insole and the gait analysis system. Therefore, it is believed that real-time gait analysis through smart insole measurement could help patients in rehabilitation.

지반조건과 신발의 종류에 따른 족저압 분포 (Plantar foot pressure distribution depending on ground conditions and shoe type)

  • 김상환;이혜윤;김연덕
    • 한국산학기술학회논문지
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    • 제16권4호
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    • pp.2899-2905
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    • 2015
  • 본 논문은 지반 조건에 따른 족저압의 압력분포에 대한 연구이다. 실내화, 실외화, 걷기화, 운동화의 네 가지 카테고리의 신발이 본 연구에 사용되었으며, 260mm(유럽 코드 EU40)를 착용하는 45명의 20대 남성을 대상으로 콘크리트, 모래 지반에서의 실험을 실시하였다. 보행 시 응력과 압력의 측정은 Techstorm사의 Insole System을 사용하여 측정하였으며 발의 발가락, 전족, 중족, 후족 네 가지 영역에서 족저압을 측정하였다. 연구 결과 신발과 지반 조건에 따라 다른 응력 및 압력의 분포를 나타냈으며 본 연구 결과는 모래 지반에서 착용 가능한 신발의 개발에 유용하게 사용될 것으로 기대된다.

중창의 높이가 건강한 젊은 남성들의 정적 및 동적 균형에 미치는 영향 (Effects of Shoe Insole Height on Static and Dynamic Balance among Healthy Young Men)

  • 송근찬;박민지;조수연;김미래;조은진;강순희
    • 대한통합의학회지
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    • 제3권3호
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    • pp.49-57
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    • 2015
  • Purpose : The purpose of this study was to identify whether static and dynamic balance in young men were influenced by the different height of insoles in their shoes. Methods : Eighteen healthy young men (mean $20.61{\pm}1.38years$) were recruited for this study. The subjects' static and dynamic balance were assessed while wearing three different height' insoles (0cm, 2cm, 3cm) in their tennis shoes. Anterioposterior (AP) and mediolateral (ML) sway velocity was measured for 20 seconds using a force plate (Good balance system, Finland) under four conditions including normal standing with eyes open and with eyes closed, and tandem standing with eyes open and with eyes closed. The Functional Reach Test (FRT) and Timed Up & Go (TUG) were also performed for each subject under each condition. Results : 1) ML and AP sway velocities in young men were significantly different according to the height of the insole in normal standing with eyes open and eyes closed. 2) ML and AP sway velocities in young men were not different according to the height of the insole in tandem standing with eyes open. 3) ML sway velocities in young men were significantly different according to the height of the insole in tandem standing with eyes closed, whereas AP sway velocities did not differ by height of the insole in tandem standing with eyes closed. 4) FRT scores in young men were significantly different according to the height of the insole. 5) TUG scores in young men were not significantly different according to the height of the insole. Conclusions : This study's results indicate that the static and dynamic balance in young men can be influenced by shoe insole height.

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.

보행 중 중족골 패드와 인솔의 생체역학적 영향성 평가 (Evaluation for Biomechanical Effects of Metatarsal Pad and Insole on Gait)

  • 최정규;박인식;이홍재;원용관;김정자
    • 한국운동역학회지
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    • 제21권4호
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    • pp.487-494
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    • 2011
  • The purpose of this study was to evaluate the effects of metatarsal pad (MP) compared with barefoot and MP with using different insoles on gait. 15 healthy females who had no history of injury in the lower extremity with an average age of 22.7 year(SD=1.35), height of 160 cm(SD=3.4), weight of 48.8 kg(SD=5.52) and average foot size of 232.5 mm(SD=6.8) participated in this study as the subjects. The subjects walked on a treadmill under four different experimental conditions: 1) walking with barefoot, 2) walking wearing MP 3) walking wearing a soft insole with MP(SIMP), 4) walking wearing a rigid insole with MP(HIMP). During walking, foot pressure data such as force, contacting area, peak pressure, and mean pressure was collected using Pedar-X System(Novel Gmbh, Germany) and EMG activity of lower limb muscles such as tibialis anterior(TA), lateral gastrocnemius(LG), rectus femoris(RF), and musculus biceps femoris(MBF) was gathered using Delsys EMG Work System(Delsys, USA). Collected data was then analyzed using paired t-test in order to investigate the effects of each of experimental conditions. As a result of the analysis, when MP and HIMP were equipped, overall contacting area was increased while the force, peak pressure and the mean pressure were decreased. Especially, when the SIMP was equipped, every data were significantly decreased. In case of EMG, wearing MP, SIMP and HIMP made three muscles(TA, LG, RF)'s activity decrease. A result of the analysis will be able to apply for manufacturing functional shoes, diabetes shoes, senior shoes and lower extremity orthosis. Significance of the study due to a metatarsal pad and the insole is to analyze the changes in muscle strength.

스마트인솔기술의 시장동향 및 사업화 기회 (Market trends and business opportunities of the smart insole technology)

  • 박재수;박정용
    • 한국정보통신학회논문지
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    • 제20권7호
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    • pp.1389-1397
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    • 2016
  • 본 연구는 스마트인솔기술의 사업화기회를 분석하였다. 인솔에 압력감응센서, 가속도센서가 응용되어 발과 신체의 균형을 만들고 또한 엔터테인먼트(스포츠, 오락 등) 및 헬스케어용으로 활용되면서 기술의 스마트화를 확장하고 있다. 일례로 스마트인솔은 센서가 측정한 무게 값을 스마트폰으로 전송해 잘못된 보행습관을 고칠 수 있으며 운동시에는 무게중심 이동상황을 측정해 알려줌으로써 자세교정에 도움을 준다. 그럼에도 불구하고 스마트인솔기술은 엔터테인먼트 및 헬스케어 시장에서 뚜렷한 경계를 지니지 못하고 있다. 그것은 기능의 유사성에 따른 것으로써 피트니스밴드, 스마트양말, 스마트신발 등이 스마트인솔의 혜택을 대체할 수도 있기 때문이다. 스마트인솔의 사업화 기회는 스마트인솔 그 자체보다 심전도, 체온, 혈압 등에 관한 솔루션서비스의 도구로 위치할 것이다.

Effects of Artificial Leg Length Discrepancies on the Dynamic Joint Angles of the Hip, Knee, and Ankle During Gait

  • Kim, Yong-Wook;Jo, Seung-Yeon;Byeon, Yeoung-In;Kwon, Ji-Ho;Im, Seok-Hee;Cheon, Su-Hyeon;Kim, Eun-Joo
    • 대한물리의학회지
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    • 제14권1호
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    • pp.53-61
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    • 2019
  • PURPOSE: This study examined the dynamic range of motion (ROM) of the hip, knee, and ankle joint when wearing different shoe sole lifts, as well as the limb asymmetry of the range according to the leg length discrepancy (LLD) during normal speed walking. METHODS: The participants were 40 healthy adults. A motion analysis system was used to collect kinematic ROM data. The participants had 40 markers attached to their lower extremities and were asked to walk on a 6 m walkway, under three different shoe lift conditions (without an insole, 1 cm insole, and 2 cm insole). Visual3D professional software was used to coordinate kinematic ROM data. RESULTS: Most of the ROM variables of the short limbs were similar under each insole lift condition (p>.05). In contrast, when wearing a shoe with a 2 cm insole lift, the long limbs showed significant increases in flexion and extension of the knee joint as well as; plantarflexion, dorsiflexion, pronation, eversion, and inversion of the ankle joint (p<.05). Of the shoes with the insole lifts, significant differences in all ROM variables were observed between the left and right knees, except for the knee internal rotation (p<.05). CONCLUSION: As the insole lift was increased, more ROM differences were observed between the left and right limbs, and the asymmetry of the bilateral lower limbs increased. Therefore, appropriate interventions for LLD are needed because an artificial mild LLD of less than 2.0 cm could lead to a range of musculoskeletal problems of the lower extremities, such as knee and ankle osteoarthritis.