• 제목/요약/키워드: Walking Shoe

검색결과 101건 처리시간 0.029초

농작업화에 관한 연구 - 신발종류에 따른 열적 부담 비교연구 - (A study of Agricultural fatigue shoes - A comparative study of heat load by shoe type -)

  • 이경숙;최정화
    • 한국농촌생활과학회지
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    • 제7권2호
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    • pp.99-108
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    • 1996
  • This study has intended to suggest fundamental data to develope and choose appropriate shoes for upland farming in order to prevent health deterioration of women workers and improve work effectiveness and reduce fatigue by wearing appropriate shoes. During 1995. 4. 28 - 5. 10, Fifty women workers in hot pepper farming were observed and major shoe types, which were rubber shoes, walking shoes, slippers, and rubber boots, were selected for the study. During 1995. 10. 9 - 31, two subjects were tested by wearing those shoes in the laboratory where the temperature was 24$\pm$1$^{\circ}C$ and relative humidity 50$\pm$5%RH. And the temperature & humidity on sole and in the shoes, the rectal temperature, skin temperature, blood pressure, pulse, lactate concentration of blood, Flickers' value and subjective sensation were measured. The results were as follows : 1. 84% of women workers mentioned that they need shoes improvement and the order of most frequent shoe types to be worn was rubber shoes, walking shoes, slippers, rubber boots. 2. The rate of women who were unsatisfied with shoes for upland farming is 38 percentages. The reason of unsatisfaction was that feet were in a sweat and alien substances were let into shoes. 3. The temperature & humidity on sole were the lowest in rubber boots during experiment(p<0.01). 4. The relative humidity in the shoes was the highest in rubber boots by 90% and the lowest in walking shoes by 72% during rest And the humidity in slippers and walking shoes were significantly low in experiment(p<0.001). 5. Rubber boots showed the highest rise in rectal temperature by 0.2$^{\circ}C$ showing increase of core temperature (p<0.05). 6. The mean skin temperature during experiment was highest in rubber boots by 33.8$^{\circ}C$(p<0.001).

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유산소 운동능력 향상을 위한 중량물 부가 신발의 기능성 평가 (The Evaluation of an additional Weight Shoe's Function developed for the Improvement of Aerobic Capacity)

  • 곽창수;김희석
    • 한국운동역학회지
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    • 제14권3호
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    • pp.67-82
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    • 2004
  • The purpose of this study was to evaluate the function and the safety of an additional weight shoe developed for the improvement of aerobic capacity, and to improve some problems found by subject's test for an additional weight shoe. The subjects employed for this study were 10 college students. 4 video cameras, AMTI force platform and Pedar insole pressure distribution measurement device were used to analyze foot motions. The results of the study were as follows: 1 The initial achilles tendon angle and initial rearfoot pronation angle of an additional weight shoe during walking were 183.7 deg and 2.33 deg, respectively, and smaller than a barefoot condition. Maximum achilles tendon angle and the angular displacement of achilles tendon angle were 185.35 deg and 4.21 deg respectively, and smaller than barefoot condition. Thus rearfoot stability variables were within the permission value for safety. 2. Maximal anterior posterior ground reaction force of additional weight shoe was appeared to be 1.01-1.2 B.W., and was bigger than a barefoot condition. The time to MAPGRF of an additional weight shoe was longer than a barefoot condition. Maximal vertical ground reaction force of additional weight shoe was appeared to be 2.3-2.7 B.W., and was bigger than a barefoot condition in propulsive force region. But A barefoot condition was bigger in braking force region. The time to MVGRF of an additional weight shoe was longer than a barefoot condition. 3. Regional peak pressure was bigger in medial region than in lateral region in contrast to conventional running shoes. The instant of regional peak pressure was M1-M2-M7-M4-M6-M5 -M3, and differed form conventional running shoes. Regional Impulse was shown to be abnormal patterns. There were no evidences that an additional weight shoe would have function and safety problems through the analysis of rearfoot control and ground reaction force during walking. However, There appeared to have small problem in pressure distribution. It was considered that it would be possible to redesign the inner geometry. This study could not find out safety on human body and exercise effects because of short term research period. Therefore long term study on subject's test would be necessary in the future study.

기능성 건강구두의 개발에 대한 연구 (A Study on the Development of Functional Health Shoe)

  • 김명웅;전광식
    • 한국산학기술학회:학술대회논문집
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    • 한국산학기술학회 2001년도 추계산학기술 심포지엄 및 학술대회 발표논문집
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    • pp.196-200
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    • 2001
  • 발은 두 가지의 기능을 가지고 있는데 첫째는 추진기능이고 다른 하나는 몸을 지탱하고 보호하는 기능이다. 그럼에도 불구하고 발의 중요성을 쉽게 잃어버릴 때가 있다. 발바닥에는 인체의 중요한 부위들이 축소되어 있어 발이 건강하면 몸 전체가 건강하다고 헤서 발은 제2외 심장이라고 한다. 발이 건강하려면 좋은 신발을 신어야 한다. 신발을 사용용도, 신체적인 조건, 외적조건에 따라 재료, 디자인, 라스트, 패턴, 젯법 등이 다양하다. 좋은 신발은 적합성, 신축성, 그리고 순응성이 있어야 한다. 건강한 신발을 만들기 위해서는 인간공학적이고 과학적인 근거를 가지고 설계하여 제조하여야 한다. 특히 최근에는 일의 능률을 높이기 위해 다 기능성 신발의 개발에 많은 관심을 가지고 있어 본 연구에서는 이를 위해 신발의 기능성에 대한 이론과 실험을 근거로 하여 건강한 구두를 개발코자 한다.

Proposed surface modeling for slip resistance of the shoe-floor interface

  • Kim, In-Ju
    • 한국경영과학회:학술대회논문집
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    • 대한산업공학회/한국경영과학회 1995년도 춘계공동학술대회논문집; 전남대학교; 28-29 Apr. 1995
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    • pp.515-528
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    • 1995
  • Slips and falls are the major causes of the pedestrian injuries in the industry and the general community throughout the world. With the awareness of these problems, the friction coefficients of the interface between floorings and footwear have been measured for the evaluation of slip resistant properties. During this measurement process, the surface texture has been shown to be substantially effective to the friction mechanism between shoe heels and floor surfaces under various types of walking environment. Roughness, either of the floor surface or shoe heels, provides the necessary drainage spaces. This roughness can be designed into the shoe heel but this is inadequate in some cases, especially a wear. Therefore, it is essential that the proper roughness for the floor surface coverings should be provided. The phenomena that observed at the interface between a sliding elastomer and a rigid contaminated floor surface are very diverse and combined mechanisms. Besides, the real surface geometry is quite complicate and the characteristics of both mating surfaces are continuously changing in the process of running-in so that a finite number of surface parameters can not provide a proper description of the complex and peculiar shoe - floor contact sliding mechanism. It is hypothesised that the interface topography changes are mainly occurred in the shoe heel surfaces, because the general property of the shoe is soft in the face of hardness compared with the floor materials This point can be idealized as sliding of a soft shoe heel over an array of wedge-shaped hard asperities of floor surface. Therefore, it is considered that a modelling for shoe - floor contact sliding mechanism is mainly depended upon the surface topography of the floor counterforce. With the model development, several surface parameters were measured and tested to choose the best describing surface parameters. As the result, the asperity peak density (APD) of the floor surface was developed as one of the best describing parameters to explain the ambiguous shoe - floor interface friction mechanism. It is concluded that the floor surface should be continuously monitored with the suitable surface parameters and kept the proper level of roughness to maintain the footwear slip resistance. This result can be applied to the initial stage of design for the floor coverings.

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마비측에 적용한 외측 쐐기 깔창이 뇌졸증 환자의 체중부하율과 균형, 보행에 미치는 영향 (The Effects of Lateral Wedged Insole to the Shoe of the Affected Side on Weight Bearing, Balance and Gait with Stroke)

  • 김혜림;신원섭
    • PNF and Movement
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    • 제11권2호
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    • pp.21-29
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    • 2013
  • Purpose : The study was to evaluate the weight distribution, balance and gait function of stroke patients wearing lateral wedged insole to the shoe of the affected side. Methods : 27 patients with stroke (15 men, 12 women) participated in this study. Participants performed weight distribution, dynamic balance and gait ability with or without wedged insole on affected side in a random order. The balancia was used to evaluate the weight distribution. Deviation from the center line was analyzed by Dartfish during sit to stand to evaluate dynamic balance. The functional walk ability evaluated by 10 m walking velocity. Results : The asymmetry index of weight bearing improved significantly with wedged insole of affected side(p<.05). During sit to stand, center of gravity significantly moved from non-affected side to more mid line of body(p<.05). Improvement were shown in walking speed after wearing the wedged insole(p<.05). Conclusion : Wedged insole applied on affected side have a beneficial effect on weight distribution, dynamic balance and walking speed with stroke.

보행 시 생체신호분석을 통한 신발 착용 유무에 따른 마찰 특성 비교 (A Comparative Study on the Characteristics of Friction with/without shoes by Analyzing Bio-signals during walking)

  • 오성근;김진현
    • 융합정보논문지
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    • 제8권6호
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    • pp.59-66
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    • 2018
  • 보행 시 지면에 대한 수직력에 대한 전단력의 비율, 즉 보행자가 사용한 마찰계수(UCOF)는 미끄러짐 발생 가능성 있는 시점을 식별하는데 사용된다. 신발보행은 신발창 두께와 경도, 뒤꿈치 모양, 밑창 문양 등의 신발 디자인이 사용마찰계수를 변화시킬 것이다. 본 연구에서는 보행 시 신발 착용 유무에 따른 사용마찰계수(UCOF) 차이를 분석하기 위해 성인남녀 21명(여자 10명, 남자 11명, 나이: $25.2{\pm}2.3yrs$, 키: $165.6{\pm}7.2cm$, 몸무게: $62.2{\pm}7.8kg$)을 대상으로 보행속도, 지면반력, 사용마찰계수(UCOF) 최대 시점, CoP-CoM-수직선 각도의 차이를 알아보고, 사용마찰계수(UCOF)와의 상관관계를 분석하였다. 그 결과, 첫째, 보행 시 신발 착용으로 인해 체중수용기(제동기)의 더 이른 시점에 사용마찰계수가 최대치에 도달하고, 또 그 크기도 증가한다. 둘째, CoP-CoM의 Tangent 값과 사용마찰계수(UCOF1)와의 상관관계는 오른발 제동 초기시점(UCOF1_h)보다 추진 후기에 발생하는 왼발(다음발) 착지시점(UCOF2_h)에서 더 높은 상관관계를 보여, 제동기 보다는 추진기(다음 발 제동기)와의 연관성을 시사한다.

신발의 안정성에 따른 여성노인과 여대생의 균형능력 변화 (Changes of Balance Ability according to the Stability of Shoes in Elderly Woman and Female University Student)

  • 송유진;민경훈;정덕용;육선영;최윤영;배경윤;조기훈
    • 대한물리치료과학회지
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    • 제26권3호
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    • pp.70-75
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    • 2019
  • Purpose: The purpose of this study was to investigate the changes of static and dynamic balance control ability according to the stability of shoes in elderly woman and female university student. Design: Cross-sectional study. Methods: Six elderly women and seven female university students were recruited for this study. The subject's static and dynamic balance were evaluated while wearing two different types of shoes (comfortable running shoe and masai walking shoe). The BT4 system was used to measure the static (postural sway area and velocity) and dynamic balance (limit of stability on forward, backward and left and right side). The measurement of static and dynamic balance control ability was performed in standing posture wearing comfortable running shoes and masai walking shoes. Results: In the static balance control ability, both female university students and elderly women showed significant increase in postural sway area and velocity when wearing unstable shoes (p<0.05) In addition, in the dynamic balance control ability, both female university students and elderly women showed significant decrease in limit of stability on forward and backward when wearing unstable shoes (p<0.05). Conclusion: In selecting shoes for the elderly, the stability of shoe should be considered for prevention of falls.

발계측 자료에 기초한 신골 할출 시스템의 검증에 관한 연구 (A Study on Verification of Shoe Last Grading System Based on Foot Measuring Data)

  • 박해수
    • 대한인간공학회지
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    • 제26권1호
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    • pp.71-77
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    • 2007
  • Shoe's size and shape are determined by the last that takes shape of foot because last is the mold of shoe in development and manufacturing process. Then adaptation between foot and shoe is dependent on the last. In mass shoe production, model size is developed in the first place, other sized lasts are made through the grading process based on model size. The most important factor in grading system is grading deviation that must be same amount induced from foot measuring database. At present, most of the last manufacturing companies in korea using 260mm as a standard foot model size. When length grading deviation is 5mm, the ball girth grading deviation is 3.7mm and the ball width grading deviation is 1.2mm. I verified existing grading system by comparing grading results with foot measuring data. Also, I proposed reasonable grading deviation and application method of grading system. From the analysis of foot measuring database, reasonable grading deviations are 1.22mm in ball width and 0.84mm in ankle height in case of length grading deviation is 5mm. I confirmed that the current grading system is very accurate. When we grade last from 230mm to 290mm by current grading system based on model size 260mm, there is grading error over 1mm in the front outside area of foot. This error level of 1mm is no problem in normal walking shoe's last, but it induces adaptation problems in sports and special purposed shoe's last. Therefore using of three standard model size is recommended in grading men's last for reducing grading deviation error under the level of 1mm. It is specifically described as 235mm in 225-245mm, 260mm in 250-270mm, 285mm in 275-295mm. According to the above recommended grading system, it is enough to measure only three foot sizes in case of foot measuring project for men's last development.

보행시 신발, 속도, 그리고 경사도에 따른 정규 저크의 차이 (The Differences of the Normalized Jerk According to Shoes, Velocity and Slope During Walking)

  • 한영민;최진승;김형식;임영태;이정한;탁계래;이경옥;박승범
    • 한국운동역학회지
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    • 제16권2호
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    • pp.1-8
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    • 2006
  • The purpose of this study was to evaluate normalized jerk according to shoes, slope, and velocity during walking. Eleven different test subjects used three different types of shoes (running shoes, mountain climbing boots, and elevated forefoot walking shoes) at various walking speeds(1.19, 1.25, 1.33, 1.56, 1.78, 1.9, 2, 2.11, 2.33m/sec) and gradients(0, 3, 6, 10 degrees) on a treadmill. Since there were concerns about using the elevated forefoot shoes on an incline, these shoes were not used on a gradient. Motion Analysis (Motion Analysis Corp. Santa Rosa, CA USA) was conducted with four Falcon high speed digital motion capture cameras. Utilizing the maximum smoothness theory, it was hypothesized that there would be differences in jerk according to shoe type, velocity, and slope. Furthermore, it was assumed that running shoes would have the lowest values for normalized jerk because subjects were most accustomed to wearing these shoes. The results demonstrated that elevated forefoot walking shoes had lowest value for normalized jerk at heel. In contrast, elevated forefoot walking shoes had greater normalized jerk at the center of mass at most walking speeds. For most gradients and walking speeds, hiking boots had smaller medio-lateral directional normalized jerk at ankle than running shoes. These results alluded to an inverse ratio for jerk at the heel and at the COM for all types of shoes. Furthermore, as velocity increased, medio-lateral jerk was reduced for all gradients in both hiking boots and running shoes. Due to the fragility of the ankle joint, elevated forefoot walking shoes could be recommended for walking on flat surfaces because they minimize instability at the heel. Although the elevated forefoot walking shoes have the highest levels of jerk at the COM, the structure of the pelvis and spine allows for greater compensatory movement than the ankle. This movement at the COM might even have a beneficial effect of activating the muscles in the back and abdomen more than other shoes. On inclines hiking boots would be recommended over running shoes because hiking boots demonstrated more medio-lateral stability on a gradient than running shoes. These results also demonstrate the usefulness of normalized jerk theory in analyzing the relationship between the body and shoes, walking velocity, and movement up a slope.

Lower Extremity Muscle Activity while Wearing High-heeled Shoes under Various Situations: A Therapeutic Perspective

  • Kim, Yu-Shin;Lim, Jong-Min;Ko, Na-Yeon;Yoon, Bum-Chul
    • The Journal of Korean Physical Therapy
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    • 제23권3호
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    • pp.49-56
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    • 2011
  • Purpose: To evaluate changes in lower extremity muscle activity caused by high heeled shoe wearing during normal, brisk, and upslope walking. Methods: Twenty healthy young women (age, $23.9{\pm}2.47$) participated in this study. Muscle activities of the tibialis anterior, peroneus longus, gastrocnemius lateralis, gastrocnemius medialis, soleus, hamstring, vastus lateralis, and vastus medialis while walking normally, walking briskly, and walking up a slope. Results: When walking normally, the peroneus longus, gastrocnemius lateralis, soleus, and vastus lateralis evidenced higher activity when high-heeled shoes were worn (p<0.05). During brisk walking, the peroneus longus and gastrocnemius lateralis exhibited higher activity (p<0.05). Although the peroneus longus and vastus lateralis exhibited higher activity when walking up an incline with high-heeled shoes, the activity levels of the tibialis anterior and gastrocnemius medialis were lower (p<0.05). Conclusion: The results of this study demonstrate that increased heel height substantially reduces muscle effort when walking up a slope. From a therapeutic perspective, it is possible that using high heeled shoes over a short period might enhance muscle activity of ankle evertor, although it can cause mediolateral muscle imbalances in the lower extremities.