• 제목/요약/키워드: Insole type

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족저 압력분포 평가를 위한 Foot Track System의 개발 (Development of the foot track system for the evaluation of foot plantar surface pressure distribution)

  • 이기훈;정민근;김태복
    • 대한인간공학회지
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    • 제11권2호
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    • pp.23-33
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    • 1992
  • The distribution of the pressure between the sole of a feet and a supporting surface can reveal the information about the structure and fonction of the foot and the posural control of the whole body. In particular, the measurement of the vertical contact forces between the plantar surface of the foot and the shoe insole is of great importance to reveal the loading distributio patterns incurred from a particular shoe midsole design. In order to investigate the plantar surface pressure distribution, an insole-type sensor with a piezoelectric material is developed and tested. The present paper describes a new method to completely reduce both the shear force and pyroelectric effects that are normally caused from piezoelectric materials.

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보행 시 변형 및 복원이 가능한 인솔에 대한 족저압력 비교 분석 (Comparative Analysis of Foot Pressure Distribution by Functional Insole to be Transformed and Restored During Walking)

  • 박승범;이경득;김대웅;유중현;김경훈
    • 한국운동역학회지
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    • 제21권2호
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    • pp.231-241
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    • 2011
  • The purpose of this study was to analyze the distribution of foot pressure generated by active materials of a functional insole. Comfort is an important consideration while selectingfootwear and insoles. Consequently, it has an influence on injury. The development of new materials for functional insoles is considered one of the more important points for their manufacture. The method adopted in this study is as follows. First, ten healthy males were selected as subjects for the study. Each subject's foof was pre-screened podoscope(Alfoots, Korea) to check for the presence of any foot abnormalities, Two kinds of equipment were used for the study: a foot pressure device from Pedar-X, Germany, and a treadmill from Pulsefitness, UK. Next, each subject was asked to test four types of insoles(insoles of outdoor shoes, indoor shoes, walking shoes, and sports shoes) via walking trials on the treadmill at a constant speed of 4.2 km/h. The pressure distribution data(contact area, maximum force, maximum peak pressure, and maximum mean pressure) was collected using the pressure device at a sampling rate of 100 Hz. Results of the tests showed that all four types of functional insoles increased contact areas whit the foot. Further, functional insoles of walking shoes and sport shoes decreased the foot pressure. From these results, we conclude that the active materials of functional insoles of shoes can increase the contact area and provide greater comfort.

달리기시 쿠션형과 모션컨트롤형 런닝화 착용에 따른 생체역학적 비교 (A Biomechanical Comparison of Cushioning and Motion Control Shoes During Running)

  • 이기광
    • 한국운동역학회지
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    • 제15권3호
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    • pp.1-7
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    • 2005
  • Excessive pronation and impact force during running are related to various running injuries. To prevent these injuries, three type of running shoes are used, such as cushioning, stability, and motion control. Although there were may studies about the effect of midsole hardness on impact force, no study to investigate biomechanical effect of motion control running shoes. The purpose of this study was to determine biomechanical difference between cushioning and motion control shoes during treadmill running. Specifically, plantar and rearfoot motion, impact force and loading rate, and insole pressure distribution were quantified and compared. Twenty male healthy runners experienced at treadmill running participated in this study. When they ran on treadmill at 3.83 m/s. Kinematic data were collected using a Motion Analysis eight video camera system at 240 Hz. Impact force and pressure distribution data under the heel of right foot were collected with a Pedar pressure insole system with 26 sensors at 360 Hz. Mean value of ten consecutive steps was calculated for kinematics and kinetics. A dependent paired t-test was used to compare the running shoes effect (p=0.05). For most kinematics, motion control running shoes reduced the range of rearfoot motion compared to cushioning shoes. Runners wearing motion control shoe showed less eversion angle during standing less inversion angle at heel strike, and slower eversion velocity. For kinetics, cushioning shoes has the effect to reduce impact on foot obviously. Runners wearing cushioning shoes showed less impact force and loading rate, and less peak insole pressure. For both shoes, there was greater load on the medial part of heel compared to lateral part. For pressure distribution, runners with cushioning shoes showed lower, especially on the medial heel.

Gait event detection algorithm based on smart insoles

  • Kim, JeongKyun;Bae, Myung-Nam;Lee, Kang Bok;Hong, Sang Gi
    • ETRI Journal
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    • 제42권1호
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    • pp.46-53
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    • 2020
  • Gait analysis is an effective clinical tool across a wide range of applications. Recently, inertial measurement units have been extensively utilized for gait analysis. Effective gait analyses require good estimates of heel-strike and toe-off events. Previous studies have focused on the effective device position and type of triaxis direction to detect gait events. This study proposes an effective heel-strike and toe-off detection algorithm using a smart insole with inertial measurement units. This method detects heel-strike and toe-off events through a time-frequency analysis by limiting the range. To assess its performance, gait data for seven healthy male subjects during walking and running were acquired. The proposed heel-strike and toe-off detection algorithm yielded the largest error of 0.03 seconds for running toe-off events, and an average of 0-0.01 seconds for other gait tests. Novel gait analyses could be conducted without suffering from space limitations because gait parameters such as the cadence, stance phase time, swing phase time, single-support time, and double-support time can all be estimated using the proposed heel-strike and toe-off detection algorithm.

당뇨병 환자의 치료용 신발에 대한 연구 (A Study on the Therapeutic Shoes for Diabetic Patients)

  • 이우천;박성식
    • 대한족부족관절학회지
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    • 제8권1호
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    • pp.16-21
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    • 2004
  • Purpose: To investigate the characteristics of the patients and therapeutic shoes for diabetic patients. Materials and Methods: Forty two diabetic patients who had their own therapeutic shoes which were prescribed somewhere else were studied from March 2003 to December 2003. There were 27 males and 15 females, and the mean age was 62.1 years (range, 49-72 years). Duration of diabetes was average 14 years (range, $6{\sim}30$ years), all had type 2 diabetes. Sensation was examined with 5.07 nylon monofilament. The route of purchasing the shoes, compliance to the prescribed shoes were investigated by interview. The shape of shoe, stiffness of upper, conformity of insole to the shape of the foot were recorded. In-shoe plantar pressure was measured in 15 patients. Results: Eighteen patients were insensate to the monofilament. Seven patients did not wear the therapeutic shoes, and only 18 of 35 patients were wearing the therapeutic shoes more than 6 hours a day. The shoes of 17 patients were prescribed by medical doctor and the rest were purchased by the recommendation of acquaintances or advertisement. Ulcer recurred in four of five patients to whom the shoe was prescribed by medical doctor and the cause of three recurrences were evident by just observing the foot and shoe. The therapeutic shoes were made from 11 different makers. Eight shoes were adequate for diabetic patients with respect to the material, shape of insole, type of shoe. In-shoe plantar pressure was examined in 15 patients and was less than 300 kPa in all patients. Conclusion: The therapeutic shoes for the diabetic patients need to be prescribed by medical doctor for selective patients with neuropathy or previous history of ulcer and follow-up examination is important to monitor the compliance of the patients and adequacy of the shoes.

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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.

균형과 보행분석을 위한 스마트 인솔의 신뢰도와 타당도 분석 (The Reliability and Validity of Smart Insole for Balance and Gait Analysis)

  • 이병권;한동욱;김창용;김기영;박대성
    • 대한통합의학회지
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    • 제9권4호
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    • pp.291-298
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    • 2021
  • Purpose: The Pedisole is a newly developed shoe-mounted wearable assessment system for analyzing balance and gait. This study aimed to determine the reliability and validity of the parameters provided by the system for static balance and gait analysis of healthy adults. Methods: This study included 38 healthy adults (22.4±1.9 years) with no history of injury in the lower limbs. All participants were asked to perform balance and gait tasks for undertaking measurements. For analysis of balance, both the smart Pedisole and Pedoscan systems were concurrently used to analyze the path length of the center of pressure (COP) and the weight ratio of the left and right for 10 s. Gait was measured using the smart Pedisole and GaitRite walkway systems simultaneously. The participants walked at a self-selected preferred gait speed. The cadence, stance time, swing time, and step time were used to analyze gait characteristics. Using the paired t-test, the intra-class coefficient correlation (ICC) was calculated for reliability. The Spearman correlation was used to assess the validity of the measurements. In total, data for balance from 36 participants and the gait profiles of 37 participants were evaluated. Results: There were significant differences between the COP path lengths (p<.050) derived from the two systems, and a significant correlation was found for COP path length (r=.382~.523) for static balance. The ICC for COP path length and weight ratio was found to be greater than .687, indicating moderate agreement in balance parameters. The ICC of gait parameters was found to be greater than .697 except for stance time, and there was significant correlation (r=.678~.922) with the GaitRite system. Conclusion: The newly developed smart insole-type Pedisole system and the related application are useful, reliable, and valid tools for balance and gait analysis compared to the gold standard Pedoscan and the GaitRite systems in healthy individuals.

네스핏 트레킹화와 평면 인솔 트레킹화의 족저압력 분석 (Analysis of Plantar Pressure Differences between Flat Insole Trekking Shoes and Nestfit Trekking Shoes)

  • 최재원;이중숙
    • 한국운동역학회지
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    • 제25권4호
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    • pp.475-482
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    • 2015
  • Objective : The purpose of this study was to investigate mean plantar foot pressure, maximum plantar pressure and ground reaction force, and center migration path of pressure according to the type of trekking shoes for the development of shoes. Method : Subjects of the study averaged $22.10{\pm}2.05years$ of age. Their average height was $169.27{\pm}7.62cm$ and their average weight was $64.34{\pm}10.22kg$. The method of this study was administered measuring 50 steps, at once, 3 times at a speed of 4 km/h and using the data of 30 steps. Pedar-X system measured the mean foot pressure, maximum foot pressure, mean maximum force, and center migration path of pressure by subjects' position while walking. Statistical analysis was performed by SPSS 23.0 using a paired t-test. Results : Results of the study showed Nestfit trekking shoes lower foot pressure of both feet in mean foot pressure and maximum foot pressure. Nestfit trekking shoes showed high ground reaction force (p<.001) in the midfoot, and low mean ground reaction force in the rearfoot. The center migration path of pressure showed the Nestfit trekking shoes were more stable than flat insole trekking shoes. Conclusion : It can be concluded that wearing Nestfit trekking shoes spreads pressure efficiently and induces walking stability because Nestfit trekking shoes spread the pressure of the forefoot and rearfoot to the midfoot and the center migration path of pressure shows regularly.

신발장착형 보행분석 트래커의 사용자경험 분석 (User Experience Analysis of a Shoe-mounted Gait Analysis Tracker)

  • 김시연;정다희;이주영;권지현;임대영;정원영
    • 한국의류산업학회지
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    • 제23권3호
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    • pp.390-405
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    • 2021
  • Gait analysis trackers have been developed to monitor daily gait patterns to improve users' running performance and reduce the risk of injuries. A variety of gait analysis trackers are available on the market(e.g., foot pods, insoles). Depending on the type of gait analysis tracker, users' discomfort or satisfaction as well as required properties may differ. Hence, the purpose of this study was to compare and analyze user experience of three different types of commercial shoe-mounted gait analysis trackers and their mobile applications in a laboratory environment using questionnaires based on actual experiences of each product. Ten males and ten females who regularly enjoy walking and running exercises participated in the experiment. After the participants set up the tracker and application themselves without support from researchers, ten to thirty minutes' exercise was permitted on each product. Following this, the participants answered questionnaires containing evaluation variables on the device and mobile application, as well as satisfaction, intention to use, recommendation, and purchase. In addition, they were asked questions about the attractive features and shortcomings of each device and application. The results showed that the PRO-SPECS® smart insole was preferred over the others for ease of use, perceived durability, psychological burden of the design, and usefulness of the information provided by the application. Along with the results of questionnaire, this study also discussed strategies and recommendations for future product design and development.

스마트 깔창을 이용한 보행 형태 분류를 위한 데이터 전처리 기법에 대한 연구 (Data preprocessing for gait type analysis using smart insole)

  • 서우덕;이성신;최상일
    • 한국정보처리학회:학술대회논문집
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    • 한국정보처리학회 2017년도 추계학술발표대회
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    • pp.885-886
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    • 2017
  • 본 연구에서는 스마트 깔창을 사용한 보행 분석을 위한 데이터 전처리 기법을 제안한다. 이를 위해 본 논문에서는 평지 보행, 오르막 보행, 내리막 보행, 계단 오르기, 계단 내려가기, 달리기, 빠른 보행의 7가지 종류의 보행 데이터를 수집하였다. 수집한 데이터에 대해 제안한 데이터 전처리 기법을 적용한 결과를 실제 걸음 수와 비교하였다. 실험결과 전처리한 결과가 실제 걸음 수에 가까운 결과를 보임을 확인하였다.