• 제목/요약/키워드: Walking stability

검색결과 331건 처리시간 0.022초

노르딕 워킹이 퇴행성 무릎 관절염 노인여성의 근력과 유연성, 균형 및 통증에 미치는 영향 (Effects of Nordic Walking Exercise on muscular strength, Flexibility, Balance and Pain in Older Woman with Knee Osteoarthritis)

  • 오유성;김지선;장우성
    • 한국응용과학기술학회지
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    • 제36권4호
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    • pp.1312-1326
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    • 2019
  • 본 연구는 퇴행성 무릎 관절염을 가진 노인여성을 대상으로 12주간의 노르딕 워킹을 통해 신체 기능과 관절염 통증 정도의 개선에 어떠한 효과를 미치는지 규명하는데 목적이 있다. 본 연구의 대상자는 퇴행성관절염으로 진단받은 노인여성 16명(나이: 73.00±3.70year, 신장: 154.30±4.07cm)을 대상으로 무선배정 된 노르딕 워킹 운동그룹(n=9)과 통제그룹(n=7)으로 나누었다. 운동 그룹은 노르딕 스틱을 이용하여 12주간 주 3회, 1회 30분 노르딕 워킹 운동을 실시하였고, 운동 강도는 HRR의 40-60%로 설정하였다. 통제그룹은 동일한 기간 동안 일상생활을 유지하도록 하였다. 종속변인으로 신체조성(체중, 체지방률, 근골격량)과 근력 과 유연성(상·하지 근력, 상·하지 유연성), 균형능력(정적균형, 동적균형) 및 통증정도를 측정하였다. 이러한 지표들의 측정은 운동프로그램을 진행하기 전과 후로 나누어 2번 측정하였다. 자료처리는 SPSS-PC version 25.0을 이용하여 실험집단과 통계집단간의 생리학적 특성 비교를 위해 독립표본 t-test를 사용하였으며, 노르딕 워킹 운동그룹과 통제그룹의 그룹 간, 시기간의 변화를 알아보기 위해 2×2 반복측정 이원배치분산분석을 사용하였다. 연구 결과는 첫째, 12주간의 노르딕 워킹을 통해 신체조성 기능에서 체지방률은 운동 처치 후에 감소하는 결과가 나타났으며(p=.004), 집단 간과 시기 간의 상호작용에서도 감소하는 결과가 나타났다(p=.003). 골격근량은 운동처치 후에 증가하는 결과가 나타났으며(p=.018), 집단 간과 시기 간의 상호작용에서도 증가하는 결과가 나타났다(p=.005). 둘째, 근력과 유연성은 상지근력과 하지유연성에서 집단 간과 시기 간 상호작용에서 증가하는 결과가 나타났으며(p=.009)(p=036), 하지근력에서는 운동집단과 통제집단 간 개선효과가 나타났다(p=.006). 또한, 상지유연성은 운동처치 후에 증가하는 결과가 나타났다(p=.020). 셋째, 균형능력 요인은 정적균형에서 운동처치 후 개선 효과가 나타났으며(p=.016), 동적균형에서는 차이가 나타나지 않았다(p>.05). 넷째, 통증정도는 운동처치 후 개선 효과가 나타났으며(p=.022), 운동집단과 통제집단 간에 개선 효과도 나타났다(p=.013). 결론적으로 12주간의 노르딕 워킹은 퇴행성 무릎 관절염을 가진 노인여성의 신체조성과 근력과 유연성에 긍정적인 영향을 미치는 것으로 나타났다. 따라서 노르딕 워킹은 퇴행성 무릎 관절염을 가진 노인여성에게 신체조성과 안정성, 균형성을 높여 주였으며, 무릎 관절의 통증을 낮춰주어 재활 운동 기능 개선에 효과적인 운동방법이라고 사료된다.

수중걷기회복과 수중앉기회복이 저항운동 후 성장호르몬, 테스토스테론, 혈중젖산농도, 심부담도 및 근통증에 미치는 영향 (Effects of Recovery of Underwater Walking and Recovery of Underwater Sitting on Growth Hormone, Testosterone, Blood Lactate, Double product and Muscle Pain after Resistance Exercise)

  • 박준식;장태수;정환종;김기홍
    • 한국응용과학기술학회지
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    • 제37권6호
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    • pp.1646-1658
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    • 2020
  • 이 연구의 목적은 운동 후 수중회복방법의 차이가 성장호르몬, 테스토스테론, 혈중젖산농도, 심부담도, 통증의 변화를 알아보는 것이다. 저항운동 경력 6개월 이상인 남자 7명을 대상으로 집중 웨이트 트레이닝과 서킷 웨이트트레이닝을 1RM의 60%강도로 실시한 다음 회복방법으로 수중걷기회복과 수중앉기 회복을 진행하였다. 성장호르몬은 모든 운동형태와 회복방법에서 운동 후, 회복 후, 안정 시 순으로 높게 나타났으며, 테스토스테론은 운동 후, 회복 후, 안정 시 순으로 높았다. 혈중젖산농도는 모든 운동형태와 회복방법에서 운동 후, 회복 후, 안정 시 순으로 높았으며 집중저항운동 후 동적회복이 정적회복보다 낮았다. 심부담도는 모든 운동형태와 회복방법에서 운동 후, 회복 후, 안정 시 순으로 높았다. 근통증은 모든 운동형태와 회복방법에서 운동직후, 회복 후, 24시간, 48시간, 72시간 순으로 감소하였다. 물속 환경에서도 동적회복이 정적회복보다 근피로 개선에 효과가 있는 것으로 사료된다.

계단 오르기와 내리기 시 가방착용 위치가 지면반력 파라미터에 미치는 영향 (Influence on the Ground Reaction Force Parameters According to Wearing Positions of Backpacks During Stair Ascending and Descending)

  • 현승현;류재청
    • 한국운동역학회지
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    • 제25권1호
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    • pp.85-94
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    • 2015
  • Purpose : The purpose of this study was to investigate the influence on the ground reaction force parameters according to wearing positions of backpack for during stair ascending and descending. Methods : Participants selected as subject were consisted of young female(n=10) and performed stairs walks(ascending and descending) with 2 types of wearing position(front of trunk[FT], rear of trunk[RT]). Passive(Fz 1) and active(Fz 2) forces of the vertical GRF were determined from time function and frequency domain. Also shear forces(Fx, Fy 1, Fy 2), dynamic postural stability index(MLSI, APSI, VSI, DPSI), loading rate and center of pressure (${\Delta}COPx$, ${\Delta}COPy$, COP area) were calculated from time function and frequency domain. Results : Fx, Fy 1, Fy 2, and Fz 1 in GRF didn't show significant differences statistically according to the wearing positions of backpack(p>.05), but stair descending showed higher forces than that of stair ascending. Particularly, Fz 2 of stair ascending showed higher forces than that of stair descending(p<.001), RT types showed higher than that of FT types(p<.05). MLSI, APSI, VSI, and DPSI of stair descending showed the increased stability index than that of stair ascending(p<.05), MLSI of RT types showed the decreased stability index than that of FT types(p<.05). Loading rate didn't show significant differences statistically according to the wearing positions of backpack(p>.05), but stair descending showed higher loading rate than that of stair ascending(p<.001). Also, ${\Delta}COPx$ in stair descending showed the increased movement than that of stair ascending(p<.05). Conclusions : A backpack of 10 kg(10 kg(ratio of body weights $17.61{\pm}1.17%$) showed significantly change GRF parameters according to wearing positions during stair ascending and descending. If possible, we suggest that the dynamic stability, in case of stairs walking with a smaller weights can be further improved.

Effect of femoral mechanical properties on primary stability of cementless total hip arthroplasty: a finite element analysis

  • Reimeringer, Michael;Nuno, Natalia
    • Advances in biomechanics and applications
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    • 제1권3호
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    • pp.187-210
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    • 2014
  • With the goal of increasing the survivorship of the prosthesis and anticipating primary stability problems of new prosthetic implants, finite element evaluation of the micromotion, at an early stage of the development, is mandatory. This allows assessing and optimizing different designs without manufacturing prostheses. This study aimed at investigating, using finite element analysis (FEA), the difference in the prediction of the primary stability of cementless hip prostheses implanted into a $Sawbones^{(R)}$ 4th generation, using the manufacturer's mechanical properties and using mechanical properties close to that of human bone provided by the literature (39 papers). FEA was carried out on the composite $Sawbones^{(R)}$ implanted with a straight taper femoral stem subjected to a loading condition simulating normal walking. Our results show that micromotion increases with a reduction of the bone material properties and decreases with the augmentation of the bone material properties at the stem-bone interface. Indeed, a decrease of the cancellous Young modulus from 155MPa to 50MPa increased the average micromotion from $29{\mu}m$ up to $41{\mu}m$ (+42%), whereas an increase of the cancellous Young modulus from 155MPa to 1000MPa decreased the average micromotion from $29{\mu}m$ to $5{\mu}m$ (-83%). A decrease of cortical Young modulus from 16.7GPa to 9GPa increase the average global micromotion from $29{\mu}m$ to $35{\mu}m$ (+33%), whereas an increase of the cortical Young modulus from 16.7GPa to 21GPa decreased the average global micromotion from $29{\mu}m$ to $27{\mu}m$ (-7%). It can also be seen that the material properties of the cancellous structure had a greater influence on the micromotion than the material properties of the cortical structure. The present study shows that micromotion predicted at the stem-bone interface with material properties of the $Sawbones^{(R)}$ 4th generation is close to that predicted with mechanical properties of human femur.

뇌졸중 환자에서 BBS, STI, MBI, TUG, FRT, 낙상과의 상관관계 (Correlation Between BBS, FRT, STI, TUG, MBI, and Falling in Stroke Patients)

  • 이한숙;최진호
    • The Journal of Korean Physical Therapy
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    • 제20권4호
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    • pp.1-6
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    • 2008
  • Purpose: We studied the correlation between BBS (Berg Balance Scale), Functional Reach Test (FRT), Timed-Up & Go test (TUG), Stability Index (STI), MBI (Modified Barthel Index), and Fall History. Methods: We recruited 20 stroke patients from the Gang Dong Gu Health Care Center in Seoul, Korea. All subjects could walk with or without an assisting device. Subjects first completed a questionnaire pertaining to their fall history and Activity of Daily Living (MBI), and then were evaluated with BBS, TUG, FRT, and STI. We used the Tetrax posturography system that calculates a STI based on fluctuations in vertical ground reaction forces. The data were analyzed using a Pearson Correlation Coefficient. Results: The BBS and FRT (p<0.05) and MBI (p<0.01) showed a significant positive correlation. BBS negatively correlated with STI and TUG (p<0.01). Fall history and BBS, TUG, MBI, FR, STI did not correlate. Conclusion: The BBS helps predict weight shifting, walking, and ADL, but is not good for predicting fall risk. So, we need to study about factors that affect falling.

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동작관찰 과제지향훈련이 만성 뇌졸중환자의 균형 및 보행능력에 미치는 효과 (The Effects of Action-Observational Task Oriented Training on Balance and Gait Ability in Patients with Chronic Stroke)

  • 김해리;이효정
    • 대한통합의학회지
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    • 제6권2호
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    • pp.45-57
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    • 2018
  • Purpose : This study was conducted to evaluate the effects of an task oriented training program combined with action-observation on balance and gait ability of patients with chronic stroke. Method : The subjects of this study were 30 patients with hemiplegia who agreed to participate and were picked up. Participants were randomly divided into equal groups; namely, an experimental group that underwent task oriented training combined with action-observation for at least 30 minutes/day for 6 weeks and a control group that underwent general task-oriented training. Patients' balance was assessed using the Sway Length, Sway Area and Limit of Stability test. In addition, gait ability was assessed using the 10 Meter Walking Test to measure the taken to walk 10 meters. Gait time and speed taken to walk 10 meters were used to examine gait ability. Results : There were significant improvements in the subscales of the balance and gait ability test of those who participated in the action-observational training program, while the control group showed only significant changes in the evaluation items of the sway length in eyes opened condition and gait time. Conclusion : Therefore, Action-observational training program effectively improved the balance and gait ability in patients with stroke.

Effects of Task-Specific Obstacle Crossing Training on Functional Gait Capability in Patients with Cerebellar Ataxia: Feasibility Study

  • Park, Jin-Hoon
    • The Journal of Korean Physical Therapy
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    • 제27권2호
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    • pp.112-117
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    • 2015
  • Purpose: The purpose of this study was to examine the effects of a task-specific obstacle crossing rehabilitation program on functional gait ability in patients with cerebellar ataxia. Overall, we sought to provide ataxia-specific locomotor rehabilitation guidelines for use in clinical practice based on quantitative evidence using relevant analysis of gait kinematics including valid clinical tests. Methods: Patients with cerebellar disease (n=13) participated in obstacle crossing training focusing on maintenance of dynamic balance and posture, stable transferring of body weight, and production of coordinated limb movements for 8 weeks, 2 times per week, 90 minutes per session. Throughout the training of body weight transfer, the instructions emphasized conscious perception and control of the center of body stability, trunk and limb alignment, and stepping kinematics during the practice of each walking phase. Results: According to the results, compared with pre-training data, foot clearance, pre-&post-obstacle distance, delay time, and total obstacle crossing time were increased after intervention. In addition, body COM measures indicated that body sway and movement variability, therefore posture stability during obstacle crossing, showed improvement after training. Based on these results, body sway was reduced and stepping pattern became more consistent during obstacle crossing gait after participation in patients with cerebellar ataxia. Conclusion: Findings of this study suggest that task-relevant obstacle crossing training may have a beneficial effect on recovery of functional gait ability in patients with cerebellar disease.

Analysis of Postural Stability and Daily Energy Expenditure to Manage Tumor Patients' Functional Expectation

  • Caliskan, Emrah;Saygi, Evrim Karadag;Gencer, Zeynep Kardelen;Kurtel, Hizir;Erol, Bulent
    • Clinics in Orthopedic Surgery
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    • 제10권4호
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    • pp.491-499
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    • 2018
  • Background: Advances in surgical techniques, implant technology, radiotherapy, and chemotherapy have increased the recovery chances of patients with bone sarcomas. Accordingly, patients' expectations on life quality have also increased, highlighting the importance of objective evaluation of the functional results of reconstruction. Methods: Thirteen patients with distal femoral endoprosthesis, who had been followed for an average of 2.9 years were evaluated. Postural stability, daily energy expenditure, muscle power, and range of motion were the four parameters analyzed in this study. The Musculoskeletal Tumor Society (MSTS) score and Toronto Extremity Salvage Score (TESS) were used to assess postoperative function and examine correlations with other parameters. Results: Patients had sedentary activities in 84% of their daily lives. They exhibited a slower speed in the walk across test and a higher sway velocity in the sit-to-stand test (p = 0.005). MSTS scores were significantly correlated with the daily energy expenditure and walking speed. Conclusions: Objective functional results acquired from various clinics will provide significant data to compare reconstruction techniques, rehabilitation protocols, and surgical techniques. In this way, it will be possible to satisfy the expectations of patients that increase in relation to enhanced recovery.

A review on numerical models and controllers for biped locomotion over leveled and uneven terrains

  • Varma, Navaneeth;Jolly, K.G.;Suresh, K.S.
    • Advances in robotics research
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    • 제2권2호
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    • pp.151-159
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    • 2018
  • The evolution of bipedal robots was the foundation stone for development of Humanoid robots. The highly complex and non-linear dynamic of human walking made it very difficult for researchers to simulate the gait patterns under different conditions. Simple controllers were developed initially using basic mechanics like Linear Inverted Pendulum (LIP) model and later on advanced into complex control systems with dynamic stability with the help of high accuracy feedback systems and efficient real-time optimization algorithms. This paper illustrates a number of significant mathematical models and controllers developed so far in the field of bipeds and humanoids. The key facts and ideas are extracted and categorized in order to describe it in a comprehensible structure.

Real-Time Locomotion Mode Recognition Employing Correlation Feature Analysis Using EMG Pattern

  • Kim, Deok-Hwan;Cho, Chi-Young;Ryu, Jaehwan
    • ETRI Journal
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    • 제36권1호
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    • pp.99-105
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    • 2014
  • This paper presents a new locomotion mode recognition method based on a transformed correlation feature analysis using an electromyography (EMG) pattern. Each movement is recognized using six weighted subcorrelation filters, which are applied to the correlation feature analysis through the use of six time-domain features. The proposed method has a high recognition rate because it reflects the importance of the different features according to the movements and thereby enables one to recognize real-time EMG patterns, owing to the rapid execution of the correlation feature analysis. The experiment results show that the discriminating power of the proposed method is 85.89% (${\pm}2.5$) when walking on a level surface, 96.47% (${\pm}0.9$) when going up stairs, and 96.37% (${\pm}1.3$) when going down stairs for given normal movement data. This makes its accuracy and stability better than that found for the principal component analysis and linear discriminant analysis methods.