• 제목/요약/키워드: Gait locomotion

검색결과 62건 처리시간 0.025초

Effect of Multisensory Intervention on Locomotor Function in Older Adults with a History of Frequent Falls

  • You, Sung-Hyun
    • 한국전문물리치료학회지
    • /
    • 제11권4호
    • /
    • pp.51-60
    • /
    • 2004
  • Falls are common, costly, and a leading cause of death among older adults. The major predisposing factors of a fall may include age-related deterioration in the dynamic system composed of auditory, somatosensory, vestibular, visual, musculoskeletal, and neuromuscular subsystems. Older adults with a history of frequent falls demonstrated significant reductions in gait velocity, muscle force production, and balance performance. These altered neuromechanical characteristics may be further exaggerated when faced with conflicting multisensory conditions. Despite the important contribution of multisensory function on the sensorimotor system during postural and locomotor tasks, it remains unclear whether multisensory intervention will produce dynamic balance improvement during locomotion in older adults with a history of frequent falls. Therefore, the purpose of this paper is to address important factors associated with falls in elderly adults and provide theoretical rationale for a multisensory intervention program model.

  • PDF

보행 중 인체 슬관절의 3차원 접촉 모델 개발 (Development of Three-Dimensional Contact Model of Human Knee Joint During Locomotion)

  • 김효신;박성진;문정환
    • 한국정밀공학회지
    • /
    • 제22권11호
    • /
    • pp.182-189
    • /
    • 2005
  • The human knee joint is the intermediate joint of the lower limb that is the largest and most complex joint in the body. Understanding of joint-articulating surface motion is essential for the joint wear, stability, mobility, degeneration, determination of proper diagnosis and so on. However, many studies analyzed the passive motion of the lower limb because of the skin marker artefact and some studies described medial and lateral condyle of a femur as a simple sphere due to the complexity of geometry. Thus, in this paper, we constructed a three-dimensional geometric model of the human knee from the geometry of its anatomical structures using non-uniform B-spline surface fitting as a study for the kinematic analysis of more realistic human knee model. In addition, we developed and verified 6-DOF contact model of the human knee joint using $C^2$ continuous surface of the inferior region of a femur, considering the relative motion of shank to thigh during locomotion.

Energy Optimization of a Biped Robot for Walking a Staircase Using Genetic Algorithms

  • Jeon, Kweon-Soo;Park, Jong-Hyeon
    • 제어로봇시스템학회:학술대회논문집
    • /
    • 제어로봇시스템학회 2003년도 ICCAS
    • /
    • pp.215-219
    • /
    • 2003
  • In this paper, we generate a trajectory minimized the energy gait of a biped robot for walking a staircase using genetic algorithms and apply to the computed torque controller for the stable dynamic biped locomotion. In the saggital plane, a 6 degree of freedom biped robot that model consists of seven links is used. In order to minimize the total energy efficiency, the Real-Coded Genetic Algorithm (RCGA) is used. Operators of genetic algorithms are composed of a reproduction, crossover and mutation. In order to approximate the walking gait, the each joint angle is defined as a 4-th order polynomial of which coefficients are chromosomes. Constraints are divided into equality and inequality. Firstly, equality constraints consist of position conditions at the end of stride period and each joint angle and angular velocity condition for periodic walking. On the other hand, inequality constraints include the knee joint conditions, the zero moment point conditions for the x-direction and the tip conditions of swing leg during the period of a stride for walking a staircase.

  • PDF

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
    • /
    • 제2권2호
    • /
    • pp.151-159
    • /
    • 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.

보행시 젊은 남성에 대한 상.하체 주요 관절 운동의 카오스 분석 (Chaos Analysis of Major Joint Motions for Young Males During Walking)

  • 박정홍;김광훈;손권
    • 대한기계학회논문집A
    • /
    • 제31권8호
    • /
    • pp.889-895
    • /
    • 2007
  • Quantifying dynamic stability is important to assessment of falling risk or functional recovery for leg injured people. Human locomotion is complex and known to exhibit nonlinear dynamical behaviors. The purpose of this study is to quantify major joints of the body using chaos analysis during walking. Time series of the chaotic signals show how gait patterns change over time. The gait experiments were carried out for ten young males walking on a motorized treadmill. Joint motions were captured using eight video cameras, and then three dimensional kinematics of the neck and the upper and lower extremities were computed by KWON 3D motion analysis software. The correlation dimension and the largest Lyapunov exponent were calculated from the time series to quantify stabilities of the joints. This study presents a data set of nonlinear dynamic characteristics for eleven joints engaged in normal level walking.

WalkON Suit: 하지 완전마비 장애인을 위한 웨어러블 로봇 (WalkON Suit: A Wearable Robot for Complete paraplegics)

  • 최정수;나병훈;정평국;나동욱;공경철
    • 로봇학회논문지
    • /
    • 제12권2호
    • /
    • pp.116-123
    • /
    • 2017
  • Wearable robots are receiving great attention from the public, as well as researchers, because its motivation is to improve the quality of lives of people. Above all, complete paraplegic patients due to spinal cord injury (SCI) might be the most adequate target users of the wearable robots, because they definitely need physical assistance due to the complete loss of muscular strength and sensory functions. Furthermore, the medical care of complete paraplegics by using the wearable robots have significantly reduced the mortality rate and improved the life expectancy. The requirements of the wearable robot for complete paraplegics are actuation torque, locomotion speed, wearing sensation, robust gait stability, safety, and practicality (i.e., size, volume, weight, and energy efficiency). A WalkON Suit is the wearable robot that has satisfied the requirements of the wearable robot for complete paraplegics and participated in the powered exoskeleton race of Cybathlon 2016. In this paper, configuration of the WalkON Suit, human-machine interface, gait pattern, control algorithm, and evaluation results are introduced.

푸리에 급수를 이용한 이족보행로봇의 보행 궤적 해석해 생성 (Analytic Solution for Stable Bipedal Walking Trajectory Generation Using Fourier Series)

  • 박일우;백주훈
    • 제어로봇시스템학회논문지
    • /
    • 제15권12호
    • /
    • pp.1216-1222
    • /
    • 2009
  • This article describes a simple method for generating the walking trajectory for the biped humanoid robot. The method used a simple inverted model instead of complex multi-mass model and a reasonable explanation for the model simplification is included. The problem of gait trajectory generation is to find the solution from the desired ZMP trajectory to CoG trajectory. This article presents the analytic solution for the bipedal gait generation on the bases of ZMP trajectory. The presented ZMP trajectory has Fourier series form, which has finite or infinite summation of sine and cosine functions, and ZMP trajectory can be designed by calculating the coefficients. From the designed ZMP trajectory, this article focuses on how to find the CoG trajectory with analytical way from the simplified inverted pendulum model. Time segmentation based approach is adopted for generating the trajectories. The coefficients of the function should be designed to be continuous between the segments, and the solution is found by calculating the coefficients with this connectivity conditions. This article also has the proof and the condition of solution existence.

모션 캡쳐에 기반한 도마뱀 속보에 대한 기구학적 모델링 (Kinematic Modelling of the Trot of a Lizard Based on the Motion Capture)

  • 김창회;신호철;이흥호
    • 전자공학회논문지
    • /
    • 제50권8호
    • /
    • pp.264-273
    • /
    • 2013
  • 미래의 전쟁에서 인명 피해를 최소화하기 위한 방안으로 로봇의 중요성이 부각되고 있으며 최적으로 진화된 생물체를 모방하는 생체모방로봇에 대한 연구가 활발하게 추진되고 있다. 도마뱀 모방형 로봇은 협소한 지역에서 은밀한 접근 및 은닉을 필요로 하는 정찰 및 감시 등의 임무를 수행하기에 적합하다. 본 논문에서는 적외선 마커를 이용하여 도마뱀의 보행동작을 분석하였다. 쿠반 에놀의 관절 부위에 21 개의 마커를 부착하고 광학적 모션 캡쳐 장비를 사용하여 도마뱀의 보행 동작을 측정하였다. 측정된 데이터를 분석하여 펼친 자세로 속보로 보행하는 도마뱀의 걸음 동작을 분석하였다. 또한 도마뱀의 걸음새를 충실하게 구현 가능하도록 25 자유도를 갖는 기구학 모델을 제안하였으며 시뮬레이션을 통하여 모델링의 타당성을 확인하였다.

불안정한 면에서의 체간 훈련이 뇌졸중 환자의 비례추진력에 미치는 영향 (Effect of Trunk Control Training on Labile Surface on Relative Impulse in the Persons with Stroke)

  • 장상훈;안지현;김진상
    • The Journal of Korean Physical Therapy
    • /
    • 제24권2호
    • /
    • pp.163-169
    • /
    • 2012
  • Purpose: The present study was designed to investigate the effect of trunk control training on the labile surface on relative impulse and balance in stroke patients. Methods: A total of 21 participants were assigned to an experimental group (n=11) or a control group (n=10). In addition to conventional therapy, the experimental group received trunk control training on the swiss ball; 20 minutes, 4 times a week, for 8 weeks. Balance ability was evaluated by FRT (functional reaching test) and TUG (time up and go). In addition relative impulse in 6 areas of the foot (hallux, 1st metatarsal head, 2~3 metatasal head, 4~5 metatasal head, mid foot and heel) were measured using the F-scan system to evaluate locomotion ability during gait. Results: Significant differences in the relative impulse were observed in the areas of the 2~3 metatasal head during gait after exercise in both the control group and experimental group (p<0.05). Also, a significant increase was seen in the hallux after exercise in the experimental group (p<0.05), but no such significant increase was seen in the control group (p>0.05). Significant differences were observed in FRT and TUG in the experimental group but no such significant increase was observed in the control group (p>0.05). Conclusion: These results suggest that trunk control training on labile surface improves the balance in stroke patients and has a positive effect on locomotion ability.

계산-토크 제어와 임피던스 제어를 이용한 2족 보행 로봇의 제어 (Control of Biped Robots Based on Impedance Control and Computed-Torque Control)

  • 정호암;박종현
    • 대한기계학회논문집A
    • /
    • 제24권6호
    • /
    • pp.1513-1519
    • /
    • 2000
  • This paper proposes a hybrid control method of using impedance control and the computed-torque control for biped robot locomotion. Computed torque control is used for supporting (constrained) leg. For the free leg, the impedance control is used, where different values of impedance parameters are used depending on the gait phase of the biped robot. To reduce the magnitude of an impact and guarantee a stable footing when a foot contacts with the ground, this paper proposes to increase the damping of the leg drastically and to modify the reference trajectory of the leg. Computer simulations with a 3 -dof environment model for which a combination of a nonlinear and a linear compliant models is used, show that the proposed controller is superior to the computed-torque controllers in reducing impacts and stabilizing the footing.