• Title/Summary/Keyword: 기능성 인솔

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Convergence Comparison of the Angle Change of Ankle Joint while Walking according to the Heel height of Insole Shoes in 20s males with Flatfoot (평발을 가진 20대 남성이 인솔구두의 굽 높이에 따른 보행 시 발목관절의 각도변화에 대한 융복합적 비교)

  • Seo, Kyo-Chul;Park, Seung-Hwan;Kim, Hyen-Ae
    • Journal of the Korea Convergence Society
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    • v.12 no.12
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    • pp.117-123
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    • 2021
  • The purpose of this study is to convergence comparison the ankle joint angle change during walking of college students in their 20s with flat foot according to the heel height of insole shoes. Qualisys Track Manager Software ver. 2.8 (Qalisys Track Manager) was used for 15 college students. Functional shoes with insoles were manufactured, and the heel heights of the shoes were set to 3cm and 7cm. The subjects wore shoes with two high heels and gaited by attaching a reflex marker to the side of the ankle joint. The angle change of the ankle joint was measured in the gait stance phase. The angle of the ankle joint significantly decreased both heel strike, foot flat, midstance, and toe off to the heel height increased when the subjects with flat feet wore insole shoes. Therefore, it is thought that flat feet should wear low shoes when wearing insoles to reduce the fatigue of the soles and to walk comfortably.

Effects of Functional Insole on Walking in the Elderly (기능적 인솔이 노인의 보행에 미치는 영향)

  • Seo, Dong-Kwon
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.20 no.12
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    • pp.280-286
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    • 2019
  • This study verified the difference in biomechanical variation and the pattern of the lower limb between using or not using functional insoles on the gait of elderly people. Ten females subjects were selected (age: 73.2 years, height: 152.1 cm, body mass: 59.4 kg) for testing their gait with using functional insoles and without using functional insoles. The gait motions were captured with the Qualisys system and the gait parameters were calculated with Visual-3D. As a result, the subjects' stride length and swing time were significantly increased (p<.05). Also, the lower limb's extension moment was significantly increased (p<.05) when using the insole. These differences suggest the functional insole used in the experiment increases the subjects' gait stability. However, to generalize the results of this study, it is necessary to accumulate more quantitative data with more subjects. Further studies to examine gait variables and changes of walking patterns need to be conducted by gathering and utilizing the results of those subjects who have used insoles for a long period of time.

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

  • Park, Jae-Sue;Park, Jung-Yong
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.20 no.7
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    • pp.1389-1397
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    • 2016
  • This study was to evaluate opportunities for the commercialization of smart insole. smart technology is evolving to Insole. Pressure-sensitive sensor or an acceleration sensor is applied to create a balance of the feet and body, is also evolving for entertainment (sports, entertainment, etc.) and health care. Moreover, smart insole can fix an incorrect walking habit by sending a weight value measured by the sensor on a smartphone and during the movement, smart insole helps to correct body balance by measuring the center of gravity moving condition. However, smart tendency of the insole has yet to create a clear boundary in the entertainment and healthcare markets. This is because the fitness band, smart socks, smart shoes can also replace the benefits of a smart insole. Interestingly, the business opportunities are appearing more frequently in health care solution service of electrocardiogram, body temperature, blood pressure, etc., rather than smart devices.

Changes of Biophysical and Physical Fitness Function on Combined Exercise Program in 20' Female University Students with Obesity according to Heights of Insole (인솔 높이에 따른 복합운동프로그램 적용 시 20대 비만 여대생의 신체생리 및 체력적 기능 변화)

  • Shin, Chul-Wha;Kim, Chan-Kyu;Jang, Il-Yong;Lee, Eun-snag;Jung, Dae-In
    • The Journal of the Korea Contents Association
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    • v.15 no.10
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    • pp.336-345
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    • 2015
  • This study conducted the following experiment to examine change of biophysical and physical fitness function on combined exercise program in 20' female university students with obesity according to heights of insole. Obesity related biophysical function was measured by basal metabolism and percent body fat(% Fat) and health related physical fitness was measured by isokinetic strength of quadriceps femoris muscle, muscular endurance, flexibility and power on comparative analysis of pre, post exercise and each groups(0cm, 5cm, 9cm) in 36 female university students with obesity subject according to heights of insole. These result lead us to the conclusion that each group were statistically improved at isokinetic muscular strength of quadriceps femoris muscle and basal metabolism, but 5cm group compared with 0cm and 9cm group was more significant improvement. Consequently, combination exercise applying appropriate heights of insole would be lead to positive increment of muscular strength and basal metabolism.

A Study on the Foot Plantar Pressure and Temperature changes of the Developed Combat boots with Functional Impact Absorption and Ventilation Insole (충격흡수 및 통기기능 인솔을 적용한 개발 전투화의 족저압력 및 온도변화 연구)

  • Han, Ki-Hoon;Lee, Joong-Sook;Bae, Kang-Ho;Shin, Jin-Hyung;Jeong, Sang-Ok
    • Journal of the Korean Applied Science and Technology
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    • v.35 no.1
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    • pp.89-98
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    • 2018
  • The purpose of this study was to compare the foot plantar pressure and temperature changes of the developed combat boots with functional impact absorption and ventilation insole. A total of 11 male subjects(age: $21.8{\pm}2.2yrs$, height: $174.3{\pm}3.6cm$, weight: $71.6{\pm}8.6kg$, foot length: $261.0{\pm}1.0mm$) were recruited to compare the foot plantar pressure and temperature changes of the three types of combat boots: Combat boots A (generalized combat boots), Combat boots B (developed combat boots with ventilation function), Combat boots C (Application of ventilation function and impact absorption insole to combat boots B). Pedar-X and a portable thermistor temperature sensor were used to measure the foot plantar pressure parameters and the internal temperature of the combat boots, respectively. One-way ANOVA was used to compare the results of plantar pressure and temperature changes. The results were as follows: First, in the foot plantar pressure parameters, combat boots C showed the significant lower maximum foot plantar pressure in the right/left rear foot compared with combat boots A and average foot plantar pressure in the left foot compared with combat boots B. Second, after 40 minutes from the start of walking, the developed combat boots B and C showed the significant lower temperature than the general combat boots A.

Comparison of plantar pressure and COP parameters in three types of arch support insole during stair descent in elderly with flatfoot (편평족 노인의 계단 하강 보행 시 아치 지지형 인솔 종류에 따른 족저압력 및 균형성 평가)

  • Han, Ki-Hoon;Bae, Kang-Ho;Jung, Ha-gon;Ha, Min-Sung;Choi, Do-Yeol;Lee, Joong-Sook;Yang, Jeong-Ok
    • Journal of the Korean Applied Science and Technology
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    • v.35 no.3
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    • pp.948-955
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    • 2018
  • The purpose of this study was to compare plantar pressure and COP parameters in three types of arch support insole during stair descent in elderly with flatfoot. A total of 14 women elderly were recruited for this study. Pedar-X was used to obtain plantar pressure(peak pressure, mean pressure, and contact area) and COP(distance, displacement, excursion) parameters. One-way ANOVAs were used to compare peak pressure, mean pressure, and contact area, distance of COP, displacement of COP, and excursion of COP. Among the plantar pressure parameters, significant(p<0.05) differences were observed in M3 for the peak pressure, M2, M3, and M4 for the mean pressure, and M2, M3, and M6 for the contact area. Among the COP parameters, distances of COP both in the mediolateral and anteroposterior axes revealed significant(p<0.05) differences. The larger peak pressure values of type A and B insoles were observed as compared to normal insole. The larger peak pressure and shorter COP distance values of type A and B insoles were observed as compared to normal insole.

Comparison of the Contact Area, Maximum Pressure, Maximum Average Pressure and Maximum Force between Functional Insoles and General Insoles (기능성 인솔과 일반 인솔의 발에 대한 접촉 면적, 최대 압력, 최대 평균압력 및 최대 힘 비교)

  • Lee, Su-Kyoung
    • PNF and Movement
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    • v.20 no.3
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    • pp.431-441
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    • 2022
  • Purpose: The purpose of this study was to compare the changes in the contact area, maximum pressure, maximum mean pressure, and maximum force of functional insoles and general insoles when walking. Methods: Foot pressure was measured by the ignition of functional insoles and general insoles on Company N shoes. The foot pressure was measured using a precision pressure distribution meter (Pedar - X mobile system, Novel, Germany). Each insole sensor contained 99 independent cells and was inserted between the foot and the shoe. A wireless Bluetooth-type program was used to measure the pressure detected by the measuring insoles. In order to eliminate adaptation and fatigue caused by wearing the guide during the experiment, sufficient rest was taken between each experiment, and the wearing order was randomly selected. Results: Functional insole significantly increased the forefoot and midfoot (medial, lateral) (p<0.05), while total foot, forefoot, and rearfoot peak pressure significantly decreased (p < 0.05) compared to the general insole. Conclusion: In the functional insole, a high contact area was measured inside, even in the middle of the foot, leading to a proper change in foot pressure. It was confirmed that the contact area was reduced and dispersion occurred well. In addition, it was found that the maximum pressure in the front and back of the entire foot was reduced, so the weight pressure dispersion in the functional insole was evenly distributed, and the maximum average pressure change was similar.

The Effect of Protective Socks Combined with Functional Insole on Plantar Foot Pressure in Healthy Adults: A Pilot Study (정상인 대상으로 기능성 인솔과 결합한 보호형 양말이 발바닥 압력에 미치는 영향: 예비 실험 연구)

  • Jung, Do-Young
    • Journal of the Korean Society of Physical Medicine
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    • v.13 no.1
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    • pp.147-154
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    • 2018
  • PURPOSE: This study examined the ability of experimental socks combined with a functional insole to reduce plantar foot pressure in healthy subjects. METHODS: The study enrolled 15 subjects. An in-shoe measurement device was used to measure the peak plantar pressure while walking. The peak forefoot, midfoot, and hindfoot plantar pressure data were collected under two conditions: the subjects were wearing their own socks and while they were wearing the experimental socks. The paired t-test was used to determine the differences in peak plantar pressure between the two conditions at all three positions. RESULTS: Wearing the experimental socks resulted in a significantly higher peak plantar pressure in the medial forefoot and midfoot areas than wearing one's own socks (p<.05), and also in significantly lower peak plantar pressure in the medial and lateral hindfoot (p<.05). However, there were no significant differences of peak plantar pressure between experimental and own socks in middle and lateral forefoot (p>.05). CONCLUSION: The experimental socks combined with a functional insole decreased plantar pressure in the hindfoot and supported the medial longitudinal arch. However, it is necessary to change the design and material of the forefoot area in the functional insole to prevent foot ulcer at that location in people with diabetes mellitus.

The Biomechanical Evaluation of Functional Insoles (기능성 인솔유형들의 생체역학적 평가)

  • Kim, Eui-Hwan;Cho, Hyo-Kyu;Jung, Tae-Woon;Kim, Sung-Sup;Chung, Jae-Wook
    • Korean Journal of Applied Biomechanics
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    • v.20 no.3
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    • pp.345-353
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    • 2010
  • The purpose of this study was to compare and biomechanical evaluate the effects of three varying functional insoles on the kinematics of the lower extremities and foot pressure distribution during gait. For this 12 subjects participated in this study and each worn the 3 functional insoles during gait which kinematics, kinetics, electromyography and foot pressures were recorded. The function on the first insole was to absorb shock and increase the dynamic stability, the second was a gel type to absorb shock, and the third was to massage the center regions of the foot sole. the results were as follows; the first insole reduced the joints range of motion and reduced muscular fatigue, the second insole reduce the maximum, total and average foot pressures. Finally, the third insole produced larger values for the contact times and contact area.

Effects of Functional Insole Application Using the Hallux Point on Dynamic Balance (할룩스 포인트를 이용한 기능성 인솔 착용 시 동적균형에 미치는 영향)

  • Su-Kyoung Lee;Im-Rak Choi
    • PNF and Movement
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    • v.22 no.2
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    • pp.267-274
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    • 2024
  • Purpose: The purpose of this study was to determine the effects of functional insole application using a hallux point on dynamic balance. Methods: Twenty-nine participated in this study. The experiment investigated changes in dynamic balance with the use of a functional insole that emphasized the hallux point. After explaining the experiment to the subjects, the Y-balance test was conducted to measure dynamic balance before the insole was applied. The test was then repeated after the functional insole with the hallux point was. Paired t-tests were used to analyze the statistical differences before and after the application of the functional insole with the hallux point. Results: The functional insole that emphasizes the hallux point significantly increased the distance in the anterior (p<0.05), posteromedial (p<0.05), posterolateral (p<0.05) directions as well as the composite score measured by the Y-balance test compared to before the insole application. Conclusion: The use of a functional insole that emphasizes the hallux point can help the foot pronate during dynamic balance, thereby improving balance through the control of the sole.