• 제목/요약/키워드: Biomechanics of foot

검색결과 294건 처리시간 0.024초

Flying Sit Spin과 Flying Camel Spin 시 규정자세에 따른 족저압력패턴의 연구 (Analyses of Patterns of Spins with Insole Foot-Pressure Distribution during a Figure Skating)

  • 유경석
    • 한국운동역학회지
    • /
    • 제18권1호
    • /
    • pp.159-168
    • /
    • 2008
  • 본 연구는 피겨스케이팅의 여자국가대표 선수 4명으로부터 고난도 스핀기술인 FSS과 FCS동작을 분석하였다. 이를 위하여 자세유형에 따른 스핀동작 간 족저압력변인 접지면적(CA), 최대힘(MF), 최대압력(PP) 그리고 인체무게중심(COG)에 의한 발바닥 9개 영역을 중심으로 압력변화를 고찰하였다. 본 회전구간에서 두 스핀기술 간 접지면적이 17.2%의 차이로 스핀축이 한 곳에 보다 잘 집중된 경우는 FCS인것으로 나타났다. 최대힘에서 FSS는 97%BW, FCS는 143%BW로서 20% 높았으며, 최대압력 또한 FCS가 FSS보다 20% 높은 수치를 보였다. 이러한 결과는 인체무게중심선과 압력중심점과의 상호관계로부터 FSS의 압력중심점이 인체무게중심선보다 발바닥 후면, 반대로 FCS는 발바닥 앞면에 위치하는 자세패턴에 의한 기능적 차이로 분석되었다. 위의 결과로부터 FCS가 상대적으로 FSS보다 스핀기술 시 높은 인체중심과 하지말단을 이용한 큰 회전반경으로부터 스핀속도를 보다 잘 통제하는 운동구조로 고찰되었다.

테니스 서브 스탠스 유형에 따른 서비스 동작의 운동학적 분석 (Kinematical Analysis of Service Motion by Stance Types in Tennis Serve)

  • 김성섭;김의환
    • 한국운동역학회지
    • /
    • 제18권1호
    • /
    • pp.147-158
    • /
    • 2008
  • 본 연구의 목적은 우수 고등학교 테니스 선수 7명을 대상으로 테니스 서브 스탠스 유형(pinpoint stance, platform stance)에 따른 서비스 동작의 운동학적인 분석을 통하여 빠른 서브를 구사할 수 있도록 지도할 기초자료를 제공하는데 있다. Pinpoint Stance는 백스윙국면에서 뒷발을 앞발방향으로 이동하기 때문에 신체중심(COM)과 라켓의 많은 움직임으로 인해 소요시간이 Platform Stance 보다 0.04초 길게 소요되었다. 발을 이동하면서 골반부위를 앞으로 이동시켜서 몸을 활처럼 많이 휘게 함으로써 백스윙부터 임팩트까지 파워를 낼 수 있는 구간을 넓혀 COM과 라켓의 속도를 빠르게 하여 서브의 속도를 증가시키는데 기여하는 스탠스임을 알 수 있었다. Platform Stance는 백스윙국면에서 발의 이동이 없기 때문에 COM과 라켓의 작은 움직임으로 인해 소요시간이 Pinpoint Stance 보다 0.04초 짧게 소요되었다. 발의 이동이 없어서 파워를 낼 수 있는 구간을 좁혀 COM과 라켓의 속도가 느리게 나타났지만 중심의 안정감을 높여 서브의 성공률을 높이는데 기여하는 스탠스임을 알 수 있었다.

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

  • 이기광
    • 한국운동역학회지
    • /
    • 제15권3호
    • /
    • pp.1-7
    • /
    • 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.

보행 시 하이힐 굽 높이 증가에 따른 하지의 시간 협응성 (The Temporal Coordination of the Lower Extremity by Increasing High-heel Height during Walking)

  • 류지선
    • 한국운동역학회지
    • /
    • 제19권3호
    • /
    • pp.593-601
    • /
    • 2009
  • 이 연구의 목적은 20-30대 여성 12명을 대상으로 각기 다른 하이힐 (3cm, 7cm, 9cm) 보행 시 지지 구간에서 하지의 시간 협응성을 관찰하기 위한 것이었다. 이를 위해 영상 분석을 통해 무릎의 굴곡과 경골의 내측 회전, 발의 외반 각을 Euler 방법에 의해 분석하였으며, 이들 움직임이 최대로 일어나는 시간을 관찰해 이들의 일치도를 정성적으로 분석하였고, 또한 최대 경골 내측 회전에 대한 최대 발의 외반 각이 발생하는 시간비율을 분석해 잠재적 상해 발생 부위를 예측하고자 했다. 그 결과 다음과 같은 결론을 얻었다. 하이힐 3cm 보행은 7, 9cm 보행보다 무릎 굴곡, 경골 내측 회전, 발의 외반 최대 발생 시간의 일치도가 높은 것으로 나타났으며, 무릎 최대 굴곡 발생 시간은 하이힐 높이가 증가하면 할수록 일찍 발생하는 경향을 보였다. 반면에 경골의 최대 내측 회전 발생 시간은 하이힐 높이가 증가할수록 늦게 발생하는 특징을 보였다. 보행 시 지지구간에서 경골의 최대 내측 회전 발생 시간에 대한 발의 최대 외반 발생 시간 비는 하이힐 3cm 보행이 전체적으로 1에 수렴하는 특징을 나타났으나, 하이힐 7, 9cm 보행은 1보다 적은 값을 보였다.

Developpe devant 수행시 하지 관절 모멘트 분석 (Analysis on lower extremity joint moment during a developpe devant)

  • 박기자;신성휴;권문석;김태완;이형나
    • 한국운동역학회지
    • /
    • 제14권1호
    • /
    • pp.133-144
    • /
    • 2004
  • The purpose of this study was to analyze the joint moment on lower extremity during a developpe devant. Data were collected by Kwon3D, KwonGRF program. Two professional modem female dancers were participated in this experiment. Subjects performed a developpe devant in meddle heights. On the axes of X, Y, Z, it was shown that the maximum joint moment was occurred in hip joint. The moments are plotted during developpe devant. The ankle muscles generate a plantar flexion moment and the knee muscles generate a flexion moment and The hip muscles generate a extension moment. So these muscles of joint muscles were known to play a key role in keeping the body balance while doing developpe devant. In addition adduction moment occurred at hip, knee, an ankle in the order of amount, we could assume from this data that him out motion started from the hip joint. There was small active turn out possible below the hip joint. A small amount of extra turn out could be obtained when standing because of flexion between the foot and floor, which could be used to give a passive external rotation force to the whole leg and this could produce a rotation between the knee and foot. This passive external rotation could produce very damaging results. Therefore, lower extremity joint muscles such as hip, knee, and ankle muscle should be trained to keep the body balance and prevent injury during developpe devant performance. And for the safe and perfect turn ort performance, hip joint abduction, the most important external rotating muscle for him out is needed to train and full stretching should be done in advance.

편마비 환자의 앉은 자세에서 일어서기 동작 시 의자 높이와 발의 조건이 생체역학적 요소에 미치는 영향 (The Effects of Chair Height and Foot Condition on the Biomechanical Factors in Sit-to-Stand Movement of Hemiplegic Patients)

  • 김동훈;김택훈;최흥식;노정석;최규환;김기송
    • 한국전문물리치료학회지
    • /
    • 제25권2호
    • /
    • pp.1-12
    • /
    • 2018
  • Background: It is very difficult for hemiplegic patients to effectively perform the sit-to-stand (STS) movements independently because of several factors. Moreover, the analysis of STS motion in hemiplegic patients has been thus far confined to only muscle strength evaluation with little information available on structural and environmental factors of varying chair height and foot conditions. Objects: This study aimed to analyze the change in biomechanical factors (ground reaction force, center of mass displacement, and the angle and moment of joints) of the joints in the lower extremities with varying chair height and foot conditions in hemiplegic patients while they performed the STS movements. Methods: Nine hemiplegic patients voluntarily participated in this study. Their STS movements was analyzed in a total of nine sessions (one set of three consecutive sessions) with varying chair height and foot conditions. The biomechanical factors of the joints in the lower extremities were measured during the movements. Ground reaction force was measured using a force plate; and the other abovementioned parameters were measured using an infra-red camera. Two-way repeated analysis of variance was performed to determine the changes in biomechanical factors in the lower extremities with varying chair height and foot conditions. Results: No interaction was found between chair height and foot conditions (p>.05). All measured variables with varying chair height showed a significant difference (p<.05). Maximum joint flexion angle, maximum joint moment, and the displacement of the center of mass in foot conditions showed a significant difference (p<.05); however the maximum ground reaction force did not show a significant difference (p>.05). Conclusion: The findings suggest that hemiplegic patients can more stably and efficiently perform the STS movement with increased chair height and while they are bare-foot.

Immediate Effects of Joint Mobilization Techniques on Clinical Measures in Individuals with CAI

  • Kim, Byong Hun;Kim, Chang Young;Kang, Tae Kyu;Cho, Young Jae;Lee, Sae Yong
    • 한국운동역학회지
    • /
    • 제28권4호
    • /
    • pp.219-225
    • /
    • 2018
  • Objective: Epidemiological research shows that 47 to 73% of athletes suffer from recurrent ankle sprains. Joint mobilization techniques (JMT) implemented in correcting may be beneficial in the management of ankle injuries. The purpose of this study is to examine the immediate JM on ankle complex as clinical measures in individuals with chronic ankle instability (CAI) through intervention. Method: Thirteen subjects with CAI (8 males and 5 females) participated in this study. Each subject tried total four alignments (Navicular drop test: NDT, Standing rearfoot angle: SRA, Tibia torsion: TT, and dorsiflexion range of motion: DFROM). The participants were performed the 10 meter shuttle run after JMT for post-task. Finally, it was tried to compare between pre-post tasks after shuttle run. Results: SRA and DFROM after intervention showed significant differences. SRA (p=.026), and DFROM (p=.034). Conclusion: We concluded that the JMT has resulted in improvement in SRA, DFROM. Increased DFROM and varus shapes of foot would be closed kinetic chain, indicating that reduce the risk factors of ankle sprain. Future study needs to be conducted in order to measure the effects of prolonged intervention of JMT.

택견 내지르기 동작 시 디딤발 오금질 유무에 따른 운동역학적 차이 분석 (A Comparative Study on the Kinetic Factors in Taekkyon Naejirgi with and without Knee Bending of Supporting Leg)

  • 오성근;안용길
    • 한국운동역학회지
    • /
    • 제23권2호
    • /
    • pp.131-139
    • /
    • 2013
  • Naejirgi is one of the fastest, most forceful and most often being used kicks in Taekkyon games, The purpose of this study was to investigate kinetic factors on two types of Naejirgi kick, one of which uses knee bending of supporting leg and the other uses little it. 12 taekkyoners (11 males and one female) who are the students of Y University participated in this study. They have been practicing on Taekkyon for five years or more. Positions of CoM, the elapsed time of each phase, vertical ground reaction forces, joint moments and impulses of supporting leg were analyzed for this study. The results were as follows; in Naejirgi with knee bending of supporting leg than without knee bending of supporting leg, the vertical motion range of whole body CoM was larger during phase 2 and 3, the elapsed time of phase 4 were longer, players stayed longer in the nearest location to opponent, during phase 4 the vertical ground reaction forces of supporting foot were larger, and joint extension moments and angular impulses of supporting leg (especially knee) were larger. In conclusion supporting knee bending is not a useful strategy for Naejirgi, because players stay longer in the nearest position to opponent and consumed more muscle force and energy for producing the vertical momentum which is unnecessary for pushing down the opponent.

회전점프-착지 시 회전방향이 안정성에 미치는 영향 (Effects on Stability of Rotational Direction after Rotational Jump-Landings)

  • Park, Jun Sung;Woo, Byung Hoon
    • 한국운동역학회지
    • /
    • 제32권3호
    • /
    • pp.80-86
    • /
    • 2022
  • Objective: The purpose of this study was to investigate the effects of three rotational jump conditions (standing jump, left rotational jump and right rotational jump) on stability through center of pressure (COP) and EMG variables analysis. Method: A total of 16 college students (age: 24.13 ± 7.17 years, height: 169.24 ± 8.23 cm, weight: 65.65 ± 13.88 kg) participated in this study. The study used wireless two COP plates and wireless eight channel EMG. The analyized variables were 11 variables for COP and RMS for EMG, which were analyzed using one-way analysis of variance with repeated measures according to three rotational jump conditions. Results: Among the COP variables, left rotational jump (LRJ) and right rotational jump (RRJ) were larger than standing jump (SJ) for left and right amplitude, area, total displacement, and average velocity for both feet among the variables of COP, and for area of the left foot, RRJ was larger than that of SJ. Among the EMG variables, there was no statistical difference between the muscle activations, but the muscle activity was significantly higher in the order of RRJ, LRJ, and SJ according to direction of rotation. Conclusion: Although the results of COP and EMG were not consistent through this study, it can be expected that the differences in COP was due to the amount of rotation during rotational jump-landing in the left and right directions, and that the EMG is determined by the lateral movements required for rotation.

한국형 파킨슨 환자의 역학적 기능수행지수 개발 (Developing an Biomechanical Functional Performance Index for Parkinson's Disease Patients)

  • Shin, Sunghoon;Han, Byungin;Chung, Chulmin;Lee, Yungon
    • 한국운동역학회지
    • /
    • 제30권1호
    • /
    • pp.83-91
    • /
    • 2020
  • Objective: The study aimed to develop a functional performance index that evaluates the functional performance of Parkinson's patients, i.e., to integrate biomechanical measurements of walking, balance, muscle strength and tremor, and to use multiple linear regression with stepwise methods to identify the most suitable predictors for the progression of disease. Method: A total of 60 subjects were tested for sub-variables of four factors: walking, balance, isometric strength and hand tremors. Potential independet variables were extracted through correlation analysis of the sub-variables and dependent variables, Hoehn & Yahr scale. And then, a stepwise multiple regression analysis using the potential independent variables was performed to identify predictor of Hoehn & Yahr scale. Results: First, the results of the study showed that physical composition and gait had a relatively more correlated with the progression of the disease, compared to balance and hand tremor. Second, Parkinson's functional performance is characterized by dynamic pattern of walking, such as foot clearance and turning angle (TA) of walking, and a high-explained regression model is completed. Conclusion: The study emphasized the importance of walking variables and body composition in minor pathological features compared to Parkinson's patient's balancing ability and hand tremor. Specifically, it revealed that dynamic walking patterns functionally characterize patients. The results are worth considering when assessing functional performance related to the progression of the disease at the site.